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Illusory movements of a phantom hand grade with the duration and magnitude of motor commands

机译:幻像手牌的虚幻运动与运动命令的持续时间和幅度

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摘要

The senses of limb movement and position are critical for accurate control of movement. Recent studies show that central signals of motor command contribute to the sense of limb position but it is not clear whether such signals influence the distinctly different sense of limb movement. Nine subjects participated in two experiments in which we inflated a cuff around their upper arm to produce an ischaemic block, paralysing and anaesthetising the forearm, wrist and hand. This produces an experimental phantom wrist and hand. With their arm hidden from view subjects were asked to make voluntary efforts with their blocked wrist. In the first experiment, efforts were 20 and 40% of maximum and were 2 and 4 s in duration. The second experiment used 1 and 5 s efforts of 5 and 50% of maximum. Subjects signalled perceived movements of their phantom wrist using a pointer. All subjects reported clear perceptions of movement of their phantom hand for all levels and durations of effort. On average, subjects perceived their phantom wrist to move between 16.4 ± 3.3 deg (mean ± 95% confidence interval (CI)) and 30.2 ± 5.4 deg in the first experiment and between 10.3 ± 3.5 and 38.6 ± 6.7 deg in the second. The velocity of the movements and total displacement of the phantom graded with the level of effort, and the total displacement also graded with duration. Hence, we have shown that motor command signals have a novel proprioceptive role in the perception of movement of human joints.
机译:肢体运动和位置感对于精确控制运动至关重要。最近的研究表明,运动命令的中央信号有助于肢体的位置感,但尚不清楚这些信号是否影响肢体运动的明显不同。九名受试者参加了两个实验,在该实验中,我们给他们的上臂充气了一个袖带,以产生缺血性阻塞,使前臂,手腕和手麻痹并麻醉。这产生了一个实验性的幻影手腕和手。他们的手臂不可见,被要求用他们被遮住的手腕做出自愿的努力。在第一个实验中,努力是最大努力的20%和40%,持续时间是2s和4s。第二个实验使用1和5的努力,即最大努力的5%和50%。受试者使用指示器发信号通知他们幻影手腕的感知动作。所有受试者都报告了他们在所有级别和持续时间内幻像手运动的清晰感知。平均而言,受试者在第一个实验中感觉到幻影手腕在16.4±3.3度(平均±95%置信区间(CI))和30.2±5.4度之间移动,而在第二个实验中在10.3±3.5至38.6±6.7度之间移动。体模的运动速度和总位移随力度而定,总位移也随持续时间而定。因此,我们已经表明,运动命令信号在感知人体关节运动中具有新颖的本体感受作用。

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