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猫初级听觉皮层神经元对纯音和调频刺激的敏感性。I:刺激参数变化的影响。

Sensitivity of neurons in cat primary auditory cortex to tones and frequency-modulated stimuli. I: Effects of variation of stimulus parameters.

作者信息

Heil P, Rajan R, Irvine D R

机构信息

Department of Psychology, Monash University, Clayton Victoria, Australia.

出版信息

Hear Res. 1992 Nov;63(1-2):108-34. doi: 10.1016/0378-5955(92)90080-7.

Abstract

In the primary auditory cortex (AI) of barbiturate-anesthetized cats multi-unit responses to tones and to frequency-modulated (FM) tonal stimuli were analyzed. Characteristic frequency (CF), sharpness of tuning, minimum threshold, and dynamic range of spike count--intensity functions were determined. Minimum threshold and dynamic range were positively correlated. The response functions to unidirectional FM sweeps of varying linear rate of change of frequency (RCF) that traversed the excitatory frequency response areas (FRAs) displayed a variety of shapes. Preferences for fast RCFs (> 1000 kHz/s) were most common. Best RCF was not correlated with measures of sharpness of tuning. Directional preference and sensitivity were quantified by a DS index which varied with RCF. About two-thirds of the multi-unit responses showed a preference for downward sweeps. Directional sensitivity was independent of CF and independent of best RCF. Measurements of latencies of phasic responses to unidirectional FM sweeps of different RCF demonstrated that the discharges of a given multi-unit over its effective RCF range were initiated at the same instantaneous frequency (effective Fi), independent of RCF. Effective Fis fell within the excitatory FRA of a given multi-unit. The relationships of effective Fis to CF show that responses were evoked only when the frequency of the signal was modulated towards CF and not when modulated away from it, and that responses were initiated before the modulation reached CF. Changes in the range and depth of modulation had only minor, if any, effects on RCF response characteristics, FM directional sensitivity, and effective Fis, as long as the beginning and ending frequencies of FM sweeps fell outside a multi-unit's FRA. Stimulus intensity also had only moderate effects on RCF response characteristics and DS. However, effective Fis were influenced in systematic fashions; with increases in intensity, effective Fis to upward and downward sweeps decreased and increased, respectively. Thus, for higher intensities FM responses were initiated at instantaneous frequencies occurring earlier in the signal. The results are compared with previous data on tone and FM sensitivity of auditory neurons in cortical and subcortical structures, and mechanisms of FM rate and directional sensitivity are discussed. The topographic representations of these neuronal properties in AI are reported in the companion report.

摘要

在巴比妥酸盐麻醉猫的初级听觉皮层(AI)中,分析了对纯音和调频(FM)音调刺激的多单元反应。确定了特征频率(CF)、调谐锐度、最小阈值以及脉冲计数-强度函数的动态范围。最小阈值和动态范围呈正相关。对穿越兴奋性频率反应区域(FRA)的不同线性频率变化率(RCF)的单向FM扫描的反应函数呈现出多种形状。对快速RCF(>1000kHz/s)的偏好最为常见。最佳RCF与调谐锐度的测量值无关。通过随RCF变化的DS指数量化方向偏好和灵敏度。约三分之二的多单元反应表现出对向下扫描的偏好。方向灵敏度与CF无关,也与最佳RCF无关。对不同RCF的单向FM扫描的相位反应潜伏期的测量表明,给定多单元在其有效RCF范围内的放电在相同的瞬时频率(有效Fi)开始,与RCF无关。有效Fi落在给定多单元的兴奋性FRA内。有效Fi与CF的关系表明,只有当信号频率朝着CF调制时才会引发反应,而当信号频率远离CF调制时则不会引发反应,并且反应在调制达到CF之前就已开始。只要FM扫描的起始和结束频率落在多单元的FRA之外,调制范围和深度的变化对RCF反应特性、FM方向灵敏度和有效Fi的影响就很小(如果有影响的话)。刺激强度对RCF反应特性和DS也只有适度影响。然而,有效Fi受到系统性影响;随着强度增加,向上和向下扫描的有效Fi分别降低和增加。因此,对于更高强度,FM反应在信号中更早出现的瞬时频率处开始。将这些结果与先前关于皮层和皮层下结构中听觉神经元的纯音和FM灵敏度的数据进行了比较,并讨论了FM速率和方向灵敏度的机制。在配套报告中报道了这些神经元特性在AI中的拓扑表示。

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