Kombos T, Suess O, Kern B C, Funk T, Hoell T, Kopetsch O, Brock M
Department of Neurosurgery, University Hospital Benjamin Franklin, Free University of Berlin, Germany.
Acta Neurochir (Wien). 1999;141(12):1295-301. doi: 10.1007/s007010050433.
Intra-operative neurophysiological techniques allow reliable identification of the sensorimotor region and make their anatomical and functional preservation feasible. Monopolar cortical stimulation has recently been described as a new mapping technique. In the present study this method was compared to the "traditional" technique of bipolar stimulation. Functional mapping of the motor cortex was performed in 35 patients during surgery in the central region. The central sulcus (CS) was identified by somatosensory evoked potential (SEP) phase reversal. Cortical motor mapping was first performed by monopolar anodal stimulation with a train of 500 Hz (7-10 pulses) followed by bipolar stimulation (pulses at 60 Hz with max. 4 sec train duration). Surgery was performed under general anaesthesia without muscle relaxants. Of 280 motor responses elicited by bipolar cortical stimulation, 54.23% [152] were located in the primary motor cortex (PMC), 37.85% 106[ outside the motor strip in the secondary motor cortex (SMC), and 8% 22[ posterior to the CS. Of 175 motor responses elicited by monopolar cortical stimulation. 68.57% 120[ were located in the SMC, 23.42% 41[ in the SMC and 8% 14[ posterior to the CS. Contrary to the general clinical view, there is considerable overlapping of primary motor units over a cortical area much broader than the "classical" narrow motor strip along the CS. Bipolar cortical stimulation is more sensitive than monopolar for mapping motor function in the premotor frontal cortex. Both methods are equally sensitive for mapping the primary motor cortex.
术中神经生理学技术能够可靠地识别感觉运动区,并使其解剖结构和功能的保留成为可能。单极皮质刺激最近被描述为一种新的定位技术。在本研究中,将该方法与“传统”的双极刺激技术进行了比较。在35例患者的中央区手术过程中进行了运动皮质的功能定位。通过体感诱发电位(SEP)相位反转来识别中央沟(CS)。首先通过500Hz(7 - 10个脉冲)的单极阳极刺激进行皮质运动定位,随后进行双极刺激(60Hz脉冲,最大刺激时长4秒)。手术在全身麻醉且无肌肉松弛剂的情况下进行。在双极皮质刺激引发的280次运动反应中,54.23%[152次]位于初级运动皮质(PMC),37.85%[106次]位于运动带之外的次级运动皮质(SMC),8%[22次]位于CS后方。在单极皮质刺激引发的175次运动反应中,68.57%[120次]位于SMC,23.42%[41次]位于SMC,8%[14次]位于CS后方。与一般临床观点相反,初级运动单元在比沿CS的“经典”狭窄运动带更宽的皮质区域上有相当大的重叠。双极皮质刺激在运动前额叶皮质的运动功能定位方面比单极刺激更敏感。两种方法在初级运动皮质定位方面同样敏感。