Klein Anita, van Leeuwen Peter, Hoormann Jörg, Grönemeyer Dietrich
Grönemeyer Institute for Microtherapy, University of Witten/Herdecke, Bochum, Germany.
J Neural Eng. 2006 Jun;3(2):125-31. doi: 10.1088/1741-2560/3/2/006. Epub 2006 Apr 18.
Stimulation of the posterior tibial nerve has been associated with different somatosensory evoked potentials (SEP) recorded along the spine and thorax. The aim of this study was to register and describe the magnetic fields corresponding to different components of spinal SEP after stimulation of tibial nerves. In nine healthy subjects, right and left posterior tibial nerves were transcutaneously electrostimulated at the ankles. Neuromagnetic fields were registered over a circular 800 cm(2) area of the lumbosacral spine using a 61-channel biomagnetometer. Magnetic field maps were constructed and examined visually for dipolar patterns. Equivalent current dipoles (ECD) were calculated for each somatosensory evoked field (SEF) using a least-squares fit in a spherical model. In seven subjects dipolar SEF were detected over the lower back at two separate latencies and locations and propagating ECD could be localized. Both the first and second components found agreed anatomically and functionally with respect to propagation in the underlying nerve fibers. It was possible to record and identify SEF which correspond to the SEP described in the literature. Dipole localization based on an equivalent current dipole model allowed a basic evaluation of the plausibility of the measurements with respect to the processes being examined.
刺激胫后神经与沿脊柱和胸部记录到的不同体感诱发电位(SEP)相关。本研究的目的是记录和描述刺激胫神经后与脊髓SEP不同成分相对应的磁场。在9名健康受试者中,经皮在脚踝处电刺激右侧和左侧胫后神经。使用61通道生物磁强计在腰骶部脊柱800平方厘米的圆形区域记录神经磁场。构建磁场图并直观检查偶极模式。使用球形模型中的最小二乘法拟合为每个体感诱发电场(SEF)计算等效电流偶极(ECD)。在7名受试者中,在两个不同的潜伏期和位置在下背部检测到偶极SEF,并且可以定位传播的ECD。所发现的第一和第二成分在潜在神经纤维中的传播在解剖学和功能上均相符。有可能记录和识别与文献中描述的SEP相对应的SEF。基于等效电流偶极模型的偶极定位允许对所测量的结果相对于所研究的过程的合理性进行基本评估。