Kuriki S, Isobe Y, Mizutani Y
Research Institute of Applied Electricity, Hokkaido University, Sapporo, Japan.
Front Med Biol Eng. 1989;1(2):107-18.
We have measured neuromagnetic fields evoked by auditory and somatic stimulations using a SQUID. Responses of the auditory evoked field (AEF) have two peaks at about 100 and 180 ms after the onset of tone burst stimulus. Responses of the somatically evoked field (SEF) have two peaks at about 80 and 160 ms after the stimulus of current pulse. Magnetic field data measured at various positions of the lateral side of the head have been used to calculate parameters of an equivalent current dipole source based on a least-squares fit. The determined source locations indicate the auditory cortex for the AEF and the primary somatosensory cortex for the SEF, in agreement with anatomical structures obtained from NMR images. A simulation study has been done to estimate errors in the calculated dipole parameters due to the field noise. For typical measurement conditions of a signal-to-noise ratio of approximately 5 and measurement points of approximately 40, location errors of the order of 5 mm are estimated.
我们使用超导量子干涉仪测量了听觉和躯体刺激诱发的神经磁场。听觉诱发场(AEF)的反应在短音爆刺激开始后约100毫秒和180毫秒出现两个峰值。躯体诱发场(SEF)的反应在电流脉冲刺激后约80毫秒和160毫秒出现两个峰值。利用在头部侧面不同位置测量的磁场数据,基于最小二乘法拟合计算等效电流偶极源的参数。确定的源位置表明AEF的源位于听觉皮层,SEF的源位于初级躯体感觉皮层,这与从核磁共振图像获得的解剖结构一致。已经进行了一项模拟研究,以估计由于场噪声导致的计算偶极参数的误差。对于典型的信噪比约为5和测量点约为40的测量条件,估计位置误差约为5毫米。