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Multiscale cancer modeling.

机译:多尺度癌症建模。

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摘要

Simulating cancer behavior across multiple biological scales in space and time, i.e., multiscale cancer modeling, is increasingly being recognized as a powerful tool to refine hypotheses, focus experiments, and enable more accurate predictions. A growing number of examples illustrate the value of this approach in providing quantitative insights in the initiation, progression, and treatment of cancer. In this review, we introduce the most recent and important multiscale cancer modeling works that have successfully established a mechanistic link between different biological scales. Biophysical, biochemical, and biomechanical factors are considered in these models. We also discuss innovative, cutting-edge modeling methods that are moving predictive multiscale cancer modeling toward clinical application. Furthermore, because the development of multiscale cancer models requires a new level of collaboration among scientists from a variety of fields such as biology, medicine, physics, mathematics, engineering, and computer science, an innovative Web-based infrastructure is needed to support this growing community.
机译:在空间和时间上跨多个生物学尺度模拟癌症行为,即多尺度癌症建模,越来越被认为是完善假设,关注实验并进行更准确预测的强大工具。越来越多的例子说明了这种方法在提供有关癌症发生,发展和治疗的定量见解方面的价值。在这篇综述中,我们介绍了最新且重要的多尺度癌症建模工作,这些工作已成功建立了不同生物学尺度之间的机械联系。在这些模型中考虑了生物物理,生化和生物力学因素。我们还将讨论创新的前沿建模方法,这些方法正在将预测性多尺度癌症建模移向临床应用。此外,由于多尺度癌症模型的开发需要生物学,医学,物理学,数学,工程学和计算机科学等各个领域的科学家之间更高水平的合作,因此需要基于Web的创新基础架构来支持这种增长社区。

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