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Computational Medicine: Translating Models to Clinical Care

机译:计算医学:将模型转化为临床护理

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Because of the inherent complexity of coupled nonlinear biological systems, the development of computational models is necessary for achieving a quantitative understanding of their structure and function in health and disease. Statistical learning is applied to high-dimensional biomolecular data to create models that describe relationships between molecules and networks. Multiscale modeling links networks to cells, organs, and organ systems. Computational approaches are used to characterize anatomic shape and its variations in health and disease. In each case, the purposes of modeling are to capture all that we know about disease and to develop improved therapies tailored to the needs of individuals. We discuss advances in computational medicine, with specific examples in the fields of cancer, diabetes, cardiology, and neurology. Advances in translating these computational methods to the clinic are described, as well as challenges in applying models for improving patient health.
机译:由于耦合的非线性生物系统固有的复杂性,计算模型的开发对于实现对它们在健康和疾病中的结构和功能的定量理解是必要的。将统计学习应用于高维生物分子数据,以创建描述分子与网络之间关系的模型。多尺度建模将网络链接到细胞,器官和器官系统。计算方法用于表征解剖形状及其在健康和疾病中的变化。在每种情况下,建模的目的都是捕获我们对疾病的所有了解,并开发针对个人需求的改良疗法。我们讨论了计算医学的进展,并列举了癌症,糖尿病,心脏病学和神经病学领域的具体例子。描述了将这些计算方法应用于临床的进展,以及应用模型改善患者健康的挑战。

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