Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-02T08:23:00.928769Z
Paper Citation Record · LEDGER
As of 18 August 2026, this Paper Citation Record lists 81 of 81 outbound references and 0 inbound Pith citation observations for arXiv:2607.06378.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-02T08:23:00.928769Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-17T06:30:58.91139+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
81 of 81 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation db045785-0e9f-479c-be5b-286f353e0fb9 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E , volume=
Reference 1
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Observation 6ee11d8e-b1a7-4f86-8d6b-cdee39affc0d · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of chemical physics , volume=
Reference 2
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Observation f1a7af74-7bcd-42c3-bb05-ba67af4ec5a0 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Unresolved cited work
Reference 3
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Observation baf4b4d4-358a-4182-a9e7-086ab8c1c750 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending 2026 , publisher=
Reference 4
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Observation 074039f6-b0e9-41d1-a42e-e721aa3f7175 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending 2017 , publisher=
Reference 5
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Observation 9d8397f0-4dff-40ec-822c-d230757ea524 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Computational Materials Science , volume=
Reference 6
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Observation 0ec88814-b4ec-44f6-9a16-5c76c784a509 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E , volume=
Reference 7
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Observation 5369a5bb-e595-4b58-a7d2-026e7a52140f · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of physics D: Applied physics , volume=
Reference 8
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Observation 4462c9d9-9dfd-4bdb-981c-218ff3435c8d · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Current opinion in structural biology , volume=
Reference 9
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Observation 34e38226-acba-4aa1-9ca5-6683701eab8d · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical journal , year=
Reference 10
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Observation dced8350-f39b-479e-8361-db452ca21044 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of molecular biology , volume=
Reference 11
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Observation 105b312b-512e-4021-93ca-dec86bc93cd5 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending New journal of physics , volume=
Reference 12
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Observation b5c80edc-8471-46bf-956a-882b0d1074dd · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Experimental mathematics , volume=
Reference 13
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Observation 1d3bc0dc-1180-4070-a25b-a219443b07e2 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Cell , volume=
Reference 14
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Observation 6bcbb72d-198c-4ba3-8e69-76fcc848b93e · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of molecular biology , volume=
Reference 15
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Observation de9454b0-6bc8-4012-93da-c953e70d80e8 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of Chemical Physics , volume=
Reference 16
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Observation 205d1e15-f739-4fa6-94f3-0c19359f28a8 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Macromolecular rapid communications , volume=
Reference 17
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Observation eb6e2513-5511-4ffa-8637-5e8e8e5b4740 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Chemistry and physics of lipids , volume=
Reference 18
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Observation e7bdd713-8b6a-4b6b-9950-612bdbd6ea7b · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of the American Chemical Society , volume=
Reference 19
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Observation 5e31b223-d342-402f-8727-ace0d4e74c83 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Shapes of fluid membranes with chiral edges
Reference 20
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Observation 62850964-2d53-454f-b5e2-8d95863488da · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending 1988 , publisher=
Reference 21
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Observation b15ef009-36d1-4647-a4f7-00329336a98d · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of Computational Physics , volume=
Reference 22
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Observation b7498984-43f2-47c4-afe0-9ccf4659b322 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of Chemical Physics , volume=
Reference 23
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Observation 1fc9e631-b783-47d5-b6b3-98db542bd4e5 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Methods in Enzymology , volume=
Reference 24
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Observation 13e5d54c-2965-4e59-ae78-5ba979bd9892 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending 2025 , publisher=
Reference 25
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Observation 9a9ac120-6a98-403e-9ac6-728cfd826de6 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E , volume=
Reference 26
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Observation 0e638b3a-f9b4-4a47-8530-b1768afb7e32 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Soft matter , volume=
Reference 27
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Observation ef750f43-19ec-441c-b617-af1aaa024b3b · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Current opinion in structural biology , volume=
Reference 28
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Observation 8ef9cc5c-0acf-47fa-a64a-567a19e5da80 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical Journal , year=
Reference 29
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Observation 87509cfe-d3ac-4f38-820c-42c2d7eb6826 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of chemical physics , volume=
Reference 30
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Observation 9d00239e-4ea8-4d9a-88db-e2bafc10fcae · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of Physics: Condensed Matter , volume=
Reference 31
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Observation 379de417-dde9-49de-9eb8-a949b8a867c0 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending PLOS Computational Biology , publisher =
Reference 32
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Observation 71d86400-c1c2-4245-a890-a9d7f358c0b7 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending elife , volume=
Reference 33
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Observation 8fe9d30f-668b-4851-93cc-89ff44d44a6e · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Proceedings of the National Academy of Sciences , volume=
Reference 34
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Observation 4432955a-23dc-4326-b59c-322863336d04 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Zeitschrift f
Reference 35
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Observation fe70c4ce-7ce1-461c-8017-356289cd3f21 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical journal , volume=
Reference 36
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Observation 6ba28cec-2649-4e3a-98ca-0f5147f7907f · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature communications , volume=
Reference 37
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Observation 4a62e051-9af9-4a31-893f-1ea428d5be7c · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of Chemical Theory and Computation , volume=
Reference 38
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Observation 60db6a51-a189-4258-8687-e0f7a5b6a4b9 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending 1991 , publisher=
Reference 39
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Observation e37e8fa9-ab87-4653-82ca-b9c47741e6cd · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending 2012 , publisher=
Reference 40
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Observation 3b288800-601d-4fa2-9fbd-8ab51c212578 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of Chemical Physics , volume=
Reference 41
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Observation b24418dd-7dac-43ae-9530-3b4c10819938 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E , volume=
Reference 42
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Observation 926c7e2c-2d60-4acb-b519-4e40db724dcb · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending bioRxiv , pages=
Reference 43
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Observation 500ce13c-23fc-4d67-8aee-6787d9d06053 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Langmuir , volume=
Reference 44
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Observation 1c11f98d-0a8a-4f50-bd85-a80f69a3aabd · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical review letters , volume=
Reference 45
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Observation e0d64283-202a-41cc-8857-44afaff9d290 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E—Statistical, Nonlinear, and Soft Matter Physics , volume=
Reference 46
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Observation 594cdf52-0f99-44d5-a927-7c898c65319d · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending PLoS biology , volume=
Reference 47
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Observation 746bb5b2-5edc-4d4f-a447-eb86634b8b43 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of membrane biology , volume=
Reference 48
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Observation c860270d-0f3c-4b99-8f20-5c27d32d4801 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature structural & molecular biology , volume=
Reference 49
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Observation 47cbe4ad-1885-4e7a-9e3c-9ac9b8a50e5c · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Soft Matter , volume=
Reference 50
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Observation d3d19236-a02b-4b27-9461-c5657524aed6 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Computer Physics Communications , volume=
Reference 51
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Observation 51fc24e5-0b2b-4257-be22-3b9e066998fa · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biochemical Society Transactions , volume=
Reference 52
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Observation de17c8c3-c4cc-4073-94ea-39490ed59cda · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E—Statistical, Nonlinear, and Soft Matter Physics , volume=
Reference 53
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Observation 7ecd3c66-4dae-4a45-9ca0-dce51193ccda · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Traffic , volume=
Reference 54
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Observation 08e616a2-2ee5-44f4-9eab-817a68138452 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Science Advances , volume=
Reference 55
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Observation de9f94df-a802-45ff-b8a2-b27d49c4882f · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature Communications , volume=
Reference 56
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Observation ce2f43b0-02f6-4062-a159-904ddddb3b54 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Trends in cell biology , volume=
Reference 57
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Observation 538c21d5-bb86-460c-82a4-c8293d565cf1 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical Journal , volume=
Reference 58
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Observation 5a316b8a-4a5d-4871-ae91-40a3ad5eeef2 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature , volume=
Reference 59
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Observation 197b9551-425c-48ea-8ff9-9ea7b8e9b198 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature physics , volume=
Reference 60
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Observation 686ae39e-b668-4f3e-9796-3f56d8e101ba · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical journal , volume=
Reference 61
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Observation 33112cc1-6e4d-4ea8-97f2-5b636c0797ff · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Advances in physics , volume=
Reference 62
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Observation 5a43edbf-89d0-4de6-9215-fe1f7a1e277a · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The journal of chemical physics , volume=
Reference 63
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Observation 7ef18e70-bb6c-4ba0-8c89-37ed58a1e20c · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Developmental cell , volume=
Reference 64
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Observation 469c3701-e8fe-449b-84ac-f85c06477d79 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Beads, springs and fields: particle-based vs continuum models in cell biophysics
Reference 65
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Observation f2d7aaa5-acb3-4b67-9839-cbca4738ff72 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Science Advances , volume=
Reference 66
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Observation d63af05f-a619-4c2d-8eb3-3b15f3fc5ec0 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The Journal of cell biology , volume=
Reference 67
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Observation 775eea22-5bb5-4dc8-bcdb-8f6b2c46022f · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature Physics , volume=
Reference 68
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Observation 08845668-3b0d-4007-b69f-2e53201c2507 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of cell science , volume=
Reference 69
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Observation 6d86a72c-7a13-4286-a013-c8875e83fa0c · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical journal , volume=
Reference 70
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Observation d32718d6-fd13-4ebd-9c83-3e3edbec2cd9 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical Journal , volume=
Reference 71
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Observation 25797cf7-3896-4be3-b3d7-af6c6d8e2659 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Proceedings of the national academy of sciences , volume=
Reference 72
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Observation c2a13b1b-3582-4255-bf99-b54d5019d0ab · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Nature , volume=
Reference 73
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Observation a63e838f-e178-43a6-9eb2-a3d727b442b4 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Current opinion in cell biology , volume=
Reference 74
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Observation 92746095-a914-4c56-9d7c-f776b01c8975 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending The European Physical Journal Special Topics , volume=
Reference 75
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Observation 8435169a-9bf7-49ff-8b8f-6333925ec357 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Journal of virology , volume=
Reference 76
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Observation c169dace-3333-4366-8fb2-5582d35a3d7e · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Developmental cell , volume=
Reference 77
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Observation 87c9317a-bcb8-40dc-b5ff-4efccd810143 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending bioRxiv , year=
Reference 78
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Observation fbebc2fe-e14a-46ed-90d8-c1f6d9d37441 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending bioRxiv , pages=
Reference 79
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Observation bba576c8-ef79-4bd2-8f01-378a29b40583 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Physical Review E—Statistical, Nonlinear, and Soft Matter Physics , volume=
Reference 80
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Observation 70234efe-cc19-49c7-bd13-dd16ce894ac7 · outbound
Hybrid Dynamical Simulation Reveals Apparent Stiffening of Flexible Protein Lattices Driving Membrane Bending Biophysical reports , volume=
Reference 81
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No inbound Pith citation observations are available.