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腹侧耳蜗核星状细胞模型中时间放电模式的转变:对生理机制的影响

Transformation of temporal discharge patterns in a ventral cochlear nucleus stellate cell model: implications for physiological mechanisms.

作者信息

Wang X, Sachs M B

机构信息

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

出版信息

J Neurophysiol. 1995 Apr;73(4):1600-16. doi: 10.1152/jn.1995.73.4.1600.

DOI:10.1152/jn.1995.73.4.1600
PMID:7643170
Abstract
  1. We have stimulated responses of stellate cells in the anteroventral cochlear nucleus (AVCN) to single-formant stimuli (SFSs) with the use of recorded auditory-nerve fiber (ANF) responses as inputs. In particular, two important features of temporal discharge patterns, the phase locking to best frequency (BF) tones and to stimulus envelopes, were examined in the model output. Our earlier experimental studies with SFSs found an enhancement of the envelope modulation in AVCN chopper units, presumably recorded from stellate cells, as compared with that of ANFs. 2. We simulated in the model three mechanisms for the enhancement in envelope modulation proposed earlier by us, namely, convergence of ANFs, temporal summation and inhibitory input. It was found that the convergence of multiple ANFs alone did not always lead to an enhancement in modulation depth, but was necessary for the model to produce other physiologically plausible envelope features; the temporal summation of subthreshold events can lead to an increase in modulation depth; and the somatic inhibition effectively reduced the envelope minimum and, as a result, increased the modulation depth. In addition, we found that, given the same input configuration, the closer the inputs were located to the soma, the greater modulation depth they produced at the model output. 3. Different types of convergence of ANF inputs were tested in our model. It was found that the convergence of both low and high spontaneous rate (SR) ANFs resulted in an enhancement in modulation depth over a wider range of sound level than that due to the convergence of ANFs from the same SR group.(ABSTRACT TRUNCATED AT 250 WORDS)
摘要
  1. 我们利用记录的听神经纤维(ANF)反应作为输入,刺激了前腹侧耳蜗核(AVCN)中星状细胞对单共振峰刺激(SFS)的反应。具体而言,在模型输出中研究了时间放电模式的两个重要特征,即对最佳频率(BF)音调以及对刺激包络的锁相。我们早期对SFS的实验研究发现,与ANF相比,AVCN切波单元(可能记录自星状细胞)中的包络调制有所增强。2. 我们在模型中模拟了我们之前提出的三种增强包络调制的机制,即ANF的汇聚、时间总和以及抑制性输入。结果发现,仅多个ANF的汇聚并不总是导致调制深度的增强,但对于模型产生其他生理上合理的包络特征而言是必要的;阈下事件的时间总和可导致调制深度增加;而体细胞抑制有效地降低了包络最小值,从而增加了调制深度。此外,我们发现,在相同的输入配置下,输入越靠近胞体,它们在模型输出中产生的调制深度就越大。3. 在我们的模型中测试了不同类型的ANF输入汇聚。结果发现,与来自相同自发率(SR)组的ANF汇聚相比,低自发率和高自发率ANF的汇聚在更宽的声级范围内导致调制深度增强。(摘要截选于250词)

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