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牛蛙(北美牛蛙)第八神经纤维反应中适应模式的多样性。

Diversity of adaptation patterns in responses of eighth nerve fibers in the bullfrog, Rana catesbeiana.

作者信息

Megela A L

出版信息

J Acoust Soc Am. 1984 Apr;75(4):1155-62. doi: 10.1121/1.390764.

DOI:10.1121/1.390764
PMID:6609943
Abstract

The firing patterns of eighth nerve fibers in the bullfrog, Rana catesbeiana, were analyzed for responses to long duration tone bursts at best excitatory frequency ( BEF ) and at frequencies along the upper and lower boundaries of the excitatory tuning curve of each fiber. These firing patterns were used as an index of the degree of short-term adaptation of each fiber. Amphibian papilla fibers (with BEFs 100-1000 Hz) exhibited marked diversity in their firing patterns to BEF tones, ranging from very flat or tonic (sustained responses throughout the duration of the stimulus) to very peaked or phasic (responding primarily or exclusively to stimulus onset). Moreover, the degree of short-term adaptation shown by an individual fiber varied with stimulating frequency. The firing patterns of amphibian papilla fibers tended to become more tonic as stimulus frequency was lowered below BEF ; conversely, as stimulus frequency was increased above BEF , firing patterns either showed little change from that at BEF , or became more phasic. A similar frequency dependence of adaptation has not been reported in responses of mammalian eighth nerve fibers with comparable BEFs . The firing patterns of basilar papilla fibers ( BEFs greater than 1000 Hz) remained similar in response to both BEF and non- BEF tones. These data reveal that the firing patterns and degrees of short-term adaptation of amphibian papilla fibers vary considerably across the tuning curve, whereas those of basilar papilla fibers remain relatively more constant with changes in stimulating frequency.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

对牛蛙(牛蛙,即北美牛蛙)第八神经纤维的放电模式进行了分析,以研究其在最佳兴奋频率(BEF)以及在每个纤维兴奋调谐曲线上下边界频率处对长时间纯音脉冲的反应。这些放电模式被用作每个纤维短期适应程度的指标。两栖乳头纤维(BEF为100 - 1000Hz)对BEF音调的放电模式表现出显著的多样性,从非常平坦或紧张型(在整个刺激持续时间内持续反应)到非常尖峰或相位型(主要或仅对刺激开始作出反应)。此外,单个纤维表现出的短期适应程度随刺激频率而变化。当刺激频率降低到BEF以下时,两栖乳头纤维的放电模式趋于变得更具紧张性;相反,当刺激频率增加到BEF以上时,放电模式要么与BEF时相比变化不大,要么变得更具相位性。在具有可比BEF的哺乳动物第八神经纤维的反应中,尚未报道类似的适应频率依赖性。基底乳头纤维(BEF大于1000Hz)对BEF和非BEF音调的反应,其放电模式保持相似。这些数据表明,两栖乳头纤维的放电模式和短期适应程度在调谐曲线上变化很大,而基底乳头纤维的放电模式随刺激频率变化相对更稳定。(摘要截断于250字)

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