Araki A, Yamada T, Ito T, Urushibara N, Kohira R, Hsu S P, Yeh M
Department of Neurology, University of Iowa, College of Medicine, Iowa City 52242, USA.
Electroencephalogr Clin Neurophysiol. 1997 Jan;104(1):68-73. doi: 10.1016/s0168-5597(96)96045-1.
Cervical N13 potential in response to the median nerve stimulation can be recorded either from upper (Cv2) or lower (Cv6) neck with almost equal amplitudes and latencies. It has long been debated whether they represent the same or different generator sources. Using a conditioning-test paired stimuli paradigm, we examined the differences of recovery function of Cv2- and Cv6-N13, anterior neck (AN)-P13, and scalp recorded P13/P14 in 6 healthy subjects. All cervical electrodes were referenced to the non-cephalic site. Scalp response was recorded with linked ear reference. The inter-stimulus intervals ranged from 4 to 20 ms with 2 ms increments. Throughout 4 to 18 ms ISI, Cv6-N13, AN-P13 and scalp P13/P14 were suppressed, whereas Cv2-N13 was facilitated. All but scalp P13/P14 returned close to the control at 20 ms ISI. The findings indicate that Cv2-N13, Cv6-N13 and scalp P13/P14 are independent each other and arise from different generator sources. The suppression of Cv6-N13 is consistent with a postsynaptic nature of this potential and may indeed be mediated through dorsal horn interneurons creating a current field orientation in the posterior-anterior direction. The facilitation of Cv2-N13 suggests that this is a presynaptic potential and may travel through the dorsal column with vertical orientation. The longer period of suppression of scalp P13/P14 suggests it to be of polysynaptic origin and to arise at least rostral to the cuneate nucleus.
对正中神经刺激产生反应时,颈N13电位可在上颈部(Cv2)或下颈部(Cv6)记录,其波幅和潜伏期几乎相等。它们代表相同还是不同的发生器来源,长期以来一直存在争议。我们采用条件-测试配对刺激范式,研究了6名健康受试者中Cv2-N13和Cv6-N13、前颈部(AN)-P13以及头皮记录的P13/P14恢复功能的差异。所有颈部电极均参考非头部部位。头皮反应采用双耳链接参考记录。刺激间隔为4至20毫秒,以2毫秒递增。在4至18毫秒的刺激间隔期间,Cv6-N13、AN-P13和头皮P13/P14受到抑制,而Cv2-N13得到易化。除头皮P13/P14外,所有指标在20毫秒刺激间隔时均恢复至接近对照水平。研究结果表明,Cv2-N13、Cv6-N13和头皮P13/P14相互独立,源于不同的发生器来源。Cv6-N13的抑制与该电位的突触后性质一致,可能确实是通过背角中间神经元介导,形成后-前方向的电流场方向。Cv2-N13的易化表明这是一种突触前电位,可能沿背柱垂直传导。头皮P13/P14抑制时间较长,表明其起源于多突触,至少起源于楔束核的头端。