Yu, K.; Tuladhar, A.; Dankberg, S.; Dai, C.; McGee-Lawrence, M.E.
Integrating 3D Osteocyte Culture, Microgravity Simulation, and Fluid Flow Reveals Mechanisms of Osteocyte Mechanosensation and Calcium Signaling Altered by Disuse. Biomolecules 2025, 15, 1534.
https://doi.org/10.3390/biom15111534
AMA Style
Yu K, Tuladhar A, Dankberg S, Dai C, McGee-Lawrence ME.
Integrating 3D Osteocyte Culture, Microgravity Simulation, and Fluid Flow Reveals Mechanisms of Osteocyte Mechanosensation and Calcium Signaling Altered by Disuse. Biomolecules. 2025; 15(11):1534.
https://doi.org/10.3390/biom15111534
Chicago/Turabian Style
Yu, Kanglun, Anik Tuladhar, Samuel Dankberg, Caihong Dai, and Meghan E. McGee-Lawrence.
2025. "Integrating 3D Osteocyte Culture, Microgravity Simulation, and Fluid Flow Reveals Mechanisms of Osteocyte Mechanosensation and Calcium Signaling Altered by Disuse" Biomolecules 15, no. 11: 1534.
https://doi.org/10.3390/biom15111534
APA Style
Yu, K., Tuladhar, A., Dankberg, S., Dai, C., & McGee-Lawrence, M. E.
(2025). Integrating 3D Osteocyte Culture, Microgravity Simulation, and Fluid Flow Reveals Mechanisms of Osteocyte Mechanosensation and Calcium Signaling Altered by Disuse. Biomolecules, 15(11), 1534.
https://doi.org/10.3390/biom15111534