{"@context":"https://schema.org","@type":"ScholarlyArticle","identifier":"https://research.mahastrategies.com/papers/chronobiological-entrainment","name":"Chronobiological Entrainment as a Primary Modality for Endocrine Homeostasis","version":"1.0.0","dateModified":"2026-02-15","creativeWorkStatus":"Working paper","reviewStatus":"Not peer reviewed","url":"https://research.mahastrategies.com/papers/chronobiological-entrainment","encoding":[{"@type":"MediaObject","encodingFormat":"application/pdf","contentUrl":"https://research.mahastrategies.com/papers/chronobiological-entrainment.pdf"},{"@type":"MediaObject","encodingFormat":"application/x-bibtex","contentUrl":"https://research.mahastrategies.com/papers/chronobiological-entrainment/citation.bib"},{"@type":"MediaObject","encodingFormat":"text/yaml","contentUrl":"https://research.mahastrategies.com/papers/chronobiological-entrainment/citation.cff"}],"citation":[{"id":"chronobiological-entrainment-ref-1","text":"[1] Berson, D. M., Dunn, F. A., & Takao, M. (2002). Phototransduction by retinal ganglion cells that set the circadian clock. *Science*, 295(5557), 1070–1073.","verification":"unclassified"},{"id":"chronobiological-entrainment-ref-2","text":"[2] Baek, J. H., Zhu, Y., Jackson, C. L., & Park, Y. M. (2024). Artificial Light at Night and Type 2 Diabetes Mellitus. *Diabetes & Metabolism Journal*, 48(5), 847–863. https://doi.org/10.4093/dmj.2024.0237","verification":"unclassified","identifier":"10.4093/dmj.2024.0237"},{"id":"chronobiological-entrainment-ref-3","text":"[3] Morris, C. J., Purvis, T. E., Hu, K., & Scheer, F. A. J. L. (2016). Circadian misalignment increases cardiovascular disease risk factors in humans. *Proceedings of the National Academy of Sciences*, 113(10), E1402–E1411.","verification":"unclassified"},{"id":"chronobiological-entrainment-ref-4","text":"[4] Chaix, A., Manoogian, E. N. C., Melkani, G. C., & Panda, S. (2019). Time-restricted eating to prevent and manage chronic metabolic diseases. *Annual Review of Nutrition*, 39, 291–315.","verification":"unclassified"},{"id":"chronobiological-entrainment-ref-5","text":"[5] Asher, G., & Sassone-Corsi, P. (2015). Time for food: the intimate interplay between nutrition, metabolism, and the circadian clock. *Cell*, 161(1), 84–92.","verification":"unclassified"},{"id":"chronobiological-entrainment-ref-6","text":"[6] Scheer, F. A. J. L., Hilton, M. F., Mantzoros, C. S., & Shea, S. A. (2009). Adverse metabolic and cardiovascular consequences of circadian misalignment. *Proceedings of the National Academy of Sciences*, 106(11), 4453–4458.","verification":"unclassified"}],"bibtex":"@article{rajan2026chronobiologicalentrainment,\n  author = {Rajan, Mayone Maha},\n  title = {Chronobiological Entrainment as a Primary Modality for Endocrine Homeostasis},\n  journal = {Maha Strategies Research},\n  year = {2026},\n  version = {1.0.0},\n  url = {https://research.mahastrategies.com/papers/chronobiological-entrainment},\n  note = {Working paper; not peer reviewed}\n}"}