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人类近体空间的运动属性。

Motor properties of peripersonal space in humans.

机构信息

Dipartimento di Psicologia, Università degli Studi di Bologna, Bologna, Italy.

出版信息

PLoS One. 2009 Aug 11;4(8):e6582. doi: 10.1371/journal.pone.0006582.

Abstract

BACKGROUND

A stimulus approaching the body requires fast processing and appropriate motor reactions. In monkeys, fronto-parietal networks are involved both in integrating multisensory information within a limited space surrounding the body (i.e. peripersonal space, PPS) and in action planning and execution, suggesting an overlap between sensory representations of space and motor representations of action. In the present study we investigate whether these overlapping representations also exist in the human brain.

METHODOLOGY/PRINCIPAL FINDINGS: We recorded from hand muscles motor-evoked potentials (MEPs) induced by single-pulse of transcranial magnetic stimulation (TMS) after presenting an auditory stimulus either near the hand or in far space. MEPs recorded 50 ms after the near-sound onset were enhanced compared to MEPs evoked after far sounds. This near-far modulation faded at longer inter-stimulus intervals, and reversed completely for MEPs recorded 300 ms after the sound onset. At that time point, higher motor excitability was associated with far sounds. Such auditory modulation of hand motor representation was specific to a hand-centred, and not a body-centred reference frame.

CONCLUSIONS/SIGNIFICANCE: This pattern of corticospinal modulation highlights the relation between space and time in the pps representation: an early facilitation for near stimuli may reflect immediate motor preparation, whereas, at later time intervals, motor preparation relates to distant stimuli potentially approaching the body.

摘要

背景

接近身体的刺激需要快速处理和适当的运动反应。在猴子中,额顶网络既参与了在身体周围有限空间(即近体空间,PPS)内整合多感觉信息,也参与了动作规划和执行,这表明空间的感觉表示和动作的运动表示之间存在重叠。在本研究中,我们研究了这些重叠的表示是否也存在于人类大脑中。

方法/主要发现:我们在手肌肉上记录了经颅磁刺激(TMS)单脉冲诱导的运动诱发电位(MEPs),刺激声音分别靠近手或远在空间。与远声音刺激后诱发的 MEP 相比,近声音刺激后 50 毫秒记录的 MEP 增强。这种近-远调制在较长的刺激间隔下减弱,并在声音刺激后 300 毫秒完全反转。在那时,更高的运动兴奋性与远声音有关。这种对手运动表示的听觉调制是特定于以手为中心的参考框架,而不是以身体为中心的参考框架。

结论/意义:这种皮质脊髓调制模式突出了 pps 表示中空间和时间的关系:近刺激的早期促进可能反映了即时的运动准备,而在稍后的时间间隔,运动准备与潜在接近身体的远刺激有关。

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