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本体感觉丧失会导致关节间协调功能出现缺陷。

Loss of proprioception produces deficits in interjoint coordination.

作者信息

Sainburg R L, Poizner H, Ghez C

机构信息

Center for Neurobiology and Behavior, Columbia University, New York.

出版信息

J Neurophysiol. 1993 Nov;70(5):2136-47. doi: 10.1152/jn.1993.70.5.2136.

Abstract
  1. We analyzed the performance of a simple pantomimed gesture in 2 patients with large-fiber sensory neuropathy and 11 control subjects to determine how proprioceptive deafferentation disrupts unconstrained multijoint movements. Both patients had near-total loss of joint position, vibration, and discriminative touch sensation in the upper extremities. Muscle strength remained intact. 2. Subjects performed a gesture similar to slicing a loaf of bread. In this gesture, the hand first moves outward from the body, reverses direction sharply, and then moves back toward the body. Accurate performance requires precise coordination between the shoulder and elbow joints during movement reversals. Movements were performed under two conditions: with eyes open and with eyes closed. Three dimensional shoulder, elbow, wrist, and hand trajectories were recorded on a WATSMART system. 3. When control subjects performed the gesture with their eyes closed, their wrist trajectories were relatively straight and individual cycles of motion were planar. Movements reversed direction sharply, such that outward and inward portions of the wrist path were closely aligned. Corresponding to this spatial profile, the reversals in movement direction at the shoulder joint, from flexion to extension, and at the elbow joint, from extension to flexion, were synchronous. 4. In contrast, when deafferented patients performed the gesture with their eyes closed, their wrist trajectories were highly curved and individual cycles were severely nonplanar. The wrist paths showed a characteristic anomaly during the reversal in movement direction, when elbow joint movement became transiently locked. Correspondingly, the movement reversals at the shoulder and elbow joints were severely temporally decoupled. 5. When patients were able to view their limbs during performance of this gesture there was significant improvement in the linearity and planarity of movements. However, the patients remained unable to synchronize the movements at the shoulder and elbow joints to produce spatially precise wrist paths. 6. We conclude that loss of proprioception disrupts interjoint coordination and discuss the hypothesis that this interjoint coordination deficit results from a failure to control the interaction forces that arise between limb segments during multijoint movements.
摘要
  1. 我们分析了2例大纤维感觉神经病变患者及11名对照受试者进行简单模拟手势的表现,以确定本体感觉传入缺失如何干扰无约束的多关节运动。两名患者上肢的关节位置觉、振动觉及辨别性触觉几乎完全丧失,肌力保持完好。2. 受试者进行一个类似于切面包的手势。在此手势中,手先从身体向外移动,然后急剧反向,再向身体移回。准确完成该动作需要在动作反向时肩部和肘关节之间精确协调。动作在两种条件下进行:睁眼和闭眼。在WATSMART系统上记录肩部、肘部、腕部和手部的三维轨迹。3. 当对照受试者闭眼进行该手势时,其腕部轨迹相对较直,且单个运动周期为平面运动。动作急剧反向,使得腕部路径的向外和向内部分紧密对齐。与此空间轮廓相对应,肩关节从屈曲到伸展以及肘关节从伸展到屈曲的运动方向反向是同步的。4. 相比之下,当感觉传入缺失的患者闭眼进行该手势时,其腕部轨迹高度弯曲,单个周期严重非平面。在运动方向反向时,腕部路径出现特征性异常,此时肘关节运动短暂锁定。相应地,肩部和肘关节的运动反向在时间上严重解耦。5. 当患者在进行该手势时能够看到自己的肢体,运动的线性和平面性有显著改善。然而,患者仍无法使肩部和肘关节的运动同步,以产生空间上精确的腕部路径。6. 我们得出结论,本体感觉丧失会干扰关节间协调,并讨论了这样一种假说,即这种关节间协调缺陷是由于在多关节运动中未能控制肢体节段之间产生的相互作用力所致。

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Manual motor performance in a deafferented man.去传入神经的人的手动运动表现。
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