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Position sense at the human forearm in the horizontal plane during loading and vibration of elbow muscles

机译:在肘部肌肉的加载和振动过程中,人体前臂在水平面中的位置感

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摘要

When blindfolded subjects match the position of their forearms in the vertical plane they rely on signals coming from the periphery as well as from the central motor command. The command signal provides a positional cue from the accompanying effort sensation required to hold the arm against gravity. Here we have asked, does a centrally generated effort signal contribute to position sense in the horizontal plane, where gravity cannot play a role? Blindfolded subjects were required to match forearm position for the unloaded arm and when flexors or extensors were bearing 10%, 25% or 40% of maximum loads. Before each match the reference arm was conditioned by contracting elbow muscles while the arm was held flexed or extended. For the unloaded arm conditioning led to a consistent pattern of errors which was attributed to signals from flexor and extensor muscle spindles. When elbow muscles were loaded the errors from conditioning converged, presumably because the spindles had become coactivated through the fusimotor system during the load-bearing contraction. However, this convergence was seen only when subjects supported a static load. When they moved the load differences in errors from conditioning persisted. Muscle vibration during load bearing or moving a load did not alter the distribution of errors. It is concluded that for position sense of an unloaded arm in the horizontal plane the brain relies on signals from muscle spindles. When the arm is loaded, an additional signal of central origin contributes, but only if the load is moved.
机译:当被蒙住眼睛的对象与他们的前臂在垂直平面上的位置匹配时,他们将依赖于来自外围以及来自中央运动指令的信号。命令信号根据保持手臂抵抗重力所需的伴随力度感提供位置提示。在这里,我们问过,在重力无法发挥作用的水平面中,中央产生的力气信号是否有助于位置感?被蒙住眼睛的受试者被要求与空臂相匹配的前臂位置,以及屈肌或伸肌承受最大负荷的10%,25%或40%时。每次比赛之前,参考臂的屈肘或伸展动作均以肘部肌肉收缩为条件。对于空载的手臂,调理导致一致的错误模式,这归因于屈肌和伸肌纺锤的信号。当肘部肌肉被加载时,来自调节的误差会收敛,大概是因为在承重收缩期间,主轴已经通过融合运动系统被共同激活。但是,只有在受试者支持静态负荷时才能看到这种收敛。当他们移动负载时,调节带来的误差仍然存在。承重或移动负载期间的肌肉振动不会改变误差的分布。结论是,对于空载手臂在水平面中的位置感,大脑依赖于肌肉纺锤体发出的信号。当手臂被加载时,附加的中心原点信号会起作用,但前提是要移动负载。

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