Boku Shokei, Riquimaroux Hiroshi, Simmons Andrea Megela, Simmons James A
Neurosensing and Bionavigation Research Center, Faculty of Life and Medical Sciences, Doshisha University, Kyotonabe 610-0321, Japan.
Department of Cognitive, Linguistic and Psychological Sciences, Brown University, Providence, Rhode Island 02912.
J Acoust Soc Am. 2015 Mar;137(3):1063-8. doi: 10.1121/1.4908212.
Auditory brainstem responses (ABR) to high frequencies encompassing the species' vocal repertoire were recorded from the inferior colliculus of the Japanese house bat, Pipistrellus abramus. Amplitudes of tone pips were systematically decreased to obtain a threshold of response at different tone frequencies. The compiled audiogram has a broad U-shape over the frequency range from 4 to 80 kHz, with low thresholds between 20 and 50 kHz. The most sensitive frequency region of 35-50 kHz occurs at the quasi-constant-frequency terminal portion of the bat's downsweeping frequency-modulated echolocation pulses. Good sensitivity extending down to 20 kHz includes the frequency range of the first harmonic of communication sounds. The ABR audiogram does not show distinct, narrow peaks of greater sensitivity at the dominant frequencies in species vocalizations. Latencies of peaks in ABR responses lengthened as stimuli were attenuated. At 40 kHz, response latencies traded with amplitude by -7 to -9 μs/dB, a value smaller than measured in another frequency-modulated bat using lower frequencies for echolocation. These results have implications for understanding the significance of amplitude-latency trading in a comparative context.
从日本伏翼(Pipistrellus abramus)的下丘记录了对涵盖该物种发声全部频率范围的高频声音的听觉脑干反应(ABR)。系统地降低纯音短声的幅度,以获得不同音调频率下的反应阈值。汇编的听力图在4至80千赫的频率范围内呈宽U形,在20至50千赫之间阈值较低。35至50千赫的最敏感频率区域出现在蝙蝠向下扫频的调频回声定位脉冲的准恒定频率末端部分。延伸至20千赫的良好灵敏度包括交流声音基频的频率范围。ABR听力图在物种发声的主频处未显示出明显、狭窄的更高灵敏度峰值。随着刺激减弱,ABR反应中峰值的潜伏期延长。在40千赫时,反应潜伏期与幅度的转换率为-7至-9微秒/分贝,该值小于在使用较低频率进行回声定位的另一种调频蝙蝠中测得的值。这些结果对于在比较背景下理解幅度-潜伏期转换的意义具有启示作用。