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Control of Movement: The absence or temporal offset of visual feedback does not influence adaptation to novel movement dynamics

机译:运动控制:视觉反馈的缺失或时间偏移不会影响对新颖运动动力学的适应

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摘要

Delays in transmitting and processing sensory information require correctly associating delayed feedback to issued motor commands for accurate error compensation. The flexibility of this alignment between motor signals and feedback has been demonstrated for movement recalibration to visual manipulations, but the alignment dependence for adapting movement dynamics is largely unknown. Here we examined the effect of visual feedback manipulations on force-field adaptation. Three subject groups used a manipulandum while experiencing a lag in the corresponding cursor motion (0, 75, or 150 ms). When the offset was applied at the start of the session (continuous condition), adaptation was not significantly different between groups. However, these similarities may be due to acclimation to the offset before motor adaptation. We tested additional subjects who experienced the same delays concurrent with the introduction of the perturbation (abrupt condition). In this case adaptation was statistically indistinguishable from the continuous condition, indicating that acclimation to feedback delay was not a factor. In addition, end-point errors were not significantly different across the delay or onset conditions, but end-point correction (e.g., deceleration duration) was influenced by the temporal offset. As an additional control, we tested a group of subjects who performed without visual feedback and found comparable movement adaptation results. These results suggest that visual feedback manipulation (absence or temporal misalignment) does not affect adaptation to novel dynamics, independent of both acclimation and perceptual awareness. These findings could have implications for modeling how the motor system adjusts to errors despite concurrent delays in sensory feedback information.>NEW & NOTEWORTHY A temporal offset between movement and distorted visual feedback (e.g., visuomotor rotation) influences the subsequent motor recalibration, but the effects of this offset for altered movement dynamics are largely unknown. Here we examined the influence of 1) delayed and 2) removed visual feedback on the adaptation to novel movement dynamics. These results contribute to understanding of the control strategies that compensate for movement errors when there is a temporal separation between motion state and sensory information.
机译:延迟传输和处理感官信息需要正确地将延迟的反馈与发出的电机命令相关联,以进行准确的误差补偿。电机信号和反馈之间的这种对齐方式的灵活性已被证明可用于视觉操纵的运动重新校准,但是在很大程度上依赖于对齐方式来适应运动动态。在这里,我们检查了视觉反馈操纵对力场适应的影响。三个对象组在经历了相应光标移动的滞后(0、75或150 ms)时使用了manipulandum。在会议开始时(连续条件)应用偏移量时,各组之间的适应性差异不明显。但是,这些相似之处可能是由于适应了电机调整之前的偏移。我们测试了在引入扰动(突发条件)的同时经历相同延迟的其他受试者。在这种情况下,自适应与连续条件在统计上是无法区分的,这表明适应反馈延迟不是一个因素。另外,在延迟或开始条件下,终点误差没有显着差异,但是终点校正(例如,减速持续时间)受到时间偏移的影响。作为额外的对照,我们测试了一组没有视觉反馈的受试者,并发现了可比的运动适应性结果。这些结果表明,视觉反馈操作(不存在或时间未对准)不会影响对新动态的适应,而与适应和感知意识无关。这些发现可能会对建模产生影响,尽管感觉反馈信息会同时出现延迟,但电机系统如何适应误差。> NEW&NOTEWORTHY 运动与视觉反馈失真(例如视觉运动旋转)之间的时间偏移会影响随后的运动电机重新校准,但是这种偏移对运动动态变化的影响在很大程度上是未知的。在这里,我们研究了1)延迟和2)消除了视觉反馈对新型运动动力学适应性的影响。这些结果有助于理解在运动状态与感觉信息之间存在时间分隔时补偿运动误差的控制策略。

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