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突触特性对成年猫单根Ia类传入纤维连接性及兴奋性突触后电位幅度的影响:同侧与异侧连接

Influence of synaptic identity on single-Ia-afferent connectivity and EPSP amplitude in the adult cat: homonymous versus heteronymous connections.

作者信息

Webb C B, Cope T C

机构信息

Physiology Department, Hahnemann University, Philadelphia, Pennsylvania 19107.

出版信息

J Neurophysiol. 1992 Oct;68(4):1046-52. doi: 10.1152/jn.1992.68.4.1046.

Abstract
  1. This study makes use of the pattern of synaptic connections between motoneurons and Ia afferents of triceps surae muscles in the cat to test the relative importance of synaptic identity, neuronal size, and neuronal topography as determinants of Ia-afferent connectivity and excitatory postsynaptic potential (EPSP) amplitude. 2. The synaptic actions of single-Ia medial gastrocnemius (MG) afferents were measured by intracellular recording in MG and lateral gastrocnemius (LG) motoneurons. The spike-triggered averaging technique was used to measure EPSPs generated by homonymous or heteronymous Ia afferents and motoneurons, i.e., neurons supplying the same or different muscles, respectively. In agreement with earlier studies, the pooled sample showed that the number of functional connections and the size of EPSPs were both significantly greater for homonymous than for heteronymous neurons. 3. Afferent conduction velocity, motoneuron conduction velocity, rheobase current, and position of the motoneuron relative to the spinal cord afferent entry were all correlated with EPSP amplitude, but the amplitude difference between homonymous and heteronymous connections remained significant after the statistical removal analysis of covariance (ANCOVA) of the contribution of these variables. Stepwise multiple-regression analysis showed that synaptic identity explained the greatest fraction of the variance in EPSP amplitude (9%), with significant but smaller fractions accounted for by rheobase current or motoneuron conduction velocity. 4. In a separate experiment, the monosynaptic affects from both homonymous and heteronymous single-Ia afferents were examined in each of 88 MG or LG motoneurons. The single-Ia afferents used in this portion of the study were sampled from both MG and LG muscles and selected for similar conduction velocities and spinal cord entry points.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 本研究利用猫的腓肠肌运动神经元与Ia传入纤维之间的突触连接模式,来测试突触身份、神经元大小和神经元拓扑结构作为Ia传入纤维连接性和兴奋性突触后电位(EPSP)幅度决定因素的相对重要性。2. 通过在腓肠肌内侧头(MG)和外侧头(LG)运动神经元中进行细胞内记录,测量单个Ia MG传入纤维的突触作用。采用触发尖峰平均技术来测量由同名或异名Ia传入纤维和运动神经元产生的EPSP,即分别供应相同或不同肌肉的神经元产生的EPSP。与早期研究一致,汇总样本显示,同名神经元的功能性连接数量和EPSP大小均显著大于异名神经元。3. 传入纤维传导速度、运动神经元传导速度、基强度电流以及运动神经元相对于脊髓传入纤维入口的位置均与EPSP幅度相关,但在对这些变量的贡献进行协方差分析(ANCOVA)的统计去除分析后,同名和异名连接之间的幅度差异仍然显著。逐步多元回归分析表明,突触身份解释了EPSP幅度方差的最大部分(9%),基强度电流或运动神经元传导速度所占比例虽显著但较小。4. 在另一项实验中,对88个MG或LG运动神经元中的每一个,都检测了来自同名和异名单个Ia传入纤维的单突触效应。本研究这一部分中使用的单个Ia传入纤维取自MG和LG肌肉,并选择具有相似传导速度和脊髓入口点的纤维。(摘要截断于250字)

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