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Spatiotemporal integration for tactile localization during arm movements: a probabilistic approach

机译:时空整合在手臂运动过程中的触觉定位:一种概率方法

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摘要

It has been shown that people make systematic errors in the localization of a brief tactile stimulus that is delivered to the index finger while they are making an arm movement. Here we modeled these spatial errors with a probabilistic approach, assuming that they follow from temporal uncertainty about the occurrence of the stimulus. In the model, this temporal uncertainty converts into a spatial likelihood about the external stimulus location, depending on arm velocity. We tested the prediction of the model that the localization errors depend on arm velocity. Participants (n = 8) were instructed to localize a tactile stimulus that was presented to their index finger while they were making either slow- or fast-targeted arm movements. Our results confirm the model's prediction that participants make larger localization errors when making faster arm movements. The model, which was used to fit the errors for both slow and fast arm movements simultaneously, accounted very well for all the characteristics of these data with temporal uncertainty in stimulus processing as the only free parameter. We conclude that spatial errors in dynamic tactile perception stem from the temporal precision with which tactile inputs are processed.
机译:研究表明,人们在做出短暂的触觉刺激时会发生系统性错误,而短暂的触觉刺激在进行手臂运动时会传递到食指。在这里,我们假设这些误差是基于关于刺激发生的时间不确定性而来的,采用概率方法对这些空间误差进行建模。在模型中,此时间不确定性取决于手臂速度转换成关于外部刺激位置的空间似然性。我们测试了模型的预测,即定位误差取决于手臂速度。参与者(n = 8)被指示定位在他们进行慢速或快速目标手臂运动时呈现给其食指的触觉刺激。我们的结果证实了该模型的预测,即参与者在进行更快的手臂移动时会出现较大的定位误差。该模型用于同时拟合慢臂和快臂运动的误差,该模型很好地说明了这些数据的所有特征,其中刺激处理中的时间不确定性是唯一的自由参数。我们得出结论,动态触觉感知中的空间误差源于处理触觉输入的时间精度。

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