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人体感觉皮层刺激后顶叶后部皮层的活动:使用时空源分析的脑磁图研究

Activity in posterior parietal cortex following somatosensory stimulation in man: magnetoencephalographic study using spatio-temporal source analysis.

作者信息

Hoshiyama M, Kakigi R, Koyama S, Watanabe S, Shimojo M

机构信息

Department of Integrative Physiology, National Institute for Physiological Sciences, Okazaki, Japan.

出版信息

Brain Topogr. 1997 Fall;10(1):23-30. doi: 10.1023/a:1022206906360.

Abstract

We investigated the activation of posterior parietal cortex (PPC) to somatosensory stimulation in humans to determine its fundamental role as a somatosensory associated area using magnetoencephalography (MEG). We studied somatosensory evoked magnetic fields (SEF) after stimulation of median nerve, posterior tibial nerve and lip, and analyzed them by the single dipole model and also by the multidipole model using brain electric source analysis (BESA) system. In single source model analysis, the dipole at the peak latency of short-latency components following each site stimulation were located in the corresponding receptive fields in the primary somatosensory cortex (SI) contralateral to the stimulation. The dipole at the peak latency of the middle latency components were located in bilateral upper bank of Sylvian fissure (SII), By contrast, in the five-dipole model of BESA, the equivalent current dipoles (ECDs) of the middle-latency SEF after stimulation of median nerve and posterior tibial nerve were identified in the contralateral SI and in the bilateral SII and PPC, while all activities of middle-latency SEF after lip stimulation appeared to be restricted in the contralateral SI and bilateral SII. Around 80 msec in latency, the ECD location in PPC after median nerve stimulation was, on the average, 2.4 cm posterior, 2.9 cm medial and 2.6 cm superior to the hand area in SI. The ECD in PPC after posterior tibial nerve stimulation was also located posterior to the foot area in SI, but it was close to the SI area of foot, their distance being approximately 1.3 cm. ECD in PPC was almost equally demonstrated in each hemisphere. These findings suggested that the somatosensory associated cortex in PPC represented somatotopic organization in parallel with 'homunculus' in SI, but the hand area was much wider than the foot area. It was not clear whether the lip area in PPC was absent or was too close to be separated from the SI.

摘要

我们利用脑磁图(MEG)研究了人类后顶叶皮质(PPC)对体感刺激的激活情况,以确定其作为体感关联区域的基本作用。我们研究了正中神经、胫后神经和唇部受到刺激后的体感诱发磁场(SEF),并通过单偶极子模型以及使用脑电源分析(BESA)系统的多偶极子模型对其进行分析。在单源模型分析中,每个部位刺激后短潜伏期成分峰值潜伏期处的偶极子位于刺激对侧初级体感皮层(SI)的相应感受野中。中潜伏期成分峰值潜伏期处的偶极子位于双侧外侧裂上缘(SII)。相比之下,在BESA的五偶极子模型中,正中神经和胫后神经刺激后中潜伏期SEF的等效电流偶极子(ECD)在对侧SI、双侧SII和PPC中被识别出来,而唇部刺激后中潜伏期SEF的所有活动似乎都局限于对侧SI和双侧SII。潜伏期约80毫秒时,正中神经刺激后PPC中的ECD位置平均在SI手部区域后方2.4厘米、内侧2.9厘米和上方2.6厘米处。胫后神经刺激后PPC中的ECD也位于SI足部区域后方,但靠近足部的SI区域,它们之间的距离约为1.3厘米。PPC中的ECD在每个半球几乎都有同等程度的显示。这些发现表明,PPC中的体感关联皮层与SI中的“小人”并行呈现躯体定位组织,但手部区域比足部区域宽得多。目前尚不清楚PPC中的唇部区域是否不存在,或者是否与SI过于接近而无法区分。

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