Takahashi H, Suzuki I, Ishijima B
Department of Neurosurgery, Tokyo Metropolitan Neurological Hospital, Japan.
Brain Topogr. 1996 Spring;8(3):233-5. doi: 10.1007/BF01184775.
Intra-operative cortical and subcortical SEPs from the cerebral convexity and from the inter-hemispheric fissure were recorded following posterior tibial nerve (PTN) stimulation. Cortical and subcortical SEPs from the cerebral convexity after contra-lateral PTN stimulation consisted of N38 and P46, and their polarity reversed when the ipsi-lateral site was stimulated. On the other hand, cortical SEPs from the inter-hemispheric fissure always showed P38 and N46, whether the right or the left PTN was stimulated. Cortical and subcortical SEPs from the inter-hemispheric fissure showed clear cut polarity reversals. These findings provide good evidence for the existence of a tangential dipole oriented perpendicular to the inter-hemispheric fissure in the foot sensory area of the primary sensory cortex. SEPs recorded from the superficial part of the inter-hemispheric fissure showed smaller amplitudes and longer latencies than those of SEPs from the deeper regions. These findings suggest the existence of another dipole responsible for the generation of SEPs after PTN stimulation.
在刺激胫后神经(PTN)后,记录大脑凸面和半球间裂的术中皮质及皮质下体感诱发电位(SEP)。对侧PTN刺激后大脑凸面的皮质及皮质下SEP由N38和P46组成,而刺激同侧部位时其极性反转。另一方面,无论刺激右侧还是左侧PTN,半球间裂的皮质SEP始终显示为P38和N46。半球间裂的皮质及皮质下SEP显示出明显的极性反转。这些发现为在初级感觉皮层足部感觉区存在垂直于半球间裂的切向偶极子提供了有力证据。从半球间裂浅表部分记录的SEP比来自较深区域的SEP振幅更小、潜伏期更长。这些发现提示存在另一个负责PTN刺激后SEP产生的偶极子。