Departament de Psicologia Bàsica, Universitat de Barcelona, Barcelona, Spain.
Neuropsychologia. 2011 Sep;49(11):3046-52. doi: 10.1016/j.neuropsychologia.2011.07.005. Epub 2011 Jul 18.
Remapping tactile events from skin to external space is an essential process for human behaviour. It allows us to refer tactile sensations to their actual externally based location, by combining anatomically based somatosensory information with proprioceptive information about the current body posture. We examined the time course of tactile remapping by recording speeded saccadic responses to somatosensory stimuli delivered to the hands. We conducted two experiments in which arm posture varied (crossed or uncrossed), so that anatomical and external frames of reference were either put in spatial conflict or were aligned. The data showed that saccade onset latencies in the crossed hands conditions were slower than in the uncrossed hands condition, suggesting that, in the crossed hands condition, remapping had to be completed before a correct saccade could be executed. Saccades to tactile stimuli when the hands were crossed were sometimes initiated to the wrong direction and then corrected in-flight, resulting in a turn-around saccade. These turn-around saccades were more likely to occur in short-latency responses, compared to onset latencies of saccades that went straight to target. The latter suggests that participants were postponing their saccade until the time the tactile event was represented according to the current body posture. We propose that the difference between saccade onset latencies of crossed and uncrossed hand postures, and between the onset of a turn-around saccade and a straight saccade in the crossed hand posture, reveal the timing of tactile spatial remapping.
将皮肤的触觉事件重新映射到外部空间是人类行为的一个基本过程。它允许我们通过将基于解剖的躯体感觉信息与当前身体姿势的本体感受信息结合起来,将触觉感觉映射到它们的实际外部位置。我们通过记录对手部触觉刺激的快速扫视反应来检查触觉重新映射的时间过程。我们进行了两项实验,其中手臂姿势发生了变化(交叉或不交叉),因此解剖和外部参考系要么处于空间冲突中,要么对齐。数据表明,在交叉手条件下的扫视起始潜伏期比在不交叉手条件下慢,这表明在交叉手条件下,在可以执行正确扫视之前必须完成重新映射。当手交叉时,对触觉刺激的扫视有时会以错误的方向开始,然后在空中纠正,导致转头扫视。与直接指向目标的扫视的起始潜伏期相比,这些转头扫视更有可能在短潜伏期反应中发生。后者表明,参与者在等待触觉事件根据当前身体姿势表示的时间推迟他们的扫视。我们提出,交叉和不交叉手姿势之间的扫视起始潜伏期差异,以及交叉手姿势中转头扫视和直接扫视的起始之间的差异,揭示了触觉空间重新映射的时间。