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Parallel activation of prospective motor plans during visually‐guided sequential saccades

机译:视觉引导思路期间预期电机计划的并行激活

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Behavioural evidences suggest that sequential saccades to multiple stimuli are planned in parallel. However, it remains unclear whether such parallel programming reflects concurrent processing of goals or whether multiple motor plans coexist, unfolding subsequently during execution. Here we use midway saccades, directed at intermediate locations between two targets, as a probe to address this question in a novel double‐step adaptation task. The task consisted of trials where subjects had to follow the appearance of two targets presented in succession with two sequential saccades. In some trials, the second target predictably jumped to a new location during the second saccade. Initially, the second saccade was aimed at the final target's location before the jump. As subjects adapted to the target jump, saccades were aimed to the second target's new location. We tested whether the spatial distribution of midway saccades could be explained as an interaction between two concurrent saccade goals, each directed at the two target locations, or between the initial motor plan to the first target location and a prospective motor plan directed from the initial to the final target location. A shift in the midway saccades’ distribution towards the jumped location of the second target following adaptation indicated that the brain can make use of prospective motor plans to guide sequential eye movements. Furthermore, we observed that the spatiotemporal pattern of endpoints of midway saccades can be well explained by a motor addition model. These results provide strong evidence of parallel activation of prospective motor plans during sequential saccades.
机译:行为证据表明,顺序扫描到多种刺激计划并行计划。然而,仍不清楚这种并行编程是否反映了目标的并发处理或多个电机计划是否共存,在执行期间随后展开。在这里,我们使用中途扫视,指向两个目标之间的中间位置,作为在新颖的双步适应任务中解决这个问题的探测。该任务包括试验,其中受试者不得不遵循连续两个连续扫描的两个目标的外观。在一些试验中,第二个目标可预测地跳到第二个扫视期间的新位置。最初,第二个扫视旨在在跳跃之前的最终目标的位置。由于适用于目标跳跃的受试者,扫视旨在第二个目标的新位置。我们测试了中途扫视的空间分布是否可以解释为两个并发扫视目标之间的相互作用,每个目标位置指向两个目标位置,或者在初始电机方面与第一目标位置的初始电机计划和从初始到最终目标位置。在适应后,中途扫视扫描的跳跃位置的转变表明大脑可以利用前瞻性电机计划引导连续的眼睛运动。此外,我们观察到,Midway Sackades的终点的时空模式可以通过电动机添加模型很好地解释。这些结果提供了持续扫视期间预期电机计划并行激活的强有力证据。

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