最新通知
Our lab general research interest is to apply dynamical theories to biological systems at the systems level.
The specific research areas are:
• Dynamics of circadian rhythm
• Dynamics of cardiac metabolism.
• Cell cycle control and biological signal transduction.
• Mechanisms of biochemical oscillations.
1.Yan, J., Shi, G.,Zhang, Z., Wu, X., Liu, Z., Xing, L.,; Qu, Z., Dong, Z., Yang, L.*, Xu, Y.*. (2014) An Intensity Ratio of Interlocking Loops Determines Circadian Period Length. Nucleic acids research. V42 : 10278-87, 2014.
2.Gu, X., Xing, L., Shi, G., Liu, Z., Wang, X., Qu, Z., Wu, X., Dong, Z., Gao, X., Liu, G., Yang, L.*, Xu, Y.*. (2012) The Circadian Mutation PER2(S662G) is Linked to Cell Cycle Progression and Tumorigenesis. Cell Death and Differentiation. V19 : 397-405.
3.Shi, J., Xu, J., Zhang, X., Yang, L.*. (2012) Positive Feedback Induced Memory Effect in Ischemic Preconditioning. Journal of Theoretical Biology. V300 : 317-323.
4.Yang L., Korge P., Weiss J., and Qu Z.*. (2010) Mitochondrial Oscillations and Waves in Cardiac Myocytes: Insights from Computational Models. Biophysical Journal. V98, pp 1428–1438.
5.Yang JH, Yang L (joint first authors), Qu Z, and Weiss JN*. (2008) Glycolytic Oscillations in Isolated Rabbit Ventricular Myocytes. The Journal of Biological Chemistry. V283, NO. 52, pp. 36321–36327.
6.Yang L, MacLellan WR, Han Z, Weiss JN, Qu Z. (2004) Multisite Phosphorylation and Network Dynamics of Cyclin-dependent Kinase Signaling in The Eukaryotic Cell Cycle. Biophysical Journal. 86(6): 3432-3443.
7.Yang L, Liu ZR, Mao JM. (2000) Controlling Hyperchaos. Physical Review Letters. 84 (1): 67-70.
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