首页> 外文会议>IEEE RAS & EMBS International Conference on Biomedical Robotics and Biomechatronics;BioRob >A simulation study of the effects of activation-dependent muscle stiffness on proprioceptive feedback and short-latency reflex
【24h】

A simulation study of the effects of activation-dependent muscle stiffness on proprioceptive feedback and short-latency reflex

机译:依赖于激活的肌肉僵硬对本体感受反馈和短时反射的影响的模拟研究

获取原文

摘要

A biologically-inspired model of the Soleus neuromuscular system was used to study the influences of musculotendon mechanical properties on the proprioceptive feedback and on the short-latency reflex. The model structure comprised: i) stochastic descending drive to a motoneuron pool; ii) a Hill-type muscle model; and iii) a muscle spindle model with its Ia sensory afferents establishing a feedback loop with the motoneurons. H-reflex and short-latency stretch reflex were simulated considering their possible dependence on musculotendon mechanical properties and on the muscle activation level. The main results showed an intrinsic relationship between the Ia response to muscle stretch and the relative stiffness between muscle and tendon. In addition, fusimotor activation and synaptic gain could modulate the short-latency reflex, indicating that these mechanisms may help to maintain reflexes functionally active during different motor tasks. These preliminary results match some experimental data and provide insights on the intricate relationship between muscular mechanics and neuronal activity. Moreover, the adopted model of the closed-loop neuromuscular system has shown its potential as a tool for studies of complex mechanisms involved in motor control.
机译:使用Soleus神经肌肉系统的生物学模型研究了肌腱组织力学特性对本体感受反馈和短时反射的影响。模型结构包括:i)随机下降驱动到运动神经元池; ii)希尔型肌肉模型; iii)肌肉纺锤模型,其Ia感觉传入与运动神经元建立反馈回路。考虑到H-反射和短潜伏期拉伸反射可能对肌肉腱机械特性和肌肉激活水平的依赖性,对其进行了模拟。主要结果表明,Ia对肌肉伸展的反应与肌肉与肌腱之间的相对刚度之间存在内在联系。此外,融合运动的激活和突触增益可以调节短时反射,这表明这些机制可能有助于在不同的运动任务期间保持功能活跃的反射。这些初步结果与一些实验数据相匹配,并提供了有关肌肉力学与神经元活动之间复杂关系的见解。此外,所采用的闭环神经肌肉系统模型已显示出其潜力,可作为研究涉及运动控制的复杂机制的工具。

著录项

相似文献

  • 外文文献
  • 中文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号