{"as_of":"2026-08-24T02:17:00Z","caps":{"database_statements":6,"inbound":100,"outbound":100},"context_digest":"sha256:5b5f12f8fef706dac36ec1976d860aa0a31d00663be89d6cbf0823369ce695fe","coverage":[{"denominator":59,"lane":"reference_resolution","note":"Typed states for the displayed outbound observations.","records_observed":59,"source":"paper_references, paper_reference_links","source_observed_at":"2026-08-10T21:39:17.146306Z","state":"measured"},{"denominator":59,"lane":"standing_notices","note":"One-hop event checks from named stored sources.","records_observed":59,"source":"scholarly_work_events, retraction_status_cache","source_observed_at":"2026-08-23T06:30:58.430688+00:00","state":"measured"},{"denominator":0,"lane":"inbound_itemization","note":"Pith citing papers itemized under the disclosed page cap.","records_observed":0,"source":"paper_references, paper_reference_links","source_observed_at":null,"state":"measured"},{"denominator":1,"lane":"external_citation_measurements","note":"A source-named dated measurement, never combined with another source.","records_observed":0,"source":"cited_works","source_observed_at":null,"state":"measured"}],"external_citation_measurements":[],"inbound":[],"links":{"evidence":"/evidence","html":"/paper/2501.04407/citation-record","integrity":"/paper/2501.04407/integrity","json":"/paper/2501.04407/citation-record.json","paper":"/paper/2501.04407"},"outbound":[{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1242/jcs.046870","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.740708Z","title":"A F AK-p120RasGAP-p190RhoGAP complex regulates polarity in migrating cells","venue":null,"work_id":"ff847433-c904-4826-81c0-3aaf56fb265f","year":2009},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":1,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.900347Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:f9d8fd2548ee98b8d2bca577ab6007275ded9b4b2cc323724a1ea6f992e0c7e4","observation_id":"83d25b06-463b-45bb-819d-68be6052c5d9","resolution":{"observed_at":"2026-08-10T21:39:17.744419Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.ceb.2022.01.011","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Signalling dynamics, cell decisions, and homeostatic control in health and disease","venue":"Current Opinion in Cell Biology","work_id":"e5608e62-f19a-441c-94e7-729e42af014d","year":2022},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":2,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.905758Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:f3811e8ed9d8ecf24d9f68ffe1aa4564910aab3fc7248af96ac4397c28c3091b","observation_id":"c9c19dd7-66cd-4aa3-aff8-9ef07007e9be","resolution":{"observed_at":"2026-08-10T21:39:17.733996Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/s41580-020-00306-w","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.718950Z","title":"Crosstalk between mechanotransduction and metabolism","venue":null,"work_id":"39f6cc3e-6f8e-41b6-9850-0f9ce779ca46","year":2021},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":3,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.910200Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:94a05de5745ff95ff50cf754d1d2736cd81828c16706a11002e6bfd038483a0c","observation_id":"ef737c13-a552-46d9-90cb-1bb66751a711","resolution":{"observed_at":"2026-08-10T21:39:17.723021Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":"2021.67359","doi":null,"metadata_source":"raw_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:18.203954Z","title":"Mechanoregulation of YAP and TAZ in Cellular Homeostasis and Disease Progres- sion","venue":null,"work_id":"4fb01b2a-9c73-4c1c-8778-ea1e9d5d926d","year":2021},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":4,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.914700Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:ea8ffb5d19b36e125497973c5d0948b6d58c189752ea2c88ff85696b29348968","observation_id":"20725186-78c8-4a21-892a-7e1824e5e114","resolution":{"observed_at":"2026-08-10T21:39:18.211243Z","resolver_source":"raw_fallback","status":"metadata_mismatch"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/nrm3896","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.707377Z","title":"Mechanotransduction and extracellular matrix homeostasis","venue":null,"work_id":"37f5de7b-f0fd-4939-a00b-a8aad9df4587","year":2014},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":5,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.919762Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:00189ee3ec3b82f6c0e1d9a73cbe43e31a81fb2d4bd5fe86e9c0a8e75559a15f","observation_id":"db910ec0-2c40-4ebb-b6a5-668af22aab48","resolution":{"observed_at":"2026-08-10T21:39:17.711962Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/s41580-023-00583-1","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.695682Z","title":"Cell–extracellular matrix mechanotransduction in 3D","venue":null,"work_id":"def2e516-a38d-4bdc-959b-13e5d999392c","year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":6,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.923872Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:7d95f042c098ba048e0b25e89e52a8aee6b3d841dd62d2ac454be3c67573c607","observation_id":"31a2819a-fc2b-4a5d-a099-27ec93d266f1","resolution":{"observed_at":"2026-08-10T21:39:17.699961Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":"2018.0229","doi":null,"metadata_source":"raw_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:18.117914Z","title":"Mechanotransduction: from the cell surface to the nucleus via RhoA","venue":null,"work_id":"d706f79c-c4cf-4068-b443-279a4b6e177a","year":2019},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":7,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.928822Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:ab09d208d583a8c2edc8199431082d009d254e755d6e5dcf3f0073e3bfe5c7ce","observation_id":"5c0925e5-f761-46bf-8968-f5bba36f3ee9","resolution":{"observed_at":"2026-08-10T21:39:18.124255Z","resolver_source":"raw_fallback","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.actbio.2023.01.039","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Cell response to mechanical microenvironment cues via Rho signaling: From mechanobiology to mechanomedicine","venue":"Acta Biomaterialia","work_id":"b4e20708-9794-4970-89ec-b27ca7c7e96c","year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":8,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.932675Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:c9bd0d31946dedc6111ca5c6cbba0813e9ae0a7d81206f364dd15d5d747b3140","observation_id":"2132a98d-938a-44e0-8a12-14111b1ae65d","resolution":{"observed_at":"2026-08-10T21:39:17.688270Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":"raw_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:18.233537Z","title":"Cellular Mechanotransduction: From Tension to Function","venue":null,"work_id":"f45604d1-a3e1-43d0-aa45-46c555ea6d98","year":2018},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":9,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.937373Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:6d4bd2839a6e3c48e4dae4655a9de823e4421e058d548ff7fec438de87156cda","observation_id":"160fd117-6be5-4180-81ff-a0479da154fc","resolution":{"observed_at":"2026-08-10T21:39:18.237919Z","resolver_source":"raw_fallback","status":"verified_fuzzy"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1083/jcb.201609037","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.672917Z","title":"Integrin-mediated mechanotransduction","venue":null,"work_id":"e3815d2d-7e18-4a85-a824-cd37af0d27c0","year":2016},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":10,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.941041Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:f588ed39ff7eb640135d772e5fc8669a1ce68eb3b2802e52fbfb442e2c67b989","observation_id":"17feb091-2ad1-4bef-bed9-23dda5337ed7","resolution":{"observed_at":"2026-08-10T21:39:17.676710Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:16.945004Z","title":"Environmental stiffness restores mechanical homeostasis in vimentin-depleted cells","venue":null,"work_id":null,"year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":11,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.945004Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:b7c38a719287087df9cac458fae8e853a7de9cf5cf488718ec0ee525b31e797e","observation_id":"d758a515-80fb-4d1f-be3d-8b1442945afb","resolution":{"observed_at":"2026-08-10T21:39:16.945004Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1093/bib/bbl043","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.661466Z","title":"Computational methodologies for modelling, analysis and simulation of signalling networks","venue":null,"work_id":"873719f0-ef79-4daf-8957-f637df592f0c","year":2006},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":12,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.949134Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:8341d8a5f9aff3c9900eaad56fee781232723acdc6f253443210af4d6336721f","observation_id":"e1a69047-e81a-497e-8386-a8eba04860c7","resolution":{"observed_at":"2026-08-10T21:39:17.666045Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":"raw_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:18.220347Z","title":"Mathematical modelling and computational study of two- dimensional and three-dimensional dynamics of receptor–ligand interactions in signalling response mechanisms","venue":null,"work_id":"6f5a9952-3890-4f1d-8ebd-e4c97b180d3d","year":2014},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":13,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.953685Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:67e41771dea42a0ba21fb54bb318badf1c36a39b303fa727fbbccf9371da13b5","observation_id":"a1fa5a19-c272-4cbe-ba20-f6f28a3a8725","resolution":{"observed_at":"2026-08-10T21:39:18.226114Z","resolver_source":"raw_fallback","status":"verified_fuzzy"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1137/18m1185661","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.650852Z","title":"Multiscale Analysis and Simulation of a Signaling Process With Surface Diffusion","venue":null,"work_id":"1c795c0d-0fd8-46a5-9a19-db2f8fdbfead","year":2020},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":14,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.957381Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:e82726d4aef78313531eaeeac1a0555086560e6526d4eddf2fbd4549c9a00207","observation_id":"0d064f52-8020-47b6-aa9f-3f4a297aab6d","resolution":{"observed_at":"2026-08-10T21:39:17.655161Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.plrev.2017.06.016","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.639133Z","title":"Cellular mechanosensing of the biophysical microenvi- ronment: A review of mathematical models of biophysical regulation of cell responses","venue":null,"work_id":"7b4c3a39-3f47-47cf-a6de-4278926d4e94","year":2017},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":15,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.961250Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:1b73e87d71ad93e61583f04bcd872cd499eb70a9fbee071cf8c7eca412741aa3","observation_id":"cd1e8c0d-1eb0-40cf-bab7-95b8fbb9d963","resolution":{"observed_at":"2026-08-10T21:39:17.643820Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1088/1367-2630/9/11/425","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.627614Z","title":"Coupling biochemistry and mechanics in cell adhesion: a model for inhomogeneous stress fiber contraction","venue":null,"work_id":"35f26083-0380-4692-8f68-a3cef478e62a","year":2007},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":16,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.966384Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:449d06a615490d2899dffb099f8b512b83ebb1c3818d19db709622507d29e008","observation_id":"3f17a7d7-9cf4-481b-9af3-b5a8b899ef03","resolution":{"observed_at":"2026-08-10T21:39:17.632443Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1093/intbio/zyab012","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.616651Z","title":"Spatiotemporal model of cellular mechanotrans- duction via Rho and YAP","venue":null,"work_id":"7e67f70d-6bc0-44e1-8529-0952b8930870","year":2021},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":17,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.970709Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:c725007bd64b6bdbbcc2a3e1ce74bbf10461e4e151e5256a9bcb0b5bcbfa7343","observation_id":"dbb399b7-283d-4256-84d7-ed10c45a0bd3","resolution":{"observed_at":"2026-08-10T21:39:17.621105Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1073/pnas.2021571118","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.604380Z","title":"A spatial model of YAP/TAZ signaling reveals how stiffness, dimen- sionality, and shape contribute to emergent outcomes","venue":null,"work_id":"01672650-8013-474b-9d4e-c718ba5427e7","year":2021},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":18,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.975212Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:e9c66cdbdf90cfd9238db93cb46f12897f4725a3e6eab702ad80e6d2791903b0","observation_id":"9b75ce82-fa90-42e4-a1a2-32dd81a8772d","resolution":{"observed_at":"2026-08-10T21:39:17.608905Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/srep08622","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.591321Z","title":"Structurally Governed Cell Mechanotransduction through Multiscale Modeling","venue":null,"work_id":"187b9670-251c-4e04-80f6-5c358eb0a7fe","year":2015},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":19,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.980215Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:aafb5e0ad9672269e1d086996719e600568ea675fab2d90a9a308d45f85188a2","observation_id":"e4f84e16-e8c2-4b74-ad9d-cdc706cec954","resolution":{"observed_at":"2026-08-10T21:39:17.595904Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1073/pnas.96.18.10140","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.579001Z","title":"Pearling in cells: A clue to understanding cell shape","venue":null,"work_id":"63afcd41-1804-4879-a8d4-aaa5b7b28a6e","year":1999},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":20,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.984669Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:c25fa9772c84e3ceb2070a1b51c91e6ef3c263c55f80720b4518c2222918fb20","observation_id":"00b373e6-8028-4956-90c5-84ad9f8590ec","resolution":{"observed_at":"2026-08-10T21:39:17.583312Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1103/physrevlett.105.128101","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.567585Z","title":"Single Cells Spreading on a Pro- tein Lattice Adopt an Energy Minimizing Shape","venue":null,"work_id":"1446ccc0-a930-45a8-9f4c-9eda99f22042","year":2010},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":21,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.988596Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:1e2e652974386fc8381186cc6ca3aeeab5226408b0a311a56eb4ef12f0f4c9bd","observation_id":"7e1176b5-aaef-4d9d-8762-8895aadabf85","resolution":{"observed_at":"2026-08-10T21:39:17.571783Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2014.04.036","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Dynamics of cell shape and forces on micropatterned substrates predicted by a cellular Potts model","venue":"Biophysical Journal","work_id":"b37662a1-72a4-4aa9-ae15-0c19bb0d37cc","year":2014},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":22,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.993246Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:3c75fbd9c33c35eb396e7afcb24600aebefcd862a8ec7a63e85561af6af73087","observation_id":"08405b97-9866-4d65-aa68-0438e1415a17","resolution":{"observed_at":"2026-08-10T21:39:17.560535Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2016.04.040","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"A Computational Model of YAP/TAZ Mechanosensing","venue":"Biophysical Journal","work_id":"213f44f2-9b22-4a17-993d-0023758118da","year":2016},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":23,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:16.997498Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:d5d288cf7fe42999af5c1d80ce3d0f01726cfcbf948b735548c7ef76323f5b74","observation_id":"a004c298-e175-4c1d-bc6d-0087c9d75121","resolution":{"observed_at":"2026-08-10T21:39:17.548781Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2021.09.009","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Exploring the influence of cytosolic and mem- brane F AK activation on YAP/TAZ nuclear translocation","venue":"Biophysical Journal","work_id":"39b7974e-165a-4d5b-a374-98c31b25c57a","year":2021},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":24,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.002098Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:ac8e3576272047862efbd842940dd4144feb102ee8ff18da830890c7c90fb3c9","observation_id":"db4ca8fa-cf81-4c0f-bbc1-f15237ff8358","resolution":{"observed_at":"2026-08-10T21:39:17.536766Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.005978Z","title":"Introduction to Linear Elasticity","venue":null,"work_id":null,"year":2013},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":25,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.005978Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:35385153e3678c761179a8ff0ff55c675f6e1b8cbe17137db1110d925922a20e","observation_id":"bd402b13-0fce-4af0-9cad-2283b5b1e781","resolution":{"observed_at":"2026-08-10T21:39:17.005978Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.009633Z","title":"Finite element methods for surface PDEs","venue":null,"work_id":null,"year":2013},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":26,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.009633Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:93c9ad67f09177cd51af3cb69c67454a61e9060a2b30e68045e14ad99bbd82ec","observation_id":"17bb407e-5d0d-4912-b5fa-c0e257f3961c","resolution":{"observed_at":"2026-08-10T21:39:17.009633Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/s41598-023-44835-8","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.495757Z","title":"Environmental stiff- ness restores mechanical homeostasis in vimentin-depleted cells","venue":null,"work_id":"a53d7d62-cb49-47c4-9aba-b9964df326f3","year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":28,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.017248Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:a9024d1d39236442985ba184f859272336cda6885a03ef75d8f0a46ae30e3813","observation_id":"1e6cfcaa-9939-4709-bc2f-3810ea5c6ebe","resolution":{"observed_at":"2026-08-10T21:39:17.499827Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.022205Z","title":"A theoretical model for focal adhesion and cytoskeleton formation in non-motile cells","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":29,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.022205Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:c3e94eadb2cbd0a148e04f737b215eb0ec44ddbb9213a918a827c0e749c66f8e","observation_id":"8bca2a51-fa30-42e3-8f6a-cdca10c93e7e","resolution":{"observed_at":"2026-08-10T21:39:17.022205Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/s41392-023-","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.483019Z","title":"Cellular mechanotransduction in health and diseases: from molecular mechanism to therapeutic targets","venue":null,"work_id":"8b1bd0a9-a32d-4666-8da9-f20bffd68f65","year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":30,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.026011Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:8d803f6b332005b06528296f87fe0f9ff12c63a81d1a34367fa876f89f85c196","observation_id":"efc3287a-7b3a-4ddc-91ec-8d1805994f94","resolution":{"observed_at":"2026-08-10T21:39:17.487834Z","resolver_source":"doi_truncated","status":"malformed_identifier"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.ceb.2006.12.002","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"The cell as a material","venue":"Current Opinion in Cell Biology","work_id":"137851d1-6199-47b1-835c-a11794541117","year":2007},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":31,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.029884Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:1533e1450e880e917b7ca44a2a49c03ea19216a2dec008dbe0c5e5053be8accc","observation_id":"d98aa9a0-dde3-42a6-b6cd-1a3a2e2e6ee2","resolution":{"observed_at":"2026-08-10T21:39:17.476114Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/nmat3517","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.460803Z","title":"The cytoplasm of living cells behaves as a poroelastic material","venue":null,"work_id":"305a745e-5286-4da6-a0b8-c5f104fd904c","year":2013},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":32,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.033610Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:a2413a74796d635c9e9a635a4d916af6de09bcc8e29a7ecaa55876680fd8ffb2","observation_id":"44f62315-022f-4e1a-8f9d-43e00e92ffe8","resolution":{"observed_at":"2026-08-10T21:39:17.464807Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1088/1367-2630/15/3/035015","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.447786Z","title":"Controlling cell–matrix traction forces by extracellular geometry","venue":null,"work_id":"8a9c348f-08aa-4192-9759-098730ee836a","year":2013},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":33,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.037343Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:1da8748d21a5f0e9b0c5e6e9509af9db434786fe93e6b6031c7b6aba02b27887","observation_id":"61bc114d-0104-434c-8032-12b3baaedb09","resolution":{"observed_at":"2026-08-10T21:39:17.452297Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2014.06.045","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Geometry Regulates Traction Stresses in Adherent Cells","venue":"Biophysical Journal","work_id":"918264fa-d287-4b6e-98fa-6ae731c0ce16","year":2014},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":34,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.040987Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:015e620a0c7dcd4774957988712509fbc0a7ad96071d6398473ce0c3e63ad361","observation_id":"7e3fb2e7-6e43-47a6-ab44-1867795b2e78","resolution":{"observed_at":"2026-08-10T21:39:17.440349Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1140/epje/i2020-11988-1","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.424663Z","title":"Reversible elastic phase field approach and application to cell monolayers","venue":null,"work_id":"4f628cd6-c500-408e-90ea-bfa1c07106ca","year":2020},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":35,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.044493Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:003dae407756c440840dbe916bb7b8b8da2e3a504dc18ddc761e585e9cbac5e5","observation_id":"c4645be7-a519-4c70-b720-20f3769e7633","resolution":{"observed_at":"2026-08-10T21:39:17.428541Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2022.11.2943","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Predicting YAP/TAZ Nuclear Translocation in Response to ECM Mechanosensing","venue":"Biophysical Journal","work_id":"0382ebce-92ca-423c-b027-992eea248f0f","year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":36,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.048599Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:413e0fb0793bd696414f5d1c04aaec3308fede37a76da1c8cc414051a90b0076","observation_id":"ac77dc20-8c1c-42e1-b184-b05b4d44782f","resolution":{"observed_at":"2026-08-10T21:39:17.417632Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.ceb.2016.03.006","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Mechanotransduction and nuclear function","venue":"Current Opinion in Cell Biology","work_id":"ce738ed8-c8e3-4279-a3a3-242e388500d0","year":2016},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":37,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.053212Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:eec3985ab8164fe85be53370471396c297f7e5237fd6a52d94da64a559b4d5dd","observation_id":"2a10c4d8-3d49-4eaa-a53b-ae3d889adc19","resolution":{"observed_at":"2026-08-10T21:39:17.406649Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.057188Z","title":"Elastic Behavior of Cross- Linked and Bundled Actin Networks","venue":null,"work_id":null,"year":2004},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":38,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.057188Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:cc89184cdd2bab376662ef9de51e131713848e237d16763d16116958f357b9d7","observation_id":"5a6664b6-fab6-49b4-b1e6-fd32e5364c1f","resolution":{"observed_at":"2026-08-10T21:39:17.057188Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.yexcr.2015.10.029","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.384950Z","title":"Focal adhesions, stress fibers and mechanical tension","venue":null,"work_id":"6dd4d071-d6b4-475b-9c33-df0d17dd9443","year":2016},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":39,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.061423Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:90485a493acc331ba43699323888a5d9d24b3c1b4110e9bbe23736bcf43c89e8","observation_id":"fc0a4982-93fb-4996-a739-102fc2190f9d","resolution":{"observed_at":"2026-08-10T21:39:17.388925Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/ncomms9720","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.372277Z","title":"Local 3D matrix microenvironment regulates cell migration through spatiotemporal dynamics of contractility-dependent adhesions","venue":null,"work_id":"fa26c53b-d6c6-49c4-a94b-b52f5f1c2848","year":2015},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":40,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.065717Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:5233433d2f7146fa0b037545dbbb2a01e959d0416e8fdc8924f04c39f91a7515","observation_id":"d715b777-91e4-40d7-8795-317413c735a1","resolution":{"observed_at":"2026-08-10T21:39:17.376620Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1242/jcs.001586","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.361009Z","title":"Force activates smooth muscleα-actin promoter activity through the Rho signaling pathway","venue":null,"work_id":"e3941d48-bc9f-4b95-9563-2b7735d4c9c8","year":2007},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":41,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.070441Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:3ee04a67647d78176b1ab9cde508a90af9aab95333613d52ca29fea822cc3cbe","observation_id":"ce8c769d-effc-4bc8-8d69-e7c389e02ebc","resolution":{"observed_at":"2026-08-10T21:39:17.365198Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2020.03.002","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"The Poisson Ratio of the Cellular Actin Cortex Is Frequency Dependent","venue":"Biophysical Journal","work_id":"2649a787-07a3-4e43-99b0-625c330b340b","year":2020},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":42,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.074594Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:eb10c0f7fcf239ae63fd3842f9ee2225a2fcf7e0c07f809a0340a59750b824d4","observation_id":"803e177d-5195-4725-8414-72cf5429f87d","resolution":{"observed_at":"2026-08-10T21:39:17.353850Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1083/jcb.133.6.1403","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.338510Z","title":"Rho-stimulated contractility drives the formation of stress fibers and focal adhesions","venue":null,"work_id":"d9cc5c9b-7cdf-4606-a946-415612da2987","year":1996},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":43,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.078381Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:55402217debab508458c87fa027d5e83b86ee08b5917ccd7a7f23222a0044475","observation_id":"c920de15-05c3-4113-802a-ffcf08523fcb","resolution":{"observed_at":"2026-08-10T21:39:17.342584Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1371/journal.pone.0181085","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.326827Z","title":"Engineered extracellular matrices with controlled mechanics modulate renal proximal tubular cell epithelialization","venue":null,"work_id":"4cde5f41-51aa-49f9-8e82-e294d65a3c49","year":2017},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":44,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.082285Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:e7f8ba550f904c7b2f5cadbb00f3307269fc67ec2df480a737d4038d2f0a12bb","observation_id":"91e8c957-f9c8-4378-b0dc-8ac0e5b0fe23","resolution":{"observed_at":"2026-08-10T21:39:17.330964Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.087200Z","title":"Cell shape provides global control of focal adhesion assembly","venue":null,"work_id":null,"year":2003},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":45,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.087200Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:47e314229f13c93fd66a1fe68beaf0d169eb0d00553f5f3f30ae50449ad73d2a","observation_id":"55afb1e8-ff2f-4373-8577-3b397757761c","resolution":{"observed_at":"2026-08-10T21:39:17.087200Z","resolver_source":null,"status":"malformed_identifier"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/s1534-","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.309332Z","title":"Cell Shape, Cytoskeletal Tension, and RhoA Regulate Stem Cell Lineage Commitment","venue":null,"work_id":"a9060f0e-4e04-408b-ae1b-6f2e333faf8d","year":2004},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":46,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.091175Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:f6f0860cdff202ac00e9fd51352262ced70a880d5480a2545941de004a1e2ec0","observation_id":"eaa32ba7-492a-4001-a4aa-b9c77166e632","resolution":{"observed_at":"2026-08-10T21:39:17.312937Z","resolver_source":"doi_truncated","status":"malformed_identifier"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1007/978-3-031-62652-4_1","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-12T11:03:20.376878Z","title":"Biomechanical Homeostasis","venue":null,"work_id":"edfafb9e-390d-4141-81b1-46c91bf13914","year":2024},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":47,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.095067Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:a8f548a76c9883f7e701f34857bde934866293d9f56ee2e54c6ffd24a48adce0","observation_id":"0a004978-501e-422d-b484-36bec6290b52","resolution":{"observed_at":"2026-08-10T21:39:17.302375Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.bpj.2023.01.011","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-21T11:03:19.436173Z","title":"Cell size and actin architec- ture determine force generation in optogenetically activated cells","venue":"Biophysical Journal","work_id":"34b76adc-6711-4375-a6d0-ee36ea384fd5","year":2023},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":48,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.100181Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:8fa2a1e76bcbc2436bfee2a1ad2253d83eded1b9c0780537a1cf56df66e282d2","observation_id":"39016ff9-c9cd-4561-a709-38b52dbf7994","resolution":{"observed_at":"2026-08-10T21:39:17.290734Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.semcdb.2016.09.004","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.507105Z","title":"Cellular adaptation to biomechanical stress across length scales in tissue homeostasis and disease","venue":null,"work_id":"6cff23db-7f09-4f3a-97db-60dbe63d08f7","year":2016},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":49,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.103760Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:32e80c8c758cef2f88cdf5d575a0dd458c125598c661f75d7e041a13fe4b3b4a","observation_id":"0568f7fd-d341-495b-aec0-7a86c68e7286","resolution":{"observed_at":"2026-08-10T21:39:17.511034Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1126/sciadv.adi6286","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.275142Z","title":"Cellular stiffness sensing through talin 1 in tissue mechanical homeostasis","venue":null,"work_id":"ff5b03ef-e00e-4fc4-be46-4cab51ff2004","year":2024},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":50,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.107359Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:095abdada1aad2d9b883a6905d72fa4bf5351c666d84d05aed0c71c4478aa9ac","observation_id":"bba5466c-3124-4769-ae22-26b1ee2c6325","resolution":{"observed_at":"2026-08-10T21:39:17.278880Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":"2021.0151","doi":null,"metadata_source":"raw_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.845854Z","title":"Characterizing and Engineering Biomimetic Materials for Viscoelastic Mechanotransduction Studies","venue":null,"work_id":"29da43e9-c382-489a-a592-16189c1de447","year":2022},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":51,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.110941Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:956a73281f14f5592fefecba5eee0c8b55b3dfa1cae9a2fca58f5ac1adb97faf","observation_id":"f6c5f4b1-ff50-4a35-a543-5d42f1bc0023","resolution":{"observed_at":"2026-08-10T21:39:17.852522Z","resolver_source":"raw_fallback","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1016/j.jbiomech.2009.02.012","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.263942Z","title":"Endothelial actin and cell stiffness is modulated by substrate stiffness in 2D and 3D","venue":null,"work_id":"04bf4f61-5728-42a0-8e47-2e1f2ab74d04","year":2009},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":52,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.114659Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:32a4c80667118480c1cb707810d1e95e22d5953d354a961beebcf470aa455e2a","observation_id":"97c99509-fe0e-4684-9796-8d6e1d35ba72","resolution":{"observed_at":"2026-08-10T21:39:17.267795Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.119097Z","title":"Substrate stress relaxation regulates cell spreading","venue":null,"work_id":null,"year":2015},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":53,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.119097Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:1279b8ab67a86471ff6bad2a603831a9baee40e29ba18efde990b8fe86af9551","observation_id":"ffa5ad0c-89fc-47d4-84f9-7122555e8db0","resolution":{"observed_at":"2026-08-10T21:39:17.119097Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/s41563-022-01294-2","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.245200Z","title":"Directed Cell Migration towards Softer Environments","venue":null,"work_id":"c6000103-1b91-47e0-a563-36b79bff5b86","year":2022},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":54,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.122938Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:105ef4d0aad38573509b385ee2d13d75ef8195a5e878eefc885311e28495e979","observation_id":"3678f401-82b3-4fad-a9c2-34a10dd452d6","resolution":{"observed_at":"2026-08-10T21:39:17.249769Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1002/smll.201100934","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-12T11:03:20.376878Z","title":"Physical Aspects of Cell Culture Substrates: Topography, Roughness, and Elasticity","venue":"Small","work_id":"03086452-cfb4-47b3-9b9f-97ab0b37176c","year":2012},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":55,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.126669Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:bf03a10c8dea240b69b65b68f6c33d269c255caf1039342abd47b94894ebd475","observation_id":"38fc9cba-eea8-4548-93d6-56ea1b0b53aa","resolution":{"observed_at":"2026-08-10T21:39:17.238020Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/s41540-024-00414-9","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.222032Z","title":"Insights gained from computational modeling of YAP/TAZ signaling for cellular mechanotransduction","venue":null,"work_id":"2c5e8267-82db-4fe6-8b0c-573dd4d4d806","year":2024},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":56,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.130409Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:2271940f70fe95685679f178fc766b895498abc35baa606ca798b3da03167b9b","observation_id":"f8ffc29f-e864-4256-b2a7-8c1e9ec60e71","resolution":{"observed_at":"2026-08-10T21:39:17.226106Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1242/jcs.104273","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.209742Z","title":"The residence time of focal adhesion kinase (F AK) and paxillin at focal adhesions in renal epithelial cells is determined by adhesion size, strength and life cycle status","venue":null,"work_id":"95fc5210-276c-4fc5-8b4b-104aa8e7c1b1","year":2012},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":57,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.134652Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:92219714df852c5a97aa2da9f7b44c6d1518d575bb6c032da131c4ebf802d86a","observation_id":"f4a47a72-2ee1-4c47-9d19-fa30e859b915","resolution":{"observed_at":"2026-08-10T21:39:17.214034Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.138909Z","title":"Automated Solution of Differential Equations by the Finite Element Method","venue":null,"work_id":null,"year":2012},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":58,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.138909Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:7dd791f89258785ae819ea216fe44aef323a61f018494a5ee72c6e99af1d4978","observation_id":"261ca761-cfce-449e-a73d-89c9fb57c010","resolution":{"observed_at":"2026-08-10T21:39:17.138909Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.142491Z","title":"Gmsh: A 3-D finite element mesh generator with built-in pre- and post- processing facilities","venue":null,"work_id":null,"year":2009},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":59,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.142491Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:f7b0913f80232881cc49d4a3c3c84d191f94623f699e19b7e7f53dbdac92f10f","observation_id":"2085f45d-f2a2-4ae5-8015-c0cb5217e10b","resolution":{"observed_at":"2026-08-10T21:39:17.142491Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1137/120880112","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-10T21:39:17.178998Z","title":"Implicit-explicit timestepping with finite element approximation of reaction-diffusion systems on evolving domains","venue":null,"work_id":"1f88fe6f-231b-4b0a-8779-f4959a1fa4f3","year":2013},"citing_paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways","version":2},"reference_index":60,"source":"pdf_text","source_observed_at":"2026-08-10T21:39:17.146306Z"},"links":{"citing_paper":"/paper/2501.04407"},"observation_digest":"sha256:811c28f17e19e50f5295e23159b0801a63a25c38a0b67b1d8d547caeee74a06c","observation_id":"ca9b8993-6f3c-4c79-8f09-64957d8a12ba","resolution":{"observed_at":"2026-08-10T21:39:17.185184Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-23T06:30:58.430688+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"state":"measured"}}],"paper":{"arxiv_id":"2501.04407","last_updated":"2025-06-10T11:02:10Z","latest_version":2,"primary_category":"math.NA","snapshot_observed_at":"2026-08-10T21:31:30.479851Z","submitted_at":"2025-01-08T10:40:05Z","title":"Mathematical Modelling of Mechanotransduction via RhoA Signalling Pathways"},"reference_resolution":{"displayed":59,"state_counts":{"malformed_identifier":3,"metadata_mismatch":1,"parse_uncertain":0,"unresolved":8,"verified_exact":45,"verified_fuzzy":2},"total_outbound_references":59},"refusal":"A citation records a reference. It does not transfer a finding from one paper to another.","schema":"pith.paper-citation-record.v1","standing_sources":[{"observed_at":"2026-08-23T06:30:58.430688+00:00","source":"crossref"},{"observed_at":"2026-08-23T06:30:53.778098+00:00","source":"retraction_watch"}],"thesis":"As of 24 August 2026, this Paper Citation Record lists 59 of 59 outbound references and 0 inbound Pith citation observations for arXiv:2501.04407."}