首页> 外文会议>Neural Engineering, 2009. NER '09 >Neuromuscular reflex control of limb movement - validating models of the locusts hind leg control system using physiological input signals
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Neuromuscular reflex control of limb movement - validating models of the locusts hind leg control system using physiological input signals

机译:肢体运动的神经肌肉反射控制-使用生理输入信号验证蝗虫后腿控制系统的模型

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Greater understanding of neuromuscular control of limb movements is vital for optimizing the treatment of patients with neuromuscular dysfunction. Locusts provide an opportunity to develop new investigative techniques and gain physiological insight into a related, but simpler and more accessible control system. Imposed movements of a stretch receptor in the locusts hind leg generate reflex responses in the motor neurons which control movements of the tibia. Previous work by Newland and Kondoh used a Wiener/Volterra model to represent the nonlinear responses of elements of this system to Gaussian white noise excitation. The interpretation of these models, however, is challenging both in terms of physiological relevance and statistical robustness. We have therefore extended the previous work to investigate the response of these models to physiologically realistic inputs. Our results show that the performance of the Wiener/Volterra models at predicting the response of the system to physiologically realistic inputs is poor. Investigation into this failure has allowed a simpler and more accurate model to be proposed.
机译:更好地了解肢体运动的神经肌肉控制对于优化神经肌肉功能障碍患者的治疗至关重要。蝗虫提供了开发新的调查技术并获得对相关但更简单且更易于访问的控制系统的生理洞察的机会。蝗虫后腿中牵张感受器的强加运动会在运动神经元中产生反射反应,从而控制胫骨的运动。 Newland和Kondoh先前的工作使用Wiener / Volterra模型来表示该系统的元素对高斯白噪声激发的非线性响应。但是,这些模型的解释在生理相关性和统计稳健性方面都具有挑战性。因此,我们将先前的工作扩展为研究这些模型对生理学现实输入的响应。我们的结果表明,Wiener / Volterra模型在预测系统对生理现实输入的响应方面的性能很差。对这种故障的研究允许提出一个更简单,更准确的模型。

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