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使用大型阵列生物磁强计对人体进行无创体感小人图绘制。

Noninvasive somatosensory homunculus mapping in humans by using a large-array biomagnetometer.

作者信息

Yang T T, Gallen C C, Schwartz B J, Bloom F E

机构信息

Department of Neuropharmacology, Scripps Research Institute, La Jolla, CA 92037.

出版信息

Proc Natl Acad Sci U S A. 1993 Apr 1;90(7):3098-102. doi: 10.1073/pnas.90.7.3098.

Abstract

To validate the feasibility of precise noninvasive functional mapping in humans, a large-array biomagnetometer was used to map the somatosensory cortical locations corresponding to numerous distinct tactile sites on the fingers, hand, arm, and face in different subjects. Source localizations were calculated by using a single equivalent current dipole (ECD) model. Dipole localizations were transposed upon the corresponding subject's magnetic resonance image (MRI) to resolve the anatomic locus of the individual dipoles within a given subject. Biomagnetic measurements demonstrated that (i) there were distinct separations between the ECD locations representing discrete sites on the face and hand; (ii) the ECD localizations from facial sites clustered in a region inferior to ECD localizations from hand and digit sites; and (iii) there was clear spatial resolution of ECD locations representing closely spaced tactile sites on the hand and face. The ability of magnetoencephalography (MEG) to provide high-resolution spatial maps of the somatosensory system noninvasively in humans should make MEG a useful tool to define the normal or pathological organization of the human somatosensory system and should provide an approach to the rapid detection of neuroplasticity.

摘要

为验证人体精确无创功能图谱的可行性,使用大型生物磁力计对不同受试者手指、手部、手臂和面部众多不同触觉部位相对应的体感皮层位置进行图谱绘制。通过使用单个等效电流偶极子(ECD)模型计算源定位。将偶极子定位叠加到相应受试者的磁共振图像(MRI)上,以确定给定受试者体内各个偶极子的解剖位置。生物磁测量结果表明:(i)代表面部和手部离散部位的ECD位置之间存在明显分隔;(ii)来自面部部位的ECD定位聚集在手部和手指部位ECD定位下方的区域;(iii)代表手部和面部紧密间隔触觉部位的ECD位置具有清晰的空间分辨率。脑磁图(MEG)在人体中无创提供体感系统高分辨率空间图谱的能力,应使MEG成为定义人体体感系统正常或病理组织的有用工具,并应为快速检测神经可塑性提供一种方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/849c/46244/6d9034f1b825/pnas01466-0552-a.jpg

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