Institute of Information and Communication Technologies, Electronics and Applied mathematics (ICTEAM), Institute of Neuroscience (IoNS), Université catholique de Louvain, 1348 Louvain, Belgium.
Institute of Information and Communication Technologies, Electronics and Applied mathematics (ICTEAM), Institute of Neuroscience (IoNS), Université catholique de Louvain, 1348 Louvain, Belgium
eNeuro. 2022 Mar 28;9(2). doi: 10.1523/ENEURO.0439-21.2022. Print 2022 Mar-Apr.
Target reward influences motor planning strategies through modulation of movement vigor. Considering current theories of sensorimotor control suggesting that movement planning consists in selecting a goal-directed control strategy, we sought to investigate the influence of reward on feedback control. Here, we explored this question in three human reaching experiments. First, we altered the explicit reward associated with the goal target and found an overall increase in feedback gains for higher target rewards, highlighted by larger velocities, feedback responses to external loads, and background muscle activity. Then, we investigated whether the differences in target rewards across multiple goals impacted rapid motor decisions during movement. We observed idiosyncratic switching strategies dependent on both target rewards and, surprisingly, the feedback gains at perturbation onset: the more vigorous movements were less likely to switch to a new goal following perturbations. To gain further insight into a causal influence of the feedback gains on rapid motor decisions, we demonstrated that biasing the baseline activity and reflex gains by means of a background load evoked a larger proportion of target switches in the direction opposite to the background load associated with lower muscle activity. Together, our results demonstrate an impact of target reward on feedback control and highlight the competition between movement vigor and flexibility.
目标奖励通过调节运动活力来影响运动规划策略。考虑到当前的感觉运动控制理论表明,运动规划包括选择目标导向的控制策略,我们试图研究奖励对反馈控制的影响。在这里,我们通过三个人类伸手实验来探讨这个问题。首先,我们改变了与目标靶相关的明确奖励,并发现较高的目标奖励总体上增加了反馈增益,表现为更大的速度、对外界负载的反馈响应和背景肌肉活动。然后,我们研究了多个目标之间的目标奖励差异是否会影响运动中的快速运动决策。我们观察到依赖于目标奖励和令人惊讶的是,在扰动开始时的反馈增益的独特切换策略:更有力的运动在受到扰动后更不可能切换到新目标。为了更深入地了解反馈增益对快速运动决策的因果影响,我们证明通过背景负载引起的基线活动和反射增益的偏差,可以诱发出与较低肌肉活动相关的背景负载相反方向的更大比例的目标切换。总的来说,我们的结果表明目标奖励对反馈控制有影响,并强调了运动活力和灵活性之间的竞争。