Laboratory of Clinical Biochemistry and Molecular Biology, Department of Experimental Pathology, BMIE, University of Pisa Medical School, 56126 Pisa, Italy.
Exp Biol Med (Maywood). 2011 Feb;236(2):138-44. doi: 10.1258/ebm.2010.010230.
The visual motion-responsive middle temporal complex (hMT+) is activated during tactile and aural motion discrimination in both sighted and congenitally blind individuals, suggesting a supramodal organization of this area. Specifically, non-visual motion processing has been found to activate the more anterior portion of the hMT+. In the present study, repetitive transcranial magnetic stimulation (rTMS) was used to determine whether this more anterior portion of hMT+ truly plays a functional role in tactile motion processing. Sixteen blindfolded, young, healthy volunteers were asked to detect changes in the rotation velocity of a random Braille-like dot pattern by using the index or middle finger of their right hand. rTMS was applied for 600 ms (10 Hz, 110% motor threshold), 200 ms after the stimulus onset with a figure-of-eight coil over either the anterior portion of hMT+ or a midline parieto-occipital site (as a control). Accuracy and reaction times were significantly impaired only when TMS was applied on hMT+, but not on the control area. These results indicate that the recruitment of hMT+ is necessary for tactile motion processing, and thus corroborate the hypothesis of a 'supramodal' functional organization for this sensory motion processing area.
视觉运动反应性颞中复合体(hMT+)在有视力和先天性失明个体的触觉和听觉运动辨别中被激活,表明该区域具有超模态组织。具体来说,已经发现非视觉运动处理会激活 hMT+的更靠前部分。在本研究中,重复经颅磁刺激(rTMS)用于确定 hMT+的更靠前部分是否在触觉运动处理中真正发挥功能作用。十六名蒙住眼睛的年轻健康志愿者被要求用右手的食指或中指检测随机 Braille 点模式的旋转速度变化。rTMS 应用于刺激开始后 200 毫秒,使用双八线圈在 hMT+的前部或中线顶枕部区域(作为对照)施加 600 毫秒(10 Hz,110%运动阈值)。只有当 TMS 施加在 hMT+上时,准确性和反应时间才会显著受损,但在对照区域则不会。这些结果表明,hMT+的募集对于触觉运动处理是必要的,从而证实了该感觉运动处理区域具有“超模态”功能组织的假设。