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Somatotopic blocking of sensation with navigated transcranial magnetic stimulation of the primary somatosensory cortex

机译:经颅经皮磁导航刺激的体细胞感觉皮层的感觉。

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摘要

We demonstrate that spatially accurate and selective stimulation is crucial when cortical functions are studied by the creation of temporary lesions with transcranial magnetic stimulation (TMS). Previously, the interpretation of the TMS results has been hampered by inaccurate knowledge of the site and strength of the induced electric current in the brain. With a Navigated Brain Stimulation (NBS) system, which provides real‐time magnetic resonance image (MRI)‐guided targeting of the TMS‐induced electric field, we found that TMS of a spatially restricted cortical S1 thenar area is sufficient to abolish sensation from a weak electric stimulation of the corresponding skin area. We demonstrate that with real‐time navigation, TMS can be repeatably directed at millimeter‐level precision to a target area defined on the MRI. The stimulation effect was temporally and spatially specific: the greatest inhibition of sensation occurred when TMS was applied 20 ms after the cutaneous test stimulus and the TMS effect was sensitive to 8–13 mm displacements of the induced electric field pattern. The results also indicate that TMS selectively to S1 is sufficient to abolish perception of cutaneous stimulation of the corresponding skin area. Hum Brain Mapp, 2005. © 2005 Wiley‐Liss, Inc.
机译:我们证明,当通过经颅磁刺激(TMS)创建临时病变来研究皮质功能时,空间精确和选择性刺激至关重要。以前,对TMS结果的解释由于对大脑中感应电流的位置和强度的不正确了解而受到阻碍。借助可提供实时磁共振图像(MRI)引导的TMS感应电场定向的导航脑刺激(NBS)系统,我们发现,空间受限的皮质S1皮纳尔区域的TMS足以消除来自对相应皮肤区域的弱电刺激。我们证明,通过实时导航,TMS可以以毫米级的精度重复定向到MRI上定义的目标区域。刺激作用在时间和空间上是特定的:当皮肤试验刺激后20 ms施加TMS时,对感觉的最大抑制作用发生,并且TMS效应对感应电场模式的8-13 mm位移敏感。结果还表明,针对S1的TMS选择性足以消除对相应皮肤区域的皮肤刺激的感觉。嗡嗡的脑图,2005年。©2005 Wiley-Liss,Inc.

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