Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-07-11T12:54:13.507934Z
Paper Citation Record · LEDGER
As of 13 August 2026, this Paper Citation Record lists 48 of 48 outbound references and 2 inbound Pith citation observations for arXiv:2607.04827.
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 2026-07-11T12:54:13.507934Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-13T06:32:02.005865+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links, observed 2026-07-14T16:19:18.340676Z
A source-named dated measurement, never combined with another source.
Source: cited_works
48 of 48 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation f3ebd69a-d77c-4456-a72d-51e76e65f30a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence L., and Calder, W
Reference 1
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Unavailable: canonical work link unavailable.
Observation 0a481e8f-db42-42c0-8266-15d631b1f70d · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Unresolved cited work
Reference 2
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Observation cfa9e49e-8310-4c50-874c-a5818d18e4b8 · outbound
Reference 3
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Observation 2354582b-c7cc-449f-bcbc-cf3c5f10fb53 · outbound
Reference 4
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Observation 88016a67-9f1b-4d30-873e-0bee4dd6f813 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence H., Gillooly, J
Reference 5
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Observation e89bd23a-9045-4e65-93ad-d9b121782c85 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence A universal scaling law of mammalian life.Scientific Reports12, 17719 (2022)
Reference 6
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Observation 782d1df8-2449-4a1d-8123-f9d56b18d00f · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence B.Scale: The Universal Laws of Life, Growth, and Death in Organisms, Cities, and Companies
Reference 7
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Observation b5a92036-8af8-4a2d-8e06-8ac5ed943584 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence University of London Press (1928)
Reference 8
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Observation e2a9349e-df71-46bc-ad1b-cb80ba3a0b69 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Aging: a theory based on free radical and radiation chemistry.Journal of Gerontology11, 298–300 (1956)
Reference 9
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Observation 0d077342-3f96-4a05-8bf0-e6b65b81c0e1 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Mitochondrial free radical production and aging in mammals and birds.Annals of the New York Academy of Sciences854, 224–238 (1998)
Reference 10
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Observation 101413df-990a-4505-aa35-ec36dce402a8 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence C.The Evolution of Life Histories
Reference 11
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Observation 43ffaa01-15d3-4244-858f-33c2a07221bc · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence L.Life History Invariants
Reference 12
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Observation cc264be0-c791-4b3d-ac56-4275b9061c2d · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Sinauer Associates (2001)
Reference 13
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Unavailable: canonical work link unavailable.
Observation e4cc0caa-4da5-4a69-91c3-ef7be24841a9 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Wiley-Interscience (1967)
Reference 14
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Unavailable: canonical work link unavailable.
Observation 6f3da508-50b8-4c42-b52f-874b9790b442 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Stochastic thermodynamics, fluctuation theorems and molecular machines.Reports on Progress in Physics75, 126001 (2012)
Reference 15
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Unavailable: canonical work link unavailable.
Observation e424c2a2-c16f-435f-802c-6b492f54843c · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence C., and Seifert, U
Reference 16
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Unavailable: canonical work link unavailable.
Observation f88414de-384f-4256-97e1-968823122744 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence R., Horowitz, J
Reference 17
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Unavailable: canonical work link unavailable.
Observation b01d12d8-fb0f-4f09-913f-0b3a82377fc2 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Thermodynamic uncertainty relation for general open quantum systems.Physical Review Letters126, 010602 (2021)
Reference 18
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Observation 66185f5a-7818-4e97-a57f-80a531630fb0 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Springer (1984)
Reference 19
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Unavailable: canonical work link unavailable.
Observation 4eb05d5f-21a9-48c9-b91a-45574c6abfc0 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Cambridge University Press (2001)
Reference 20
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Unavailable: canonical work link unavailable.
Observation e349beb6-9750-4193-a9b6-084380859928 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence T.The Geometry of Biological Time
Reference 21
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Unavailable: canonical work link unavailable.
Observation 22eb2b87-3bad-4a21-8d20-c98351558a3a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Time for food: the intimate interplay between nutrition, metabolism, and the circadian clock.Cell161, 84–92 (2015)
Reference 22
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Unavailable: canonical work link unavailable.
Observation 47cf4d2c-4c5f-4a5c-8c7a-a22b99b9175f · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Circadian rhythms and molecular noise.Chaos16, 026110 (2006)
Reference 23
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Unavailable: canonical work link unavailable.
Observation 19d51f3d-5683-4f32-952f-d7cfe5992341 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence M.Spacetime and Geometry: An Introduction to General Relativity
Reference 24
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Observation b7c8d49f-3228-44fd-8bce-26554b3a012a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Unresolved cited work
Reference 25
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Unavailable: canonical work link unavailable.
Observation 1ac2e0de-7246-4801-ba97-d3adfb13d0fe · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Gravitation und Elektrizit¨ at.Sitzungsberichte der K¨ oniglich Preussischen Akademie der Wissenschaften, 465–480 (1918)
Reference 26
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Observation 7a5ecf86-0ae4-4c2b-8284-df8a20fbb93e · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Riverhead Books (2018)
Reference 27
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Unavailable: canonical work link unavailable.
Observation 09fcd0fd-de06-4c6e-9a23-a63a2feb0c83 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Phylogenies and the comparative method.American Naturalist125, 1–15 (1985)
Reference 28
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Unavailable: canonical work link unavailable.
Observation 3bf014b1-219a-4f5a-aedf-ddb64be96a8a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence E.Ecology, the Ascendent Perspective
Reference 29
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Unavailable: canonical work link unavailable.
Observation c88b5fa1-0d77-47aa-88b9-a4a886fd7cbf · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Unresolved cited work
Reference 30
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Unavailable: canonical work link unavailable.
Observation f68e5ecc-7273-41d7-858c-953fc7dc217a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence A.The Principle of Biological Time Equivalence: A Unified Theory of Life’s Temporal Invariants(2026)
Reference 31
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Observation 4df11e75-eb36-4ab9-85ba-574c70d5f20a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence J., Pamplona, R., Buffenstein, R., and Buttemer, W
Reference 32
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Observation 26379d1f-2d09-45fb-bbc4-e4af45ac6c0a · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence E.Longevity, Senescence, and the Genome
Reference 33
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Observation d8d36089-a6c2-4f06-99e5-360144655c98 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence R., Scheuerlein, A., Salguero-G´ omez, R.,et al.Diversity of ageing across the tree of life
Reference 34
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Observation f9e3267a-884c-46e7-8700-63061d4bdda9 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence DNA methylation age of human tissues and cell types.Genome Biology14, R115 (2013)
Reference 35
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Observation e9866935-b27b-4bbe-8315-e386ca216088 · outbound
Reference 36
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Observation 30a93fd6-c01f-49ff-a188-73f64d6997d8 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence T., Quach, A., Wilson, J
Reference 37
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Observation fdb37d6c-9c6b-406b-b32a-16e17c807d7e · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence T., Fei, Z., Haghani, A.,et al.Universal DNA methylation age across mammalian tissues.Nature Aging3, 1144–1166 (2023)
Reference 38
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Observation 3409a920-4c9a-4f9d-8b1c-78c92af4fb09 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Unresolved cited work
Reference 39
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Observation dea9f77a-2cd2-48c0-90a4-4c6c8c82a1a9 · outbound
Reference 40
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Observation 3ca63985-da73-43ce-bd8d-99e45d2eaba5 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Metabolic rate and body temperature reduction during hibernation and daily torpor.Annual Review of Physiology66, 239–274 (2004)
Reference 41
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Observation e69b2706-775d-47b2-83f2-767fc620c948 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence F., and Clairambault, J
Reference 42
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Unavailable: canonical work link unavailable.
Observation a60b0684-fcc1-4fa9-b9e1-fd73fe9f66fb · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Unresolved cited work
Reference 43
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Observation c748b5d2-684c-439e-94fc-4d71aad272ea · outbound
Reference 44
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Observation 0db9761e-ad59-4c5e-917e-c95991a29c92 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence Unresolved cited work
Reference 45
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Observation ce9f1de0-6729-4b26-8f98-e685f16ce02c · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence B.,et al.Presence of an inducible HIV-1 latent reservoir during highly active antiretroviral therapy.Proceedings of the National Academy of Sciences USA94, 13193–13197 (1997)
Reference 46
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Observation fc79ad28-a3b2-4cae-a568-df5a882f49b4 · outbound
Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence D., Kajdas, J., Finzi, D.,et al.Long-term follow-up studies confirm the stability of the latent reservoir for HIV-1 in resting CD4 + T cells.Nature Medicine9, 727–728 (2003)
Reference 47
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Observation e95a6de8-fe90-48e1-9156-7947f3aac821 · outbound
Reference 48
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Observation 7b31ba77-ad5d-4328-a92f-c18018121d49 · inbound
Stochastic First-Passage Theory of HIV Viral Rebound Following Latent Reservoir Reactivation Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence
Reference 29
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Observation a15bcca9-18e5-45de-abe1-5b4fc3638947 · inbound
Force--Torque Reciprocity and the Inference of Concealed Dissipation in a Geared Brownian Machine Biological Time, Evolutionary Optimization, and Gauge Coherence: A Thermodynamic Synthesis of the Principle of Biological Time Equivalence
Reference 38
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