论文标题

反馈通过电动机记忆不确定性而获得调制

Feedback Gains modulate with Motor Memory Uncertainty

论文作者

Franklin, Sae, Franklin, David W.

论文摘要

动态突然变化会导致较大的错误,从而导致肌肉共同收缩和早期适应过程中的反馈收益增加。我们先前提出,内部模型不确定性会驱动这些变化,从而通过调节刚度和反馈增长来减少模型误差的效果,从而使感觉运动系统对动态的变化做出反应。但是,这些反馈增益增加也被建议代表适应机制的一部分。在这里,我们通过检查逐渐或突然的力场适应期间的视觉反馈增益的变化来研究这一点。参与者抓住了一个机器人的杂物,并在逐渐或突然引入卷曲力场时到达。突然引入动力学,引起了运动误差,肌肉共抓取和视觉反馈的大幅度最初增加,而尽管有适应性的证据,但逐渐引入这些措施的初始变化很小。适应性平稳之后,相对于无效场运动,共同接收和视觉反馈的增加发生了变化,但是在动力学的突然引入和逐渐引入之间没有差异(除了最终的肌肉激活模式)。这表明,反馈收益的初始增加不是适应过程的一部分,而是对内部模型不确定性的自动反应响应。相反,作为内部模型适应的一部分,反馈收益的最终级别是对外部动力学的反馈收益的预测性调整。加在一起,反应性和预测性的反馈收益解释了适应过程中反馈变化的先前各种实验结果。

A sudden change in dynamics produces large errors leading to increases in muscle co-contraction and feedback gains during early adaptation. We previously proposed that internal model uncertainty drives these changes, whereby the sensorimotor system reacts to the change in dynamics by up regulating stiffness and feedback gains to reduce the effect of model errors. However, these feedback gain increases have also been suggested to represent part of the adaptation mechanism. Here, we investigate this by examining changes in visuomotor feedback gains during gradual or abrupt force field adaptation. Participants grasped a robotic manipulandum and reached while a curl force field was introduced gradually or abruptly. Abrupt introduction of dynamics elicited large initial increases in kinematic error, muscle co-contraction and visuomotor feedback gains, while gradual introduction showed little initial change in these measures despite evidence of adaptation. After adaptation had plateaued,there was a change in the co-contraction and visuomotor feedback gains relative to null field movements, but no differences (apart from the final muscle activation pattern) between the abrupt and gradual introduction of dynamics. This suggests that the initial increase in feedback gains is not part of the adaptation process, but instead an automatic reactive response to internal model uncertainty. In contrast, the final level of feedback gains is a predictive tuning of the feedback gains to the external dynamics as part of the internal model adaptation. Together, the reactive and predictive feedback gains explain the wide variety of previous experimental results of feedback changes during adaptation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源