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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Reward-Based Improvements in Motor Control Are Driven by Multiple Error-Reducing Mechanisms
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Reward-Based Improvements in Motor Control Are Driven by Multiple Error-Reducing Mechanisms

机译:基于奖励的电机控制的改进由多种错误减少机制驱动

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Reward has a remarkable ability to invigorate motor behavior, enabling individuals to select and execute actions with greater precision and speed. However, if reward is to be exploited in applied settings, such as rehabilitation, a thorough understanding of its underlying mechanisms is required. In a series of experiments, we first demonstrate that reward simultaneously improves the selection and execution components of a reaching movement. Specifically, reward promoted the selection of the correct action in the presence of distractors, while also improving execution through increased speed and maintenance of accuracy. These results led to a shift in the speed-accuracy functions for both selection and execution. In addition, punishment had a similar impact on action selection and execution, although it enhanced execution performance across all trials within a block, that is, its impact was noncontingent to trial value. Although the reward-driven enhancement of movement execution has been proposed to occur through enhanced feedback control, an untested possibility is that it is also driven by increased arm stiffness, an energy-consuming process that enhances limb stability. Computational analysis revealed that reward led to both an increase in feedback correction in the middle of the movement and a reduction in motor noise near the target. In line with our hypothesis, we provide novel evidence that this noise reduction is driven by a reward-dependent increase in arm stiffness. Therefore, reward drives multiple error-reduction mechanisms which enable individuals to invigorate motor performance without compromising accuracy.
机译:奖励具有显着的能力,可以激励电机行为,使个人能够以更高的精度和速度选择和执行操作。但是,如果要在应用设置中利用奖励,例如康复,则需要对其潜在机制的彻底了解。在一系列实验中,我们首先证明奖励同时提高到达运动的选择和执行组件。具体而言,奖励在存在令人间面的情况下促进了正确的行动,同时还通过提高速度和维持准确性来改善执行。这些结果导致速度准确函数的换档,用于选择和执行。此外,惩罚对行动选择和执行具有类似的影响,尽管它在块内的所有试验中增强了执行性能,即其影响是不彻底的试验价值。尽管已经提出了通过增强的反馈控制来发生运动执行的奖励驱动增强,但是未经测试的可能性是它也由增加的臂刚度,能耗的能耗过程驱动,这是提高肢体稳定性的能耗过程。计算分析显示,奖励导致运动中间反馈校正的增加,并降低了目标附近的电机噪声。符合我们的假设,我们提供了新的证据,即这种降噪是通过奖励依赖性的手臂僵硬的增加来驱动。因此,奖励驱动多个错误减少机制,使个人能够在不影响精度的情况下使电动机性能进行振奋。

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