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Neuromagnetic activation following active and passive finger movements

机译:主动和被动手指运动后的神经磁激活

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AbstractThe detailed time courses of cortical activities and source localizations following passive finger movement were studied using whole-head magnetoencephalography (MEG). We recorded motor-related cortical magnetic fields following voluntary movement and somatosensory-evoked magnetic fields following passive movement (PM) in 13 volunteers. The most prominent movement-evoked magnetic field (MEF1) following active movement was obtained approximately 35.3 ± 8.4 msec after movement onset, and the equivalent current dipole (ECD) was estimated to be in the primary motor cortex (Brodmann area 4). Two peaks of MEG response associated with PM were recorded from 30 to 100 msec after movement onset. The earliest component (PM1) peaked at 36.2 ± 8.2 msec, and the second component (PM2) peaked at 86.1 ± 12.1 msec after movement onset. The peak latency and ECD localization of PM1, estimated to be in area 4, were the same as those of the most prominent MEF following active movement. ECDs of PM2 were estimated to be not only in area 4 but also in the supplementary motor area (SMA) and the posterior parietal cortex (PPC) over the hemisphere contralateral to the movement, and in the secondary somatosensory cortex (S2) of both hemispheres. The peak latency of each source activity was obtained at 54–109 msec in SMA, 64–114 msec in PPC, and 84–184 msec in the S2. Our results suggest that the magnetic waveforms at middle latency (50–100 msec) after PM are different from those after active movement and that these waveforms are generated by the activities of several cortical areas, that is, area 4 and SMA, PPC, and S2. In this study, the time courses of the activities in SMA, PPC, and S2 accompanying PM in humans were successfully recorded using MEG with a multiple dipole analysis system.
机译:摘要利用全头磁脑电图(MEG)研究了被动手指运动后皮质活动和源位置的详细时程。我们在13名志愿者中记录了自愿运动后与运动相关的皮质磁场和被动运动(PM)后的体感诱发磁场。运动开始后大约35.3±8.4毫秒获得活动运动后最明显的运动诱发磁场(MEF1),并且等效电流偶极(ECD)估计位于初级运动皮层(Brodmann区域4)。运动开始后30到100毫秒记录了与PM相关的MEG反应的两个峰值。运动开始后,最早的成分(PM1)峰值为36.2±8.2毫秒,第二个成分(PM2)峰值为86.1±12.1毫秒。 PM1的峰值潜伏期和ECD定位估计在区域4中,与主动运动后最突出的MEF相同。据估计,PM2的ECD不仅存在于区域4,还存在于运动对侧的半球上方的辅助运动区(SMA)和顶叶后皮质(PPC),以及两个半球的次要体感皮质(S2) 。每个源活动的峰值潜伏期在SMA中为54-109毫秒,在PPC中为64-114毫秒,在S2中为84-184毫秒。我们的研究结果表明,PM后的中间潜伏期(50-100毫秒)的磁波形与主动运动后的磁波形不同,这些波形是由几个皮质区域(即区域4和SMA,PPC和S2。在这项研究中,使用MEG和多偶极分析系统成功记录了人类SMA,PPC和S2伴随PM的活动的时程。

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