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鸽子听觉神经中单纤维的异常放电模式。

Unusual discharge patterns of single fibers in the pigeon's auditory nerve.

作者信息

Temchin A N

机构信息

Department of Biology, Moscow State University, USSR.

出版信息

J Comp Physiol A. 1988 May;163(1):99-115. doi: 10.1007/BF00612001.

Abstract

Extracellular recording from single auditory nerve fibers in the pigeon, Columba livia, revealed some unusual discharge patterns of spontaneous and evoked activity. Time interval histograms (TIHs) of spontaneous activity showed a random interval distribution in 73% of the auditory fibers (Fig. 1a). The remaining 27% revealed periodicity in the TIHs (Fig. 1b-e), determined by the characteristic frequency (CF) of a given fiber. Normally, those fibers had a CF less than 2.2 kHz. In both cases spontaneous activity was irregular. The time pattern of quasiperiodic spontaneous firing in different auditory fibers is described by three main types of autocorrelation histograms (ACHs; decaying, nondecaying, and modulated), reflecting the spontaneous oscillations of the hair cell membrane potential (Fig. 1b-d). Single-tone suppression in auditory fibers with quasi-periodic spontaneous activity was found (Figs. 2, 10) and it could be observed if the eighth nerve was cut. There was no suppressive effect in fibres with random spontaneous firing. The frequency selectivity properties of auditory fibers were studied by means of an automatic method. Both 'simple' (Fig. 4) and 'complex' (Figs. 7, 8) response maps were found. Apart from the usual excitatory area, complex response maps were characterized by suppressive areas lying either above (Fig. 7), below (Fig. 8e), or on both sides of the CF (Fig. 8a-c). Generally, complex response maps were observed for fibers showing quasiperiodic spontaneous activity (Figs. 7, 8). Input-output functions at frequencies evoking single-tone suppression were nonmonotonic, while they were always monotonic at frequencies near the CF (Fig. 12). No difference in sharpness was observed between normal frequency threshold curves (FTCs) and excitatory areas of 'complex' response maps (Fig. 9). 'On-off' responses evoked by suppressive stimuli were found (Figs. 2, 3). They had a periodic pattern determined by the CF and did not depend on the stimulus frequency (Fig. 3). Low-CF fibers were observed which changed their time discharge structure to tone levels about 45 dB lower than their thresholds at the CF (Fig. 6). The observed features of the discharge patterns of the pigeon's auditory fibers reflect the distinctive nature of the fundamental mechanisms of auditory analysis in birds that are connected with electrical tuning of the hair cells and probably with the micromechanics of the bird's cochlea.

摘要

对家鸽(Columba livia)单根听神经纤维进行的细胞外记录,揭示了一些自发活动和诱发活动的异常放电模式。自发活动的时间间隔直方图(TIHs)显示,73%的听神经纤维呈现随机间隔分布(图1a)。其余27%的纤维在TIHs中表现出周期性(图1b - e),这由特定纤维的特征频率(CF)决定。通常情况下,这些纤维的CF小于2.2 kHz。在这两种情况下,自发活动都是不规则的。不同听神经纤维中准周期性自发放电的时间模式由三种主要类型的自相关直方图(ACHs;衰减型、非衰减型和调制型)描述,反映了毛细胞膜电位的自发振荡(图1b - d)。在具有准周期性自发活动的听神经纤维中发现了单音抑制现象(图2、10),并且如果切断第八对神经也能观察到这种现象。在具有随机自发放电的纤维中没有抑制作用。通过一种自动方法研究了听神经纤维的频率选择性特性。发现了“简单”(图4)和“复杂”(图7、8)两种响应图。除了通常的兴奋区域外,复杂响应图的特征是抑制区域位于CF之上(图7)、之下(图8e)或两侧(图8a - c)。一般来说,复杂响应图是在显示准周期性自发活动的纤维中观察到的(图7、8)。在诱发单音抑制的频率下,输入 - 输出函数是非单调的,而在CF附近的频率下它们总是单调的(图12)。在正常频率阈值曲线(FTCs)和“复杂”响应图的兴奋区域之间未观察到锐度差异(图9)。发现了由抑制性刺激诱发的“开 - 关”响应(图2、3)。它们具有由CF决定的周期性模式,并且不依赖于刺激频率(图3)。观察到低CF纤维,其放电时间结构在比CF处阈值低约45 dB的音调水平时发生变化(图6)。家鸽听神经纤维放电模式的观察特征反映了鸟类听觉分析基本机制的独特性质,这些机制与毛细胞的电调谐以及可能与鸟类耳蜗的微力学有关。

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