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听神经纤维向耳蜗腹侧核中浓密细胞的汇聚:一个计算模型的启示

Convergence of auditory nerve fibers onto bushy cells in the ventral cochlear nucleus: implications of a computational model.

作者信息

Rothman J S, Young E D, Manis P B

机构信息

Department of Biomedical Engineering, Johns Hopkins University, Baltimore, Maryland 21205.

出版信息

J Neurophysiol. 1993 Dec;70(6):2562-83. doi: 10.1152/jn.1993.70.6.2562.

Abstract
  1. Convergence of auditory nerve (AN) fibers onto bushy cells of the ventral cochlear nucleus (VCN) was investigated with a model that describes the electrical membrane properties of these cells. The model consists of a single compartment, representing the soma, and includes three voltage-sensitive ion channels (fast sodium, delayed-rectifier-like potassium, and low-threshold potassium). These three channels have characteristics derived from voltage clamp data of VCN bushy cells. The model also contains a leakage channel, membrane capacitance, and synaptic inputs. The model accurately reproduces the membrane rectification seen in current clamp studies of bushy cells, as well as their unique current clamp responses. 2. In this study, the number and synaptic strength of excitatory AN inputs to the model were varied to investigate the relationship between input convergence parameters and response characteristics. From 1 to 20 excitatory synaptic inputs were applied through channels in parallel with the voltage-gated channels. Each synapse was driven by an independent AN spike train; spike arrivals produced brief (approximately 0.5 ms) conductance increases. The number (NS) and conductance (AE) of these inputs were systematically varied. The input spike trains were generated as a renewal point process that accurately models characteristics of AN fibers (refractoriness, adaptation, onset latency, irregularity of discharge, and phase locking). Adaptation characteristics of both high and low spontaneous rate (SR) AN fibers were simulated. 3. As NS and AE vary over the ranges 1-20 and 3-80 nS, respectively, the full range of response types seen in VCN bushy cells are produced by the model, with AN inputs typical of high-SR AN fibers. These include primarylike (PL), primarylike-with-notch (Pri-N), and onset-L (On-L). In addition, Onset responses, whose association with bushy cells in uncertain, and "dip" responses, which are not seen in the VCN, are produced. Dip responses occur with large NS and/or AE, and are due to depolarization block. When the AN inputs have the adaptation characteristics of low-SR AN fibers, PL--but not Pri-N or On-L responses--are produced. This suggests that neurons showing Pri-N and On-L responses must receive high-SR AN inputs. 4. The regularity of discharge of the model is compared with that of VCN bushy cells, using a measure derived from the mean and standard deviation of interspike intervals. Regularity is an important constraint on the model because the regularity of VCN bushy cells is the same as that of their AN inputs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 利用一个描述这些细胞电膜特性的模型,研究了听神经(AN)纤维向腹侧耳蜗核(VCN)的浓密细胞的汇聚情况。该模型由一个代表胞体的单室组成,并包括三个电压敏感离子通道(快速钠通道、延迟整流样钾通道和低阈值钾通道)。这三个通道具有源自VCN浓密细胞电压钳数据的特性。该模型还包含一个泄漏通道、膜电容和突触输入。该模型准确地再现了在浓密细胞电流钳研究中看到的膜整流现象,以及它们独特的电流钳反应。2. 在本研究中,改变模型中兴奋性AN输入的数量和突触强度,以研究输入汇聚参数与反应特性之间的关系。通过与电压门控通道并联的通道施加1至20个兴奋性突触输入。每个突触由独立的AN尖峰序列驱动;尖峰到达会导致短暂(约0.5毫秒)的电导增加。这些输入的数量(NS)和电导(AE)被系统地改变。输入尖峰序列被生成为一个更新点过程,该过程准确地模拟了AN纤维的特性(不应期、适应性、起始潜伏期、放电不规则性和锁相)。模拟了高和低自发率(SR)AN纤维的适应特性。3. 当NS和AE分别在1 - 20和3 - 80纳秒的范围内变化时,该模型产生了VCN浓密细胞中所见的全范围反应类型,其AN输入典型于高SR AN纤维。这些包括初级样(PL)、带凹口的初级样(Pri - N)和起始 - L(On - L)。此外,还产生了与浓密细胞的关联不确定的起始反应,以及在VCN中未见的“凹陷”反应。凹陷反应在NS和/或AE较大时出现,是由于去极化阻滞。当AN输入具有低SR AN纤维的适应特性时,产生PL反应,但不产生Pri - N或On - L反应。这表明显示Pri - N和On - L反应的神经元必须接受高SR AN输入。4. 使用从峰间间隔的均值和标准差导出的度量,将模型的放电规律性与VCN浓密细胞的放电规律性进行比较。规律性是对模型的一个重要约束条件,因为VCN浓密细胞的规律性与其AN输入的规律性相同。(摘要截于400字)

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