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双斑蟋(Gryllus bimaculatus DeGeer)听觉感受器的生理学及音频定位组织

Physiology and tonotopic organization of auditory receptors in the cricket Gryllus bimaculatus DeGeer.

作者信息

Oldfield B P, Kleindienst H U, Huber F

出版信息

J Comp Physiol A. 1986 Oct;159(4):457-64. doi: 10.1007/BF00604165.

Abstract

Physiological recordings were obtained from identified receptors in the tympanal organ of Gryllus bimaculatus. By immersing the prothoracic leg in Ringer solution and removing the anterior tympanic membrane the auditory receptors were exposed without significantly altering the frequency response of the auditory organ (Fig. 1). Each receptor was tuned to a specific sound frequency. For sound frequencies below this characteristic frequency the roll-off in sensitivity decreased from 20-30 dB/octave to 10-15 dB/octave as the characteristic frequency of receptors increased from 3-11 kHz (Fig. 4A). For each individual receptor the slope, dynamic range and maximum spike response were similar for different sound frequencies (Fig. 9A). The receptors were tonotopically organized with the characteristic frequency of the receptors increasing from the proximal to the distal end of the array (Figs. 5, 6). Several receptors had characteristic frequencies of 5 kHz. These receptors were divided into two groups on the basis of their maximum spike response produced in response to pure tones of increasing intensity (Fig. 7). Independent of the tuning of the receptor no two-tone inhibition was observed in the periphery, thus confirming that such interactions are a property of central integration.

摘要

从双斑蟋的鼓膜器官中已识别的感受器获取了生理记录。通过将前胸腿浸入林格氏液并移除前鼓膜,听觉感受器得以暴露,且听觉器官的频率响应未发生显著改变(图1)。每个感受器都调谐到特定的声音频率。对于低于该特征频率的声音频率,随着感受器的特征频率从3 - 11千赫兹增加,灵敏度的滚降从20 - 30分贝/倍频程降至10 - 15分贝/倍频程(图4A)。对于每个单独的感受器,不同声音频率下的斜率、动态范围和最大峰值响应相似(图9A)。感受器呈音频拓扑组织,感受器的特征频率从阵列近端到远端增加(图5、6)。几个感受器的特征频率为5千赫兹。根据它们对强度增加的纯音产生的最大峰值响应,这些感受器被分为两组(图7)。与感受器的调谐无关,在外周未观察到双音抑制,从而证实这种相互作用是中枢整合的特性。

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