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猫初级听觉皮层对电刺激耳蜗的神经元反应。I. 放电率和反应潜伏期的强度依赖性。

Neuronal responses in cat primary auditory cortex to electrical cochlear stimulation. I. Intensity dependence of firing rate and response latency.

作者信息

Raggio M W, Schreiner C E

机构信息

Coleman Memorial Laboratory, W. M. Keck Center for Integrative Neuroscience, Department of Otolaryngology, University of California at San Francisco 94143-0732.

出版信息

J Neurophysiol. 1994 Nov;72(5):2334-59. doi: 10.1152/jn.1994.72.5.2334.

Abstract
  1. Responses of neurons in primary auditory cortex (AI) of the barbiturate anesthetized adult cat were studied using cochlear stimulation with electrical and acoustic stimuli. Acoustic stimulation of the ear ipsilateral to the studied cortical hemisphere with brief biphasic clicks was compared with electrical stimulation of the contralateral cochlea with brief biphasic electrical pulses delivered via a feline cochlear prosthesis. The contralateral ear was deafened immediately before implantation of the cochlear prosthesis. The feline cochlear prosthesis consisted of four bipolar electrode pairs and was placed in the scala tympani. Two bipolar electrode conditions were used for stimulation: one near radial pair with electrode spacing of approximately 0.5 mm, and one longitudinal pair with electrode spacing of approximately 6 mm. 2. The firing rates obtained from single- and multiple-neuron recordings were measured as a function of stimulus intensity for single electrical and acoustic pulses. Resulting rate/level functions were characterized by a fast growing low-level segment and a more slowly growing, saturating, or decreasing high-level segment. The slopes of these two segments as well as the stimulus level and firing rate at the juncture of these two segments (the transition point) provide a complete characterization of the response magnitude behavior as a function of stimulus intensity. 3. The main characteristics of rate/level functions obtained with electrical and acoustic cochlear stimulation were quite similar. However, for any given neuron, differences in the primary growth behavior, such as monotonic or nonmonotonic growth, could be observed between the different stimulation modes. 4. Response latencies from single- and multiple-neuron recordings were obtained as a function of stimulus intensity for electrical and acoustic pulses. Resulting latency/level functions were characterized by a rapidly decreasing low-level segment and a more slowly decreasing high-level segment. The slopes of these two segments as well as the stimulus level and response latency at the juncture of these two segments (the transition point) provide a complete characterization of the response latency behavior as a function of stimulus intensity. Transition point levels for the rate/level function and the latency/level were nearly identical. 5. The characteristic latency behavior for each neuronal response was found to be very similar for acoustic and electrical stimulation. Correlation analysis revealed a close relationship between latency parameters of the two electrical stimulation conditions, a weaker relationship between the longitudinal electrical and the acoustic conditions, and the weakest relationship between the radial electrical and acoustic conditions. 6. Correlation analysis for rate and latency parameters revealed several relationships between these response aspects.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用电刺激和声音刺激耳蜗的方法,研究了巴比妥麻醉的成年猫初级听觉皮层(AI)中神经元的反应。将通过短暂双相滴答声对所研究皮层半球同侧耳朵进行的声音刺激,与通过猫耳蜗假体输送的短暂双相电脉冲对侧耳蜗进行的电刺激进行比较。在植入耳蜗假体之前,立即使对侧耳朵失聪。猫耳蜗假体由四对双极电极组成,置于鼓阶中。刺激采用两种双极电极条件:一对为近径向电极对,电极间距约为0.5毫米;另一对为纵向电极对,电极间距约为6毫米。2. 从单神经元和多神经元记录中获得的放电率,作为单个电脉冲和声音脉冲刺激强度的函数进行测量。由此得到的放电率/强度函数的特征是,低强度段快速增长,高强度段增长较慢、达到饱和或下降。这两个段的斜率以及这两个段交界处(转变点)的刺激强度和放电率,完整地描述了反应幅度随刺激强度变化的行为。3. 通过电刺激和声音刺激耳蜗获得的放电率/强度函数的主要特征非常相似。然而,对于任何给定的神经元,在不同刺激模式之间,可以观察到初级增长行为的差异,如单调增长或非单调增长。4. 从单神经元和多神经元记录中获得的反应潜伏期,作为电脉冲和声音脉冲刺激强度的函数。由此得到的潜伏期/强度函数的特征是,低强度段迅速下降,高强度段下降较慢。这两个段的斜率以及这两个段交界处(转变点)的刺激强度和反应潜伏期,完整地描述了反应潜伏期随刺激强度变化的行为。放电率/强度函数和潜伏期/强度函数的转变点强度几乎相同。5. 发现每个神经元反应的特征潜伏期行为在声音刺激和电刺激下非常相似。相关性分析表明,两种电刺激条件下潜伏期参数之间关系密切,纵向电刺激与声音刺激条件之间关系较弱,径向电刺激与声音刺激条件之间关系最弱。6. 对放电率和潜伏期参数的相关性分析揭示了这些反应方面之间的几种关系。(摘要截选至400字)

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