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Multimodal output mapping of human central motor representation on different spatial scales

机译:人类中央运动代表在不同空间尺度上的多模式输出映射

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class="enumerated" style="list-style-type:decimal">Non-invasive mapping by focal transcranial magnetic stimulation (TMS) is frequently used to investigate cortical motor function in the intact and injured human brain. We examined how TMS-derived maps relate to the underlying cortical anatomy and to cortical maps generated by functional imaging studies.The centres of gravity (COGs) of TMS maps of the first dorsal intersosseus muscle (FDI) were integrated into 3-D magnetic resonance imaging (MRI) data sets in eleven subjects. In seven of these subjects the TMS-derived COGs were compared with the COG of regional cerebral blood flow increases using positron emission tomography (PET) in an index finger flexion protocol.Mean TMS-derived COG projections were located on the posterior lip of the precentral gyrus and TMS-derived COG projections were in close proximity to the mean PET-derived COG, suggesting that the two methods reflect activity of similar cortical elements.Criteria for a reliable assessment of the COG and the number of positions with a minimum amplitude of two-thirds of the maximum motor-evoked potential (T3Ps) were determined as a function of the number of stimuli and extension of the stimulation field. COGs and T3Ps were compared with an estimate of the size of the human motor cortex targeting α-motoneurons of forearm muscles. This comparison suggests that TMS can retrieve spatial information on cortical organization below the macroanatomic scale of cortical regions.Finally, we studied the cortical representation of hand muscles in relation to facial and foot muscle representations and investigated hemispherical asymmetries. We did not find any evidence for a different ipsi- or contralateral representation of the mentalis muscle. Also, no difference was found between FDI representations on the dominant versus the non-dominant hemisphere.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 通过局灶性经颅磁刺激(TMS)进行的非侵入性测绘通常用于研究完整和受伤的人脑中的皮质运动功能。我们研究了TMS衍生图与基础皮层解剖结构以及功能成像研究生成的皮质图之间的关系。 第一背骨间肌肉(FDI)的TMS图的重心(COG)为集成到11个对象的3D磁共振成像(MRI)数据集中。在这七个受试者中,使用食指屈曲方案,使用正电子发射断层扫描(PET)将TMS衍生的COG与局部脑血流量增加的COG进行了比较。 确定了TMS衍生的平均COG投影在中央前回的后唇上,TMS衍生的COG投影与平均PET衍生的COG十分接近,这表明这两种方法均反映了类似皮质元素的活性。 用于可靠评估的标准确定COG的最大振幅和最小振幅为最大电机诱发电位(T3Ps)的三分之二的位置数量,作为刺激次数和刺激场扩展的函数。将COG和T3P与估计的针对前臂α-运动神经元的人类运动皮层的大小进行了比较。这种比较表明,TMS可以在皮质区域的宏观解剖尺度以下检索皮质组织的空间信息。 最后,我们研究了与面部和足部肌肉代表有关的手部肌肉的皮质代表,并研究了半球不对称性。我们没有发现任何证据表明同等的或对侧的心理肌肉代表。此外,在优势半球和非优势半球的FDI表示之间也没有发现差异。

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