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个人空间周边移动的声音会调节运动系统。

Moving sounds within the peripersonal space modulate the motor system.

作者信息

Finisguerra Alessandra, Canzoneri Elisa, Serino Andrea, Pozzo Thierry, Bassolino Michela

机构信息

Robotics, Brain and Cognitive Sciences, Istituto Italiano di Tecnologia, Genova 16163, Italy.

Laboratory of Cognitive Neuroscience, Center for Neuroprosthetics, École Polytechnique Fédérale de Lausanne, 1015 Lausanne, Switzerland.

出版信息

Neuropsychologia. 2015 Apr;70:421-8. doi: 10.1016/j.neuropsychologia.2014.09.043. Epub 2014 Oct 2.

Abstract

Interactions between ourselves and the external world are mediated by a multisensory representation of the space surrounding the body, i.e. the peripersonal space (PPS). In particular, a special interplay is observed among tactile stimuli delivered on a body part, e.g. the hand, and visual or auditory external inputs presented close, but not far, from the same body part, e.g. within hand PPS. This coding of multisensory stimuli as a function of their distance from the hand has a role in upper limb actions. However, it remains unclear whether PPS representation affects the motor system only when stimuli occur specifically at the hand location or when they move within a continuous portion of space where the hand can potentially act. Here, in order to study these two alternatively hypotheses, we assessed the critical distance at which moving sounds have a direct effect on hand corticospinal excitability by using Transcranial Magnetic Stimulation (TMS). Specifically, TMS single pulses were delivered when a sound source was perceived at six different positions in space: from very close to subjects' hand (15 cm) to far away (90 cm). Moreover, sound direction was manipulated to test if stimuli approaching and receding from the hand might have the same relevance for the motor system. MEPs amplitude was enhanced when sounds were delivered within a limited distance from the hand (around 60 cm) as compared to when the sounds were beyond this space. This effect captures the spatial boundaries within which PPS representation modulates hand cortico-motor excitability. This spatially-dependent modulation of corticospinal activity was not further affected by the sound direction. Such findings support a strict link between the multisensory representation of the space around the body and the motor representation of potential approaching or defensive acts within that space.

摘要

我们自身与外部世界之间的相互作用是由身体周围空间的多感官表征介导的,即个人周边空间(PPS)。具体而言,在身体部位(如手)上施加的触觉刺激与在同一身体部位附近(但不远处)呈现的视觉或听觉外部输入之间存在特殊的相互作用,例如在手的个人周边空间内。这种根据多感官刺激与手的距离进行编码的方式在上肢动作中发挥着作用。然而,尚不清楚个人周边空间表征是仅在刺激专门出现在手部位置时,还是当它们在手部可能动作的连续空间部分内移动时,才会影响运动系统。在此,为了研究这两种不同的假设,我们通过使用经颅磁刺激(TMS)评估了移动声音对手部皮质脊髓兴奋性产生直接影响的临界距离。具体来说,当在空间中的六个不同位置感知到声源时,会施加TMS单脉冲:从非常靠近受试者的手(15厘米)到远处(90厘米)。此外,还对声音方向进行了操控,以测试接近和远离手部的刺激对运动系统是否具有相同的相关性。与声音在该空间之外时相比,当声音在距离手有限的距离内(约60厘米)传递时,运动诱发电位(MEP)的幅度会增强。这种效应捕捉到了个人周边空间表征调节手部皮质运动兴奋性的空间边界。皮质脊髓活动的这种空间依赖性调制并未进一步受到声音方向的影响。这些发现支持了身体周围空间的多感官表征与该空间内潜在的接近或防御动作的运动表征之间的紧密联系。

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