ZHU Yu-zhen, ZOU Yu, ZHANG Qing-wen. Feasibility of Molecular Dynamics Simulation Method in the Sports Research Fields——Taking Actin,Myosin and Human Neuronal Calcium Sensor-1 Protein as Example[J]. China Sport Science, 2017, 37(1): 90-97. DOI: 10.16469/j.css.201701009
    Citation: ZHU Yu-zhen, ZOU Yu, ZHANG Qing-wen. Feasibility of Molecular Dynamics Simulation Method in the Sports Research Fields——Taking Actin,Myosin and Human Neuronal Calcium Sensor-1 Protein as Example[J]. China Sport Science, 2017, 37(1): 90-97. DOI: 10.16469/j.css.201701009

    Feasibility of Molecular Dynamics Simulation Method in the Sports Research Fields——Taking Actin,Myosin and Human Neuronal Calcium Sensor-1 Protein as Example

    • Molecular dynamics simulation is the computer simulation method based on Newton's equation of motion to study architecture with time variations.This method can be applied to physics, chemistry, biology and related issues in the field of cross-disciplinary research.It can describe the internal motions of protein and test the behavior of macromolecules in solution at the atomic scale to explain the experimental phenomena, to predict the new structure and phenomenonm and to provide the reference for experiment.In view of the value of molecular dynamics simulation method and few related research in the sports mechanism using molecular dynamics simulation method in China, this paper systematically described the molecular dynamics simulation method and its application in the sports research fields as actin, myosin and human neuronal calcium sensor-1protein to explore an innovative way for the sports research fields.
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