{"as_of":"2026-08-08T08:51:00Z","caps":{"database_statements":6,"inbound":100,"outbound":100},"context_digest":"sha256:49daf214d4ced26193debecad46bc449603e2968b0c3dc3eb5545646344f9ba4","coverage":[{"denominator":37,"lane":"reference_resolution","note":"Typed states for the displayed outbound observations.","records_observed":37,"source":"paper_references, paper_reference_links","source_observed_at":"2026-08-01T09:37:55.851874Z","state":"measured"},{"denominator":37,"lane":"standing_notices","note":"One-hop event checks from named stored sources.","records_observed":37,"source":"scholarly_work_events, retraction_status_cache","source_observed_at":"2026-08-08T06:32:00.761636+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/2607.21657/citation-record","integrity":"/paper/2607.21657/integrity","json":"/paper/2607.21657/citation-record.json","paper":"/paper/2607.21657"},"outbound":[{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-01T09:37:52.478065Z","title":"2007 How generation intervals shape the relationship be- tween growth rates and reproductive numbers.Proc","venue":null,"work_id":null,"year":2007},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":1,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:52.478065Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:f3c0a4fdb41165e115e8788d47f2472d6511322684333f083e3b552e4bee8b27","observation_id":"59b82d3b-b5a8-4b07-9faa-ea174083784c","resolution":{"observed_at":"2026-08-01T09:37:52.478065Z","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":"10.1007/s11538-013-9918-2","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2014 Estimating initial epidemic growth rates","venue":"Bulletin of Mathematical Biology","work_id":"5fbb8137-6856-4541-a8bb-bebd532fb3bf","year":2014},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":2,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:52.575674Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:742ef3a64a16cef68bc40d56679664f70333e2f5afd54be601de67d8661fc340","observation_id":"948b0fcd-e13a-41dd-8e6b-e5dbedcd112a","resolution":{"observed_at":"2026-08-01T09:39:19.922452Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+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":"2026-08-01T09:37:52.635439Z","title":"2020 Estimating epidemic exponential growth rate and basic reproduction num- ber.Infect","venue":null,"work_id":null,"year":2020},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":3,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:52.635439Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:2dd96b93f07ac3a8a4f38f231830935b26bfe097c2f9617deae1d5e27afca6e9","observation_id":"433c8cfd-ad88-4f43-ad4f-b2f148bcd67c","resolution":{"observed_at":"2026-08-01T09:37:52.635439Z","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":"10.1126/science.325_1071a","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2009 Influenza: accounting for prior immunity.Science325, 1071","venue":"Science","work_id":"7d899490-77f4-43db-a88b-0d9d829b5fcb","year":2009},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":4,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:52.717284Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:3c28160ca519f0b4670442fe1a1fa83df63bf1d53992723a8885300df0f72dd5","observation_id":"f6a47a85-31e3-4d18-a9a7-05d52d1ab499","resolution":{"observed_at":"2026-08-01T09:39:19.800914Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":{"arxiv_id":"2511.01939","last_updated":"2026-07-22T19:04:58Z","snapshot_observed_at":"2026-08-07T05:18:08.929946Z","submitted_at":"2025-11-02T23:52:27Z","title":"Epidemic \"momentum\" and a conservation law for infectious disease dynamics","version":3},"cited_work":{"arxiv_id":null,"doi":null,"metadata_source":null,"pith_arxiv_id":"2511.01939","snapshot_observed_at":"2026-08-01T09:37:52.835723Z","title":"momentum","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":5,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:52.835723Z"},"links":{"cited_paper":"/paper/2511.01939","citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:d6c9f4dac6bba6d28cd1c0fd5cb2deaacf0d55c23e7201d0ee85cf6f62ee7172","observation_id":"d32e344b-5bcc-40d1-8d36-cb4f5b994957","resolution":{"observed_at":"2026-08-01T09:37:52.835723Z","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":"10.1073/pnas.0902958106","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2009 Reconstructing influenza incidence by deconvolution of daily mortality time series.Proc","venue":"Proceedings of the National Academy of Sciences","work_id":"fc23b31b-950a-4441-ae7f-186b2aa745c8","year":2009},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":6,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:52.919946Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:f0c263ecbf1cf17b84e8951b06733506c9d1628bf8a72c9b36a1afb4e2159cc1","observation_id":"d29f10f3-ec41-45f8-9772-8a9033b8efac","resolution":{"observed_at":"2026-08-01T09:39:19.659364Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+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":"2026-08-01T09:37:53.105550Z","title":"1927 A contribution to the mathematical theory of epidemics.Proc","venue":null,"work_id":null,"year":1927},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":7,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.105550Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:86dc097e76e92c9852604b7ad9421ab41e8f998245573f33d49f4a15ad25806a","observation_id":"a8548cc2-4b46-4c00-9139-910f4dbc1d06","resolution":{"observed_at":"2026-08-01T09:37:53.105550Z","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":"2026-08-01T09:37:53.258245Z","title":"2012 On the formulation of epidemic models (an appraisal of Kermack and McKendrick).J","venue":null,"work_id":null,"year":2012},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":8,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.258245Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:a935db9657d8113f819fa2b9e3534f71c4eb6324b406cd9b4b89f3d63dd072e1","observation_id":"303b9cb3-ab95-4f89-8605-b0229121a069","resolution":{"observed_at":"2026-08-01T09:37:53.258245Z","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":"2026-08-01T09:37:53.470641Z","title":"2018 Equivalence of the Erlang SEIR epi- demic model and the renewal equation.SIAM J","venue":null,"work_id":null,"year":2018},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":9,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.470641Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:a3415953e4fc2b90c1b79efae1299b22744e9f83ee151ff7cfba2e87d3c0f86b","observation_id":"225d1ddc-d256-4f91-98ea-dd13d0f51ec6","resolution":{"observed_at":"2026-08-01T09:37:53.470641Z","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":"2026-08-01T09:37:53.584370Z","title":"2007 A note on generation times in epidemic models.Math","venue":null,"work_id":null,"year":2007},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":10,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.584370Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:0c651f86761c2367c121fd0e2fffa96f84df04cc2c716f643aabd4d6effdab7c","observation_id":"2b13a28c-6a88-48d1-b207-7f6974ca958c","resolution":{"observed_at":"2026-08-01T09:37:53.584370Z","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":"2026-08-01T09:37:53.692938Z","title":"2015 Intrinsic and realized generation intervals in infectious- disease transmission.Proc","venue":null,"work_id":null,"year":2015},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":11,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.692938Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:de7211c07f55aa4a7e47eda31d0da590f3ecbd56accf01d8a241f9f2ff94baf5","observation_id":"04533d47-7233-463b-8ad1-2aad9a067ae1","resolution":{"observed_at":"2026-08-01T09:37:53.692938Z","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":"2026-08-01T09:37:53.772490Z","title":"1925 On the True Rate of Natural Increase: As Exemplified by the Population of the United States, 1920.J","venue":null,"work_id":null,"year":1925},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":12,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.772490Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:91524718d6fe1e61a624987db6bdc935faad04397253c32f488fa61122407023","observation_id":"aff9dcaa-4589-407c-a3a7-c2afed7ac809","resolution":{"observed_at":"2026-08-01T09:37:53.772490Z","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":"2026-08-01T09:37:53.857771Z","title":"1941 On the Integral Equation of Renewal Theory.Ann","venue":null,"work_id":null,"year":1941},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":13,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.857771Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:869e31e487d5e04ea9d444e93f788ebcbc2d2a3a4b5ce6ba64075ed51c8b6f5b","observation_id":"6694006a-cb39-4265-8689-52f3091d66f4","resolution":{"observed_at":"2026-08-01T09:37:53.857771Z","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":"10.1007/b139042","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2005Applied Mathematical Demography","venue":"Statistics for biology and health","work_id":"00fb74b2-6a9d-4d1f-bcc9-bd7f6c2a86d5","year":null},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":14,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.902496Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:5850191c2e67ca7f5f44933a234db4d8fae3727c562db298216b4b1437828f2e","observation_id":"be823a5e-4ad8-4940-8601-807cec22e612","resolution":{"observed_at":"2026-08-01T09:39:19.245090Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1038/nature05638","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2007 Seasonal dynamics of recurrent epidemics.Nature 446, 533–536","venue":"Nature","work_id":"d7a1a069-1863-4e8e-8d91-8d62913b0c3e","year":2007},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":15,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.009463Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:c9adf57b605604679f0a29b171584a14091cdb826206bd278ab937496c60fe03","observation_id":"65ac50bc-fb95-45ef-a972-de9501ac7122","resolution":{"observed_at":"2026-08-01T09:39:19.066447Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1073/pnas.2510156122","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2025 Global stability of epidemic models with uniform sus- ceptibility.Proc","venue":"Proceedings of the National Academy of Sciences","work_id":"a7c3c4d3-17c2-4493-9130-b2277fb49ce9","year":2025},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":16,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.179868Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:26f395c2998f8333bc89b20ae81474f9cf88e13eb0b9d0e9112224638a4cf7f2","observation_id":"bda5d6b0-9ff1-4961-825c-71948232b0ed","resolution":{"observed_at":"2026-08-01T09:39:18.677767Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1073/pnas.2004904117","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2020 Acceleration of plague out- breaks in the second pandemic.Proc","venue":"Proceedings of the National Academy of Sciences","work_id":"4236b973-033b-4d39-9b41-77634d48c2d8","year":2020},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":17,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.397732Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:751a6bd0e42cfdc56da109dfe9503e09ce8b34eb6b4622baa6407c31b7cff3bb","observation_id":"06ed1806-23d7-4477-b6c0-eef50acf0124","resolution":{"observed_at":"2026-08-01T09:39:18.471210Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.32614/cran.package.epigrowthfit","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2024epigrowthfit: Nonlinear Mixed Effects Models of Epidemic Growth","venue":null,"work_id":"053fe554-0c36-4918-b9d4-2e81d8f42eff","year":null},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":18,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.574029Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:fed360636c49d172cf6695d02782af7b588a24d5444fa8843bca085bd3b60f04","observation_id":"4c530ef1-95ab-4454-b9ce-b427dfb47674","resolution":{"observed_at":"2026-08-01T09:39:18.265470Z","resolver_source":"doi_truncated","status":"malformed_identifier"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+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":"2026-08-01T09:37:54.685433Z","title":"1920Special Tables of Mortality from Influenza and Pneumonia, in Indiana, Kansas, and Philadelphia, PA","venue":null,"work_id":null,"year":null},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":19,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.685433Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:58113144e5ee9a49705f2cfb8389455eea75ed4e1025fc38a981b1f5aaf1cfa4","observation_id":"34a4df6e-f090-41df-a843-922e0c86be3d","resolution":{"observed_at":"2026-08-01T09:37:54.685433Z","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":"2026-08-01T09:37:54.769016Z","title":"2020 Fast estimation of time-varying infectious disease transmission rates.PLoS Comput","venue":null,"work_id":null,"year":2020},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":20,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.769016Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:cbb8f272df9d951444984053682e3b35ef6b62a8b901e949d57371f2c726d0d8","observation_id":"a9ff1ba3-85b6-4e6e-9019-8dc8407c8eda","resolution":{"observed_at":"2026-08-01T09:37:54.769016Z","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":"10.32614/cran.package.fastbeta","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2025fastbeta: Fast Approximation of Time-Varying Infectious Disease Trans- mission Rates","venue":null,"work_id":"4210f8ca-1900-4f22-bf8f-f4dfc9cfac70","year":null},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":21,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.854086Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:80fd585aec8353c6f414ccfd4610758835321f99982bab1ac2c1cb76410fd926","observation_id":"4c3215cf-0da0-448a-9a2f-99a30bbf0f52","resolution":{"observed_at":"2026-08-01T09:39:18.075148Z","resolver_source":"doi_truncated","status":"malformed_identifier"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1093/oxfordjournals.aje.a112781","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"1979 An outbreak of influenza aboard a commercial airliner.Am","venue":"American Journal of Epidemiology","work_id":"77d804f7-c7c4-49c7-adce-57efbb6e8638","year":1979},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":22,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.914095Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:013ee5459cc76036723e6aaeaf979263ec06b3970328a426494e77da5cb1570d","observation_id":"104d08ba-0511-4358-a5a4-7dd7e20d8323","resolution":{"observed_at":"2026-08-01T09:39:17.959380Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+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":"2026-08-01T09:37:54.965846Z","title":"1918 The influenza epidemic in Chicago: The disease as a type of toxemic shock.JAMA71, 1962–1967","venue":null,"work_id":null,"year":1918},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":23,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:54.965846Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:ba0c060b5410beebadaf3d86e8ce4807f4470fa74eae8ae2b0ab35b96391aaa9","observation_id":"2b5e501b-9890-40af-8f30-7b1723690317","resolution":{"observed_at":"2026-08-01T09:37:54.965846Z","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/nature03063","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2004 Transmissibility of 1918 pandemic influenza","venue":"National geographic/The complete National geographic/The National geographic magazine","work_id":"26924788-32e2-4a3d-bc5a-33bf8a20895c","year":2004},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":24,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.021340Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:d2d15b621e333f050584a5ba11c25055dc4bf067241e0bd520640c2f5d5e5083","observation_id":"86eec211-de02-412f-9560-e9e8f291d376","resolution":{"observed_at":"2026-08-01T09:39:17.778070Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.2307/4575511","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"1920 Statistics of influenza morbidity with special reference to certain factors in case incidence and case fatality.Public Health Rep.35, 584–597","venue":"Public Health Reports (1896-1970)","work_id":"38a6d22d-0233-4fe8-9fb5-aa10bcd798cc","year":1920},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":25,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.079581Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:0447b730bc800200d671f7b05791d12416730fdfbe9312c60a4710ec1ee483fd","observation_id":"681cc65c-9c00-4f88-a20c-b9ff6b1a0289","resolution":{"observed_at":"2026-08-01T09:39:17.629798Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+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":"2026-08-01T09:37:55.149118Z","title":"2008 Quantifying social distancing arising from pan- demic influenza.J","venue":null,"work_id":null,"year":2008},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":26,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.149118Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:b99349cc4d3698e644ae4c199c3e1df14e3e62b30d8294fcd31b3557ee7bd359","observation_id":"d40a15f0-137d-407a-aa3d-ed2f009fe360","resolution":{"observed_at":"2026-08-01T09:37:55.149118Z","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":"10.1371/journal.pcbi.1006377","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"2018 Characterising seasonal influenza epidemiology using primary care surveillance data.PLoS Comput","venue":"PLoS Computational Biology","work_id":"731fe591-b305-4f91-8832-c0ede9ea2c0b","year":2018},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":27,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.209536Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:f18e1a92878e7d9b9d24b47fbc53851b73d2be5005f3caf24929e573e0e2f434","observation_id":"240c73e2-adbf-4096-902f-1007dbfb65cf","resolution":{"observed_at":"2026-08-01T09:39:17.471300Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1007/s11538-026-01656-","metadata_source":"doi_reference","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-01T09:39:17.240505Z","title":"2026 Identifiability in Epidemic Models with Prior Immunity and Under-Reporting.Bull","venue":null,"work_id":"4f5b9935-0c4b-40e0-a01c-8f84174f2cd0","year":2026},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":28,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.290468Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:27ad99d542a15dae765252e99c8ec88797245c8e84acfe539517d80da504d069","observation_id":"fb452849-ff45-4e45-a5e6-315384f0ea57","resolution":{"observed_at":"2026-08-01T09:39:17.306809Z","resolver_source":"doi_truncated","status":"malformed_identifier"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1073/pnas.31.1.24","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"1945 The law of mass action in epidemiology.Proc","venue":"Proceedings of the National Academy of Sciences","work_id":"27c1000c-ace0-4ec7-8700-dcbc37375e62","year":1945},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":29,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.346566Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:198db00910ec759a63fccb4a26fb3b6f8d4574cfe2b267c2a4a09461616f81f1","observation_id":"b391f794-5a8e-4f47-bf4e-e0eb25f95206","resolution":{"observed_at":"2026-08-01T09:39:17.144326Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"state":"measured"}},{"citation":{"cited_paper":null,"cited_work":{"arxiv_id":null,"doi":"10.1007/bf00276956","metadata_source":"openalex","pith_arxiv_id":null,"snapshot_observed_at":"2026-08-05T02:28:24.338817Z","title":"1986 Influence of nonlinear incidence rates upon the behav- ior of SIRS epidemiological models.J","venue":"Journal of Mathematical Biology","work_id":"4c1569bf-3ef5-49a6-a86d-c8ff0a91f96c","year":1986},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":30,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.390053Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:a5d8dbb435ba7de07cd1f0b2371d2496e0dcb9ee74ad8b575361f4a9448a7f6e","observation_id":"c0e085f9-8143-45d3-b0be-afb992bf93a3","resolution":{"observed_at":"2026-08-01T09:39:16.771894Z","resolver_source":"doi","status":"verified_exact"},"standing_notice":{"events":[],"observation":"No event found in the named queried sources as of 2026-08-08T06:32:00.761636+00:00.","reason":null,"source_receipts":[{"observed_at":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+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":"2026-08-01T09:37:55.446184Z","title":"2000 Time series modelling of childhood diseases: A dynam- ical systems approach.J","venue":null,"work_id":null,"year":2000},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":31,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.446184Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:d1000ed09ac712983161cc4af02239902eb5e44c1e293efce922ff86d037100b","observation_id":"7381c78e-e07b-4519-9c7c-5e7a11ed6ec7","resolution":{"observed_at":"2026-08-01T09:37:55.446184Z","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":null,"metadata_source":null,"pith_arxiv_id":null,"snapshot_observed_at":"2026-08-01T09:37:55.495890Z","title":"2008 On the spread of epidemics in a closed heterogeneous population","venue":null,"work_id":null,"year":2008},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":32,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.495890Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:f3ba985b2397696390a52c3abbe3319d4f4861ca8687ca5d64b51dcdcfc54add","observation_id":"fbdf243b-a34a-4368-ac2b-7afd9238f64f","resolution":{"observed_at":"2026-08-01T09:37:55.495890Z","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":"2026-08-01T09:37:55.521365Z","title":"2026 Epidemic Momentum with Nonlinear Incidence","venue":null,"work_id":null,"year":2026},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":33,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.521365Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:2b2025a7a3ff94dcee212cd6982f8c1cb7718fb7920318150910ffdb0efb491b","observation_id":"60851b95-fd67-420f-8fe4-8890ee4a6787","resolution":{"observed_at":"2026-08-01T09:37:55.521365Z","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":"2026-08-01T09:37:55.601552Z","title":"1996 On the Lambert W function.Adv","venue":null,"work_id":null,"year":1996},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":34,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.601552Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:d60834ddaa27fa7dcfe767281286d46e7b0309092afcbf445a566a2a92c5515f","observation_id":"b205ab25-7ff9-458f-a92e-e9695cb2b7e4","resolution":{"observed_at":"2026-08-01T09:37:55.601552Z","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":"2026-08-01T09:37:55.701980Z","title":"2025NIST Digital Library of Mathematical Functions","venue":null,"work_id":null,"year":2025},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":35,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.701980Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:4fa6b1c86fdd41d0aea4a57c18ba3dbb9c9b3a94b87dad43c8db35888896b8b0","observation_id":"901d6464-698a-475d-84ee-873f6c7581f4","resolution":{"observed_at":"2026-08-01T09:37:55.701980Z","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":"2026-08-01T09:37:55.851874Z","title":"1991Infectious Diseases of Humans: Dynamics and Control","venue":null,"work_id":null,"year":null},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":36,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:55.851874Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:45c913a58bac5e5b352ad2f02a25765299101db48a4659cfc70b4dd60deaecec","observation_id":"bcab8efd-9291-42b5-a630-1c9a35178591","resolution":{"observed_at":"2026-08-01T09:37:55.851874Z","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":"2026-08-01T09:37:53.357141Z","title":null,"venue":null,"work_id":null,"year":2012},"citing_paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series","version":1},"reference_index":117,"source":"pdf_text","source_observed_at":"2026-08-01T09:37:53.357141Z"},"links":{"citing_paper":"/paper/2607.21657"},"observation_digest":"sha256:d98964868eb9765f5f9f901a7367d5f9933f88d127f9d26a31188a4dea63ed01","observation_id":"c46eb2a1-eec1-4f24-8b94-829f1c43157f","resolution":{"observed_at":"2026-08-01T09:37:53.357141Z","resolver_source":null,"status":"unresolved"},"standing_notice":{"events":[],"reason":"canonical_work_link_unavailable","source_receipts":[],"state":"unavailable"}}],"paper":{"arxiv_id":"2607.21657","last_updated":"2026-07-22T21:17:47Z","latest_version":1,"primary_category":"q-bio.PE","snapshot_observed_at":"2026-08-04T13:05:22.127433Z","submitted_at":"2026-07-22T21:17:47Z","title":"Jointly estimating transmissibility and prior immunity from epidemic time series"},"reference_resolution":{"displayed":37,"state_counts":{"malformed_identifier":5,"metadata_mismatch":0,"parse_uncertain":0,"unresolved":19,"verified_exact":13,"verified_fuzzy":0},"total_outbound_references":37},"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":"2026-08-08T06:32:00.761636+00:00","source":"crossref"},{"observed_at":"2026-08-08T06:31:55.24221+00:00","source":"retraction_watch"}],"thesis":"As of 8 August 2026, this Paper Citation Record lists 37 of 37 outbound references and 0 inbound Pith citation observations for arXiv:2607.21657."}