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人类运动皮层中的手指躯体定位

Finger somatotopy in human motor cortex.

作者信息

Beisteiner R, Windischberger C, Lanzenberger R, Edward V, Cunnington R, Erdler M, Gartus A, Streibl B, Moser E, Deecke L

机构信息

Department of Neurology, Institute of Medical Physics, Währinger Gürtel 18-20, Vienna, A-1090, Austria

出版信息

Neuroimage. 2001 Jun;13(6 Pt 1):1016-26. doi: 10.1006/nimg.2000.0737.

Abstract

Although qualitative reports about somatotopic representation of fingers in the human motor cortex exist, up to now no study could provide clear statistical evidence. The goal of the present study was to reinvestigate finger motor somatotopy by means of a thorough investigation of standardized movements of the index and little finger of the right hand. Using high resolution fMRI at 3 Tesla, blood oxygenation level-dependent (BOLD) responses in a group of 26 subjects were repeatedly measured to achieve reliable statistical results. The center of mass of all activated voxels within the primary motor cortex was calculated for each finger and each run. Results of all runs were averaged to yield an individual index and little finger representation for each subject. The mean center of mass localizations for all subjects were then submitted to a paired t test. Results show a highly significant though small scale somatotopy of fingerspecific activation patterns in the order indicated by Penfields motor homunculus. In addition, considerable overlap of finger specific BOLD responses was found. Comparing various methods of analysis, the mean center of mass distance for the two fingers was 2--3 mm with overlapping voxels included and 4--5 mm with overlapping voxels excluded. Our data may be best understood in the context of the work of Schieber (1999) who recently described overlapping somatotopic gradients in lesion studies with humans.

摘要

尽管存在关于人类运动皮层中手指躯体定位表征的定性报告,但到目前为止,尚无研究能提供明确的统计证据。本研究的目的是通过对右手食指和小指的标准化运动进行全面调查,重新研究手指运动的躯体定位。使用3特斯拉的高分辨率功能磁共振成像(fMRI),对一组26名受试者的血氧水平依赖(BOLD)反应进行反复测量,以获得可靠的统计结果。计算每个手指和每次扫描中初级运动皮层内所有激活体素的质心。将所有扫描的结果进行平均,以得出每个受试者的个体食指和小指表征。然后将所有受试者的平均质心定位结果进行配对t检验。结果显示,手指特异性激活模式存在高度显著但规模较小的躯体定位,其顺序与彭菲尔德运动小人图所示一致。此外,还发现手指特异性BOLD反应有相当大的重叠。比较各种分析方法,包括重叠体素时,两个手指的平均质心距离为2 - 3毫米,排除重叠体素时为4 - 5毫米。我们的数据可以在Schieber(1999年)的研究背景下得到最好的理解,他最近在对人类的病变研究中描述了重叠的躯体定位梯度。

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