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通过锋电位触发平均法和逆向激活揭示的单延髓脊髓吸气神经元的轴突投射。

Axonal projections of single bulbospinal inspiratory neurons revealed by spike-triggered averaging and antidromic activation.

作者信息

Dick T E, Berger A J

出版信息

J Neurophysiol. 1985 Jun;53(6):1590-603. doi: 10.1152/jn.1985.53.6.1590.

Abstract

Activity was recorded extracellularly from 26 inspiratory bulbospinal neurons in anesthetized, paralyzed, artificially ventilated cats. All but one were located in the ventral respiratory group. A neuron was classified as either I alpha or I beta by comparing its firing pattern during inspiratory cycles with lung inflation to its pattern when lung inflation was withheld during the central inspiratory phase (2, 14, 15). In this study, the projection and conduction velocity of these axons were determined using two methods: antidromic activation (AA) of the bulbospinal neurons and spike-triggered averaging (STA) of the extracellular field potentials. These methods have been compared directly because the same electrode was used both for stimulating the axon of the bulbospinal neuron and recording its axonal potential in the same location. Axonal projections from these neurons were mapped in the contralateral spinal cord with a mobile electrode by determining where the lowest stimulus threshold occurs for AA and greatest axonal potential can be recorded with STA. The locations of these axons were in the ventral and lateral funiculi. Each method determined a similar location for an axon. Positions of 10 axons were determined at both the third (C3) and fourth (C4) cervical segments. Single axons maintained their positions in either descending tract from rostral C3 to mid-C4. In five of six cases where two "neighboring" medullary units were characterized, the axons of each pair projected together within 350 micron of each other in the cervical spinal cord. Estimates of mean axonal conduction velocity (CV) from antidromic activation from a single stimulus site, "single-point AA," were as much as 42% less than corresponding estimates from STA extracellular field potentials at that point (P less than 0.001). Such single-point estimates were less than determinations that were calculated from the difference in conduction time and the difference in conduction distance from two points in the spinal cord. These two-point determinations averaged 55.4 +/- 13.1 m/s (using AA) and 53.3 +/- 13.1 (using STA) for 10 neurons. These values were not significantly (P greater than 0.2) different from each other and are greater than most earlier reports, which used the single-point AA method. Either method, AA or STA, can be used to determine axonal position and CV. The advantages and disadvantages of each method are discussed.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在麻醉、麻痹并进行人工通气的猫身上,对26个吸气性延髓脊髓神经元进行了细胞外活动记录。除一个神经元外,其余均位于腹侧呼吸组。通过比较吸气周期中肺充气时神经元的放电模式与其在中枢吸气相肺充气被抑制时的模式,将神经元分为Iα或Iβ型(2, 14, 15)。在本研究中,使用两种方法测定这些轴突的投射和传导速度:延髓脊髓神经元的逆向激活(AA)和细胞外场电位的锋电位触发平均(STA)。由于在同一位置使用同一电极既刺激延髓脊髓神经元的轴突又记录其轴突电位,因此对这两种方法进行了直接比较。通过确定AA的最低刺激阈值出现位置以及STA可记录到最大轴突电位的位置,用移动电极在对侧脊髓中绘制这些神经元的轴突投射图。这些轴突位于腹侧和外侧索。每种方法确定的轴突位置相似。在第三(C3)和第四(C4)颈段确定了10条轴突的位置。单个轴突在从C3头端到C4中部的下行束中保持其位置。在对六个“相邻”延髓单位进行特征描述的六个案例中的五个中,每对轴突在颈脊髓中彼此相距350微米以内共同投射。从单个刺激位点进行逆向激活(“单点AA”)得到的平均轴突传导速度(CV)估计值比该点STA细胞外场电位的相应估计值低多达42%(P<0.001)。这种单点估计值小于根据脊髓中两点之间的传导时间差和传导距离差计算出的测定值。对于10个神经元,这两种两点测定值平均为55.4±13.1 m/s(使用AA)和53.3±13.1(使用STA)。这些值彼此之间无显著差异(P>0.2)且大于大多数早期使用单点AA方法的报告。AA或STA这两种方法均可用于确定轴突位置和CV。讨论了每种方法的优缺点。(摘要截断于400字)

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