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利用多起始时空定位从磁体感诱发电位中识别中央沟前后岸的来源。

Sources on the anterior and posterior banks of the central sulcus identified from magnetic somatosensory evoked responses using multistart spatio-temporal localization.

作者信息

Huang M X, Aine C, Davis L, Butman J, Christner R, Weisend M, Stephen J, Meyer J, Silveri J, Herman M, Lee R R

机构信息

Center for Functional Brain Imaging, New Mexico VA Health Care System, Albuquerque 87108, USA.

出版信息

Hum Brain Mapp. 2000 Oct;11(2):59-76. doi: 10.1002/1097-0193(200010)11:2<59::aid-hbm10>3.0.co;2-5.

Abstract

A Multi-Start Spatio-Temporal (MSST) multidipole localization algorithm was used to study sources on the anterior and posterior banks of the central sulcus localized from early somatosensory magnetoencephalography (MEG) responses. Electrical stimulation was applied to the right and left median nerves of 8 normal subjects. Two sources, one on the anterior and one on the posterior bank of the central sulcus, were localized from 16 data sets (8 subjects, 2 hemispheres). Compared with the more traditional practice of single-dipole fits to peak latencies, MSST provided more reliable source locations. The temporal dynamics of the anterior and posterior central sulcus sources, obtained using MSST, showed considerable temporal overlap. In some cases, the two sources appeared synchronous. On the other hand, in the traditional single-dipole peak-latency fit approach, there is no time course other than a focal dipole moment activated only at the selected peak latency. The same group of subjects also performed a motor task involving index-finger lifting; the anterior central sulcus source obtained from electrical median nerve stimulation localized to the same or similar region in the primary motor area identified from the finger-lift task. The physiological significance of the anterior central sulcus source is discussed. The findings suggest that one can test the integrity of cortical tissue in the region of primary motor cortex using electrical somatosensory stimulation.

摘要

采用多起始时空(MSST)多极子定位算法,研究从早期体感脑磁图(MEG)反应中定位出的中央沟前后壁上的源。对8名正常受试者的左右正中神经施加电刺激。从16个数据集(8名受试者,2个半球)中定位出两个源,一个在中央沟前壁,一个在中央沟后壁。与更传统的单极子拟合峰值潜伏期的方法相比,MSST提供了更可靠的源位置。使用MSST获得的中央沟前后壁源的时间动态显示出相当大的时间重叠。在某些情况下,两个源似乎是同步的。另一方面,在传统的单极子峰值潜伏期拟合方法中,除了仅在选定的峰值潜伏期激活的局灶性偶极矩外,没有时间进程。同一组受试者还执行了一项涉及食指抬起的运动任务;从正中神经电刺激中获得的中央沟前壁源定位到从手指抬起任务中识别出的初级运动区中的相同或相似区域。讨论了中央沟前壁源的生理意义。研究结果表明,人们可以使用电体感刺激来测试初级运动皮层区域皮质组织的完整性。

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