Zhao Q, Ji S, Zhou Y, Atsuta Y
Department of Pediatric Orthopedics, 2nd Clinical College, China Medical University, Shenyang.
Chin Med J (Engl). 1995 Jul;108(7):535-8.
The characteristics of spinal cord-evoked potentials were investigated by using an in vitro spinal cord preparation. The spinal cord isolated from adult rats was immersed in a bathing chamber filled with oxygenated artificial cerebrospinal fluid (aCSF). The spinal cord-evoked potentials elicited by the stimulation of the spinal cord were recorded by using bipolar platinum electrodes. The potentials recorded consisted of early and late negative components (N1, N2). The inhibitory effect of lowered temperature on the N1 potential was clearly demonstrated. The oxygen deprivation of aCSF showed the higher sensitivity of N2 potential to hypoxia than that of N1. It was also possible to analyze the effects of potassium and magnesium ion concentration and pH on the evoked potentials. These results showed that the pure effects of various physiological and chemical factors on the spinal cord-evoked potentials can be analyzed by this experimental model.
利用体外脊髓标本研究脊髓诱发电位的特征。将从成年大鼠分离出的脊髓浸入充满含氧人工脑脊液(aCSF)的浴槽中。使用双极铂电极记录脊髓刺激诱发的脊髓诱发电位。记录的电位由早期和晚期负成分(N1、N2)组成。明确显示了低温对N1电位的抑制作用。aCSF的缺氧表明N2电位比N1电位对缺氧更敏感。还可以分析钾离子、镁离子浓度和pH对诱发电位的影响。这些结果表明,通过该实验模型可以分析各种生理和化学因素对脊髓诱发电位的纯粹影响。