Chen, L.; Zhang, B.; Yang, L.; Bai, Y.-G.; Song, J.-B.; Ge, Y.-L.; Ma, H.-Z.; Cheng, J.-H.; Ma, J.; Xie, M.-J.
BMAL1 Disrupted Intrinsic Diurnal Oscillation in Rat Cerebrovascular Contractility of Simulated Microgravity Rats by Altering Circadian Regulation of miR-103/CaV1.2 Signal Pathway. Int. J. Mol. Sci. 2019, 20, 3947.
https://doi.org/10.3390/ijms20163947
AMA Style
Chen L, Zhang B, Yang L, Bai Y-G, Song J-B, Ge Y-L, Ma H-Z, Cheng J-H, Ma J, Xie M-J.
BMAL1 Disrupted Intrinsic Diurnal Oscillation in Rat Cerebrovascular Contractility of Simulated Microgravity Rats by Altering Circadian Regulation of miR-103/CaV1.2 Signal Pathway. International Journal of Molecular Sciences. 2019; 20(16):3947.
https://doi.org/10.3390/ijms20163947
Chicago/Turabian Style
Chen, Li, Bin Zhang, Lu Yang, Yun-Gang Bai, Ji-Bo Song, Yi-Ling Ge, Hong-Zhe Ma, Jiu-Hua Cheng, Jin Ma, and Man-Jiang Xie.
2019. "BMAL1 Disrupted Intrinsic Diurnal Oscillation in Rat Cerebrovascular Contractility of Simulated Microgravity Rats by Altering Circadian Regulation of miR-103/CaV1.2 Signal Pathway" International Journal of Molecular Sciences 20, no. 16: 3947.
https://doi.org/10.3390/ijms20163947
APA Style
Chen, L., Zhang, B., Yang, L., Bai, Y.-G., Song, J.-B., Ge, Y.-L., Ma, H.-Z., Cheng, J.-H., Ma, J., & Xie, M.-J.
(2019). BMAL1 Disrupted Intrinsic Diurnal Oscillation in Rat Cerebrovascular Contractility of Simulated Microgravity Rats by Altering Circadian Regulation of miR-103/CaV1.2 Signal Pathway. International Journal of Molecular Sciences, 20(16), 3947.
https://doi.org/10.3390/ijms20163947