首页> 外文会议>IEEE Signal Processing in Medicine and Biology Symposium >Gait, posture, pogo-sticks and newfangled neurogenetics: How do legged animals control their locomotion?
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Gait, posture, pogo-sticks and newfangled neurogenetics: How do legged animals control their locomotion?

机译:步态,姿势,弹簧杆和新型神经遗传学:有腿动物如何控制其运动?

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One of the grand challenges for modern science is to understand how animals (including humans!) move. Movement results from the dynamic interaction of many complex, nonlinear constituents: the nervous system, muscles, body, and an often-unpredictable external environment. Yet many animals move quickly through the environment with stability and economy surpassing our technology. This talk will present three threads of research that seek to understand different aspects of legged locomotion control: 1) comparative work in insects, dogs, and the XRL robot aimed at understanding both how and why control strategy varies with body morphology, 2) a dynamical systems approach to understanding gait, that aims to understand how the "fine structure" of experimentally observed quadrupedal gait control reflects constraints such as stability, and finally, 3) recent work that brings the new genetic tools of optogenetics and chemogenetics (DREADDs) to bear on long-standing problems in legged locomotion control, and that is finding application in spinal cord injury.
机译:了解现代科学(其中包括人类!)如何运动是现代科学面临的重大挑战之一。运动是由许多复杂的,非线性的成分(神经系统,肌肉,身体以及经常无法预测的外部环境)之间的动态相互作用产生的。然而,许多动物在环境中快速移动,其稳定性和经济性超过了我们的技术。本演讲将提出三个研究线索,以期了解腿部运动控制的不同方面:1)昆虫,狗和XRL机器人的比较工作,旨在了解控制策略如何以及为何随身体形态而变化; 2)动态系统的方法来理解步态,旨在理解实验观察到的四足步态控制的“精细结构”如何反映诸如稳定性之类的约束,最后,3)最近的工作带来了光遗传学和化学遗传学(DREADDs)的新遗传工具在腿部运动控制中长期存在的问题,这在脊髓损伤中得到了应用。

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