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Newton, Laplace, and The Epistemology of Systems Biology

机译:牛顿,拉普拉斯和系统生物学的认识论

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For science, theoretical or applied, to significantly advance, researchers must use the most appropriate mathematical methods. A century and a half elapsed between Newton’s development of the calculus and Laplace’s development of celestial mechanics. One cannot imagine the latter without the former. Today, more than three-quarters of a century has elapsed since the birth of stochastic systems theory. This article provides a perspective on the utilization of systems theory as the proper vehicle for the development of systems biology and its application to complex regulatory diseases such as cancer.
机译:为了使科学(无论是理论的还是应用的)取得显著进步,研究人员必须使用最合适的数学方法。牛顿的微积分发展与拉普拉斯的天体力学发展相隔了一个半世纪。没有前者就无法想象后者。如今,自随机系统理论诞生以来已经过去了四分之三的世纪。本文就系统理论作为系统生物学发展的适当载体及其在诸如癌症等复杂调控疾病中的应用提供了一个观点。

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