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Rockets gauges and pendulums: applying engineering principles to cell biology

机译:火箭仪表和摆锤:将工程原理应用于细胞生物学

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摘要

From flight to radar to Velcro, biological form and function have inspired engineers for centuries. It is equally valuable to consider whether concepts in engineering might provide insights into core biological processes. To explore this idea, cell cycle checkpoints, biological clocks, and signaling pathways are viewed here from an engineering perspective. Engineering concepts covered include gauge error, the distinction between precision and accuracy, and the Taguchi method of robust design. Also discussed is the Pareto principle, which describes the observation that, in complex systems, a minority of the components (or inputs) are responsible for a majority of the outputs. These concepts enable engineers to manage complexity, both in system design and in operation. Thus, with new techniques and large data sets revealing ever-increasing levels of biological complexity, an engineering mindset may be particularly valuable for the study of living systems.
机译:从飞行到雷达再到维可牢尼龙搭扣,生物形态和功能在数百年来一直激发着工程师的灵感。同样重要的是,考虑工程学中的概念是否可以提供对核心生物学过程的见解。为了探索这个想法,从工程的角度来看细胞周期检查点,生物钟和信号传导途径。涵盖的工程概念包括量规误差,精度与精度之间的区别以及稳健设计的Taguchi方法。还讨论了帕累托原理,该原理描述了以下观察结果:在复杂系统中,少数组件(或输入)负责大部分输出。这些概念使工程师能够管理系统设计和操作中的复杂性。因此,随着新技术和大数据集揭示出生物复杂性水平的不断提高,工程学的思维方式对于研究生命系统可能特别有价值。

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