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Experimental Aging Research|February 5, 2023
Digital Methods for Performing Daily Tasks Among Older Adults: An Initial Report of Frequency of Use and Perceived UtilityJared F Benge, Alyssa Aguirre, Michael K Scullin, et al.Annals of Biomedical Engineering|September 6, 2024
In Vivo Deformation of the Human Basilar ArteryJaemin Kim, Kaiyu Zhang, Gador Canton, et al.Plos Biology|November 13, 2025
A framework to determine active neurons and networks within the mouse brain reveals how brain activity changes over the course of the dayGuanhua Sun, Tomoyuki Mano, Shoi Shi, et al.Population Health Management|March 12, 2021
Importance of Community Impact as the Fourth Academic Mission: A Qualitative StudyWilliam M Tierney, David Auzenne, Lori Cook, et al.Plos Biology|October 23, 2010
Emergence of noise-induced oscillations in the central circadian pacemakerCaroline H Ko, Yujiro R Yamada, David K Welsh, et al.Cell Reports. Medicine|March 8, 2025
A circadian and app-based personalized lighting intervention for the reduction of cancer-related fatigueCaleb Mayer, Olivia Walch, Walter Dempsey, et al.Omics : a Journal of Integrative Biology|December 20, 2003
Development and validation of computational models for mammalian circadian oscillatorsDaniel B Forger, Dennis A Dean, Katherine Gurdziel, et al.Cell Reports|July 24, 2024
BDNF-TrkB signaling orchestrates the buildup process of local sleepWaleed ElGrawani, Guanhua Sun, Fabian P Kliem, et al.JMIR Research Protocols|June 11, 2021
Monitoring beliefs and physiological measures in students at risk for COVID-19 using wearable sensors and smartphone technology: Protocol for a mobile health studyChristine Cislo, Caroline Clingan, Kristen Gilley, et al.JMIR Research Protocols|May 4, 2021
Monitoring Health Care Workers at Risk for COVID-19 Using Wearable Sensors and Smartphone Technology: Protocol for an Observational mHealth StudyCaroline A Clingan, Manasa Dittakavi, Michelle Rozwadowski, et al.Pageof 14