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正中神经刺激后,BA3b 和 BA1 依次激活:来自诱发电场源分析与细胞构筑概率图谱结合的直接证据。

BA3b and BA1 activate in a serial fashion after median nerve stimulation: direct evidence from combining source analysis of evoked fields and cytoarchitectonic probabilistic maps.

机构信息

Laboratory for Human Brain Dynamics, Brain Science Institute (BSI), RIKEN, Saitama, Japan.

出版信息

Neuroimage. 2011 Jan 1;54(1):60-73. doi: 10.1016/j.neuroimage.2010.07.054. Epub 2010 Aug 4.

Abstract

This study combines source analysis imaging data for early somatosensory processing and the probabilistic cytoarchitectonic maps (PCMs). Human somatosensory evoked fields (SEFs) were recorded by stimulating left and right median nerves. Filtering the recorded responses in different frequency ranges identified the most responsive frequency band. The short-latency averaged SEFs were analyzed using a single equivalent current dipole (ECD) model and magnetic field tomography (MFT). The identified foci of activity were superimposed with PCMs. Two major components of opposite polarity were prominent around 21 and 31 ms. A weak component around 25 ms was also identified. For the most responsive frequency band (50-150 Hz) ECD and MFT revealed one focal source at the contralateral Brodmann area 3b (BA3b) at the peak of N20. The component ~25 ms was localised in Brodmann area 1 (BA1) in 50-150 Hz. By using ECD, focal generators around 28-30 ms located initially in BA3b and 2 ms later to BA1. MFT also revealed two focal sources - one in BA3b and one in BA1 for these latencies. Our results provide direct evidence that the earliest cortical response after median nerve stimulation is generated within the contralateral BA3b. BA1 activation few milliseconds later indicates a serial mode of somatosensory processing within cytoarchitectonic SI subdivisions. Analysis of non-invasive magnetoencephalography (MEG) data and the use of PCMs allow unambiguous and quantitative (probabilistic) interpretation of cytoarchitectonic identity of activated areas following median nerve stimulation, even with the simple ECD model, but only when the model fits the data extremely well.

摘要

本研究结合源分析成像数据进行早期体感处理和概率细胞构筑图(PCM)。通过刺激左、右正中神经记录人类体感诱发电位(SEF)。在不同频率范围内过滤记录的响应,确定最敏感的频带。使用单个等效电流偶极子(ECD)模型和磁场层析成像(MFT)分析短潜伏期平均 SEF。将活动的识别焦点与 PCM 叠加。大约 21 和 31 毫秒时出现两个极性相反的主要分量。还确定了大约 25 毫秒的弱分量。对于最敏感的频带(50-150 Hz),ECD 和 MFT 在 N20 峰值时在对侧布罗德曼区 3b(BA3b)处显示一个焦点源。在 50-150 Hz 时,约 25 毫秒的分量定位于布罗德曼区 1(BA1)。通过使用 ECD,在大约 28-30 毫秒时,最初在 BA3b 中定位的焦点发生器,2 毫秒后在 BA1 中定位。MFT 还为这些潜伏期显示了两个焦点源 - 一个在 BA3b,一个在 BA1。我们的结果提供了直接证据,表明正中神经刺激后最早的皮质反应是在对侧 BA3b 中产生的。几毫秒后 BA1 的激活表明体感处理在细胞构筑 SI 细分中的串联模式。即使使用简单的 ECD 模型,对非侵入性脑磁图(MEG)数据的分析和 PCM 的使用也允许对正中神经刺激后激活区域的细胞构筑身份进行明确和定量(概率)解释,但前提是模型非常适合数据。

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