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Dorsal premotor cortex is involved in switching motor plans

机译:背运动前皮层参与运动计划的转换

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摘要

Previous studies have shown that neural activity in primate dorsal premotor cortex (PMd) can simultaneously represent multiple potential movement plans, and that activity related to these movement options is modulated by their relative subjective desirability. These findings support the hypothesis that decisions about actions are made through a competition within the same circuits that guide the actions themselves. This hypothesis further predicts that the very same cells that guide initial decisions will continue to update their activities if an animal changes its mind. For example, if a previously selected movement option suddenly becomes unavailable, the correction will be performed by the same cells that selected the initial movement, as opposed to some different group of cells responsible for online guidance. We tested this prediction by recording neural activity in the PMd of a monkey performing an instructed-delay reach selection task. In the task, two targets were simultaneously presented and their border styles indicated whether each would be worth 1, 2, or 3 juice drops. In a random subset of trials (FREE), the monkey was allowed a choice while in the remaining trials (FORCED) one of the targets disappeared at the time of the GO signal. In FORCED-LOW trials the monkey was forced to move to the less valuable target and started moving either toward the new target (Direct) or toward the target that vanished and then curved to reach the remaining one (Curved). Prior to the GO signal, PMd activity clearly reflected the monkey's subjective preference, predicting his choices in FREE trials even with equally valued options. In FORCED-LOW trials, PMd activity reflected the switch of the monkey's plan as early as 100 ms after the GO signal, well before movement onset (MO). This confirms that the activity is not related to feedback from the movement itself, and suggests that PMd continues to participate in action selection even when the animal changes its mind on-line. These findings were reproduced by a computational model suggesting that switches between action plans can be explained by the same competition process responsible for initial decisions.
机译:先前的研究表明,灵长类动物背运动前皮层(PMd)中的神经活动可以同时代表多个潜在的运动计划,并且与这些运动选项相关的活动受其相对主观的期望程度的调节。这些发现支持以下假设:关于行为的决策是通过在指导行为本身的相同电路内进行的竞争来做出的。该假设进一步预测,如果动物改变了主意,则指导初始决策的相同细胞将继续更新其活动。例如,如果先前选择的移动选项突然变得不可用,则将由选择初始移动的相同单元执行校正,而不是由负责在线指导的某些不同组的单元进行相反的操作。我们通过在执行指示性延迟触及选择任务的猴子的PMd中记录神经活动来测试此预测。在任务中,同时显示了两个目标,它们的边框样式指示了每个目标是否值得1、2或3滴果汁。在随机试验中(FREE),允许选择猴子,而在其余试验中(FORCED),在GO信号消失时目标之一消失了。在FORCED-LOW试验中,猴子被迫移动到价值较低的目标,并开始向新目标(直接)或消失的目标移动,然后弯曲以到达其余目标(弯曲)。在发出GO信号之前,PMd的活动清楚地反映了猴子的主观偏好,即使选择了价值相等的选项,也可以预测猴子在免费试验中的选择。在FORCED-LOW试验中,PMd的活动最早在GO信号发出100毫秒后,即运动开始(MO)之前就反映出猴子的计划改变。这证实了该活动与运动本身的反馈无关,并暗示即使动物在线上改变了主意,PMd仍继续参与动作选择。这些发现是通过计算模型得出的,该模型表明行动计划之间的转换可以由负责初始决策的同一竞争过程来解释。

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