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海藻酸诱导神经元缺失后猫的听觉脑干诱发电位。I. 上橄榄复合体。

Auditory brain-stem evoked potentials in cat after kainic acid induced neuronal loss. I. Superior olivary complex.

作者信息

Zaaroor M, Starr A

机构信息

Dept. of Neurology, Univ. of California, Irvine 92651.

出版信息

Electroencephalogr Clin Neurophysiol. 1991 Sep-Oct;80(5):422-35. doi: 10.1016/0168-5597(91)90091-b.

Abstract

Auditory brain-stem potentials (ABRs) were studied in cats for up to 45 days after kainic acid had been injected unilaterally or bilaterally into the superior olivary complex (SOC) to produce neuronal destruction while sparing fibers of passage and the terminals of axons of extrinsic origin connecting to SOC neurons. The components of the ABR in cat were labeled by their polarity at the vertex (P, for positive) and their order of appearance (the arabic numerals 1, 2, etc.). Component P1 can be further subdivided into 2 subcomponents labeled P1a and P1b. The correspondences we have assumed between the ABR components in cat and man are indicated by providing a Roman numeral designation for the human component in parentheses following the feline notation, e.g., P4 (V). With bilateral SOC destruction, there was a significant and marked attenuation of waves P2 (III), P3 (IV), P4 (V), P5 (VI), and the sustained potential shift (SPS) amounting to as much as 80% of preoperative values. Following unilateral SOC destruction the attenuation of many of these same ABR components, in response to stimulation of either ear, was up to 50%. No component of the ABR was totally abolished even when the SOC was lesioned 100% bilaterally. In unilaterally lesioned cats with extensive neuronal loss (greater than 75%) the latencies of the components beginning at P3 (IV) were delayed to stimulation of the ear ipsilateral to the injection site but not to stimulation of the ear contralateral to the injection. Binaural interaction components of the ABR were affected in proportion to the attenuation of the ABR. These results are compatible with multiple brain regions contributing to the generation of the components of the ABR beginning with P2 (III) and that components P3 (IV), P4 (V), and P5 (VI) and the sustained potential shift depend particularly on the integrity of the neurons of the SOC bilaterally. The neurons of the lateral subdivision (LSO) and the medial nucleus of the trapezoid body (MNTB) of the SOC have a major role in generating waves P3 (IV) and P4 (V).

摘要

在猫身上研究了听觉脑干电位(ABR),在单侧或双侧将 kainic 酸注入上橄榄复合体(SOC)以造成神经元破坏,同时保留通过的纤维以及连接到 SOC 神经元的外在起源轴突的终末,观察长达 45 天。猫的 ABR 成分根据其在头顶的极性(P,代表正向)及其出现顺序(阿拉伯数字 1、2 等)进行标记。成分 P1 可进一步细分为标记为 P1a 和 P1b 的 2 个亚成分。我们假设的猫与人的 ABR 成分之间的对应关系通过在猫科动物标记后括号内为人类成分提供罗马数字指定来表示,例如,P4(V)。双侧 SOC 破坏后,P2(III)、P3(IV)、P4(V)、P5(VI)波以及持续电位偏移(SPS)显著且明显衰减,衰减幅度高达术前值的 80%。单侧 SOC 破坏后,对任一耳刺激时,许多相同的 ABR 成分衰减高达 50%。即使双侧 SOC 100%受损,ABR 的任何成分也不会完全消失。在单侧受损且神经元大量丢失(超过 75%)的猫中,从 P3(IV)开始的成分潜伏期在刺激注射侧耳时延迟,但在刺激注射对侧耳时未延迟。ABR 的双耳相互作用成分与 ABR 的衰减成比例受到影响。这些结果与多个脑区参与从 P2(III)开始的 ABR 成分的产生一致,并且成分 P3(IV)、P4(V)和 P5(VI)以及持续电位偏移特别依赖于双侧 SOC 神经元的完整性。SOC 的外侧亚区(LSO)和梯形体内侧核(MNTB)的神经元在产生 P3(IV)和 P4(V)波中起主要作用。

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