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左顶叶皮层单次脉冲 TMS 可破坏手臂本体感觉和手部视觉的大脑两半球间重新映射。

Inter-hemispheric remapping between arm proprioception and vision of the hand is disrupted by single pulse TMS on the left parietal cortex.

机构信息

Université de Bourgogne, Campus Universitaire, Unité de Formation et de Recherche en Sciences et Techniques des Activités Physiques et Sportives, Dijon, France.

出版信息

Brain Cogn. 2013 Jul;82(2):146-51. doi: 10.1016/j.bandc.2013.03.002. Epub 2013 May 6.

Abstract

Parietal cortical areas are involved in sensori-motor transformations for their respective contralateral hemifield/body. When arms of the subjects are crossed while their gaze is fixed straight ahead, vision of the hand is processed by the hemisphere ipsilateral to the arm position and proprioception of the arm by the contralateral hemisphere. It induces interhemispheric transfer and remapping. Our objective was to investigate whether a single pulse TMS applied to the left parietal cortical area would disturb interhemispheric remapping in a similar case, and would increase a simple reaction time (RT) with respect to a control single pulse TMS applied to the frontal cortical area. Two LED were superimposed and located in front of the subjects on the saggital axis. Subjects were asked to carefully fixate on these LED during each trial. The lighting of the red LED was used as a warning signal. Following the green one was illuminated after a variable delay and served as a go-signal. The hand for the response was determined before the start of each trial. TMS was applied to the left parietal, the left frontal cortical areas, or not applied to the subject. Results revealed that: (1) Irrespective of its location, single pulse TMS induced a non-specific effect similar to a startle reflex and reduced RT substantially (15ms on average) with respect to a control condition without TMS (mean value=153ms). (2) Irrespective of TMS, RT were shorter when the right or the left hand was positioned in the right visual hemi-field (i.e. normal and crossed positions respectively). (3) Finally, RT increased when single pulse TMS was applied to the left parietal area and when hands were crossed irrespective of which hand was used. We concluded that interhemispheric sensori-motor remapping was disrupted by a single pulse TMS that was applied to the left parietal cortex. This effect was also combined with some visual attention directed towards the hand located on the right visual hemi-field.

摘要

顶叶皮层区域参与其相应的对侧视野/身体的感觉运动转换。当受试者的手臂交叉而目光固定在前方时,手的视觉由与手臂位置同侧的半球处理,而手臂的本体感觉则由对侧半球处理。这会引起半球间的转移和重新映射。我们的目的是研究在类似情况下,单个脉冲 TMS 施加到左顶叶皮层区域是否会干扰半球间的重新映射,并相对于施加到额皮质区域的对照单脉冲 TMS 增加简单反应时间 (RT)。两个 LED 叠加并位于受试者的矢状轴前方。要求受试者在每次试验中仔细注视这些 LED。红灯亮起用作警告信号。在可变延迟之后,绿灯亮起用作出发信号。在每次试验开始之前确定用于反应的手。将 TMS 施加到左顶叶、左额皮质区域或不对受试者施加 TMS。结果表明:(1) 无论其位置如何,单个脉冲 TMS 都会引起类似惊吓反射的非特异性效应,并使 RT 大大降低(平均 15ms),与无 TMS 的对照条件相比(平均值=153ms)。(2) 无论 TMS 如何,当右手或左手位于右视觉半视野(即正常和交叉位置)时,RT 更短。(3) 最后,当将单个脉冲 TMS 施加到左顶叶区域并且当手交叉时,无论使用哪只手,RT 都会增加。我们得出结论,单个脉冲 TMS 施加到左顶叶皮层会破坏半球间的感觉运动重新映射。这种效应还与一些视觉注意力指向位于右视觉半视野的手有关。

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