Sisneros Joseph A, Bass Andrew H
Department of Neurobiology and Behavior, Cornell University, Ithaca, NY 14853, USA.
J Exp Biol. 2005 Aug;208(Pt 16):3121-31. doi: 10.1242/jeb.01742.
The auditory system of adult midshipman fish Porichthys notatus Girard is an important sensory receiver system used during intraspecific social communication to encode conspecific vocalizations, but the response properties and function of this system in the pre-adult stages are unknown. Midshipman fish, like other teleosts, use the saccule as the main acoustic end organ of the inner ear. In this study, we examined the discharge properties and the frequency response dynamics of auditory saccular afferent neurons in pre-adult midshipman (approximately 4-12 months of age) to determine whether encoding of auditory information, inclusive of conspecific vocalizations, changes across life history stages. Extracellular single unit recordings were made from saccular afferents while sound was presented via an underwater speaker. Comparisons with adult data show that the resting discharge rate and auditory threshold sensitivity increased with age/size, while temporal encoding of frequency did not show any significant shifts. The results indicate that the saccular afferents of juveniles, like those of non-reproductive adults, are best adapted to temporally encode the low frequency components (<or=100 Hz) of midshipman vocalizations. This report represents the first in vivo investigation of age-related changes in the encoding properties of individual auditory neurons for any fish species.
成年驼背鲈(Porichthys notatus Girard)的听觉系统是种内社交交流过程中用于编码同种发声的重要感觉接收系统,但该系统在成年前阶段的反应特性和功能尚不清楚。驼背鲈与其他硬骨鱼一样,将球囊作为内耳的主要听觉终器。在本研究中,我们检测了成年前驼背鲈(约4至12月龄)听觉球囊传入神经元的放电特性和频率反应动力学,以确定包括同种发声在内的听觉信息编码在整个生活史阶段是否发生变化。通过水下扬声器发出声音时,对球囊传入神经进行细胞外单单位记录。与成年数据的比较表明,静息放电率和听觉阈值敏感性随年龄/体型增加,而频率的时间编码未显示任何显著变化。结果表明,幼鱼的球囊传入神经与非繁殖期成年鱼的一样,最适合对驼背鲈发声的低频成分(≤100 Hz)进行时间编码。本报告是对任何鱼类个体听觉神经元编码特性的年龄相关变化进行的首次体内研究。