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白唇乳突蛙和北美豹蛙第八神经纤维的声音和振动敏感性

Sound and vibration sensitivity of VIIIth nerve fibers in the frogs Leptodactylus albilabris and Rana pipiens pipiens.

作者信息

Christensen-Dalsgaard J, Narins P M

机构信息

Department of Biology, UCLA 90024.

出版信息

J Comp Physiol A. 1993;172(6):653-62. doi: 10.1007/BF00195391.

DOI:10.1007/BF00195391
PMID:8350283
Abstract
  1. Responses of 73 fibers to dorso-ventral vibration were recorded in the saccular and utricular branchlets of Rana pipiens pipiens using a ventral approach. The saccular branchlet contained nearly exclusively vibration-sensitive fibers (33 out of 36) with best frequencies (BFs) between 10 and 70 Hz, whereas none of the 37 fibers encountered in the utricular branchlet responded to dorso-ventral vibrations. 2. Using a dorsal approach we recorded from the VIIIth nerve near its entry in the brainstem and analyzed responses to both sound and vibration stimuli for 65 fibers in R. pipiens pipiens and 25 fibers in Leptodactylus albilabris. The fibers were classified as amphibian papilla (AP), basilar papilla (BP), saccular or vestibular fibers based on their location in the nerve. Only AP and saccular fibers responded to vibrations. The AP-fibers responded to vibrations from 0.01 cm/s2 and to sound from 40 dB SPL by increasing their spike rate. Best frequencies (BFs) ranged from 60 to 900 Hz, and only fibers with BFs below 500 Hz responded to vibrations. The fibers had identical BF's for sound and vibration. The saccular fibers had BFs ranging from 10 to 80 Hz with 22 fibers having BFs at 40-50 Hz. The fibers responded to sound from 70 dB SPL and to vibrations from 0.01 cm/s2. 3. No differences in sensitivity, tuning or phase-locking were found between the two species, except that most BP-fibers in R. pipiens pipiens had BFs from 1.2 to 1.4 kHz, whereas those in L. albilabris had BFs from 2.0 to 2.2 kHz (matching the energy peak of L. albilabris' mating call). 4. The finding that the low-frequency amphibian papilla fibers are extremely sensitive to vibrations raises questions regarding their function in the behaving animal. They may be substrate vibration receptors, respond to sound-induced vibrations or bone-conducted sound.
摘要
  1. 采用腹侧入路,在牛蛙的球囊和椭圆囊小分支中记录了73根纤维对背腹振动的反应。球囊小分支几乎只包含振动敏感纤维(36根中的33根),其最佳频率(BFs)在10至70赫兹之间,而在椭圆囊小分支中遇到的37根纤维均未对背腹振动产生反应。2. 采用背侧入路,我们在第八神经进入脑干处附近进行记录,并分析了牛蛙的65根纤维和白线侧褶蛙的25根纤维对声音和振动刺激的反应。根据纤维在神经中的位置,将其分为两栖乳头(AP)、基底乳头(BP)、球囊或前庭纤维。只有AP纤维和球囊纤维对振动有反应。AP纤维通过增加放电率对0.01厘米/秒²的振动和40分贝声压级的声音产生反应。最佳频率(BFs)范围为60至900赫兹,只有最佳频率低于500赫兹的纤维对振动有反应。这些纤维对声音和振动的最佳频率相同。球囊纤维的最佳频率范围为10至80赫兹,其中22根纤维的最佳频率在40至50赫兹。这些纤维对70分贝声压级的声音和0.01厘米/秒²的振动有反应。3. 除了牛蛙的大多数BP纤维的最佳频率为1.2至1.4千赫兹,而白线侧褶蛙的BP纤维的最佳频率为2.0至2.2千赫兹(与白线侧褶蛙求偶叫声的能量峰值匹配)外,在两种物种之间未发现敏感性、调谐或锁相方面的差异。4. 低频两栖乳头纤维对振动极其敏感这一发现,引发了关于它们在行为动物中的功能的问题。它们可能是基底振动感受器,对声音引起的振动或骨传导声音做出反应。

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本文引用的文献

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Do frogs communicate with seismic signals?青蛙会用地震信号进行交流吗?
Science. 1985 Jan 11;227(4683):187-9. doi: 10.1126/science.227.4683.187.
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Acute seismic sensitivity in the bullfrog ear.牛蛙耳部的急性地震敏感性。
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Directional hearing in the grass frog (Rana temporaria L.): I. Mechanical vibrations of tympanic membrane.草蛙(林蛙)的定向听觉:I. 鼓膜的机械振动
自然非生物土壤振动、降雨和风对蛙类求偶行为的影响:以圈养繁殖的蟾蜍(Alytes obstetricans)为试验对象。
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Anthropogenic substrate-borne vibrations impact anuran calling.人为基质传播的振动会影响蛙类的鸣叫。
Sci Rep. 2019 Dec 19;9(1):19456. doi: 10.1038/s41598-019-55639-0.
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Earless toads sense low frequencies but miss the high notes.无耳蟾蜍能感知低频,但听不到高频。
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Vestibular Evoked Myogenic Potential Produced by Bone-Conducted Stimuli: A Study on its Basics and Clinical Applications in Patients with Conductive and Sensorineural Hearing Loss and a Group with Vestibular Schawannoma.骨导刺激诱发的前庭诱发肌源性电位:关于其在传导性和感音神经性听力损失患者以及一组前庭神经鞘瘤患者中的基础及临床应用的研究
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