Mulsow Jason, Finneran James J, Houser Dorian S
National Marine Mammal Foundation, 2240 Shelter Island Drive, #200, San Diego, California 92106.
U.S. Navy Marine Mammal Program, Space and Naval Warfare Systems Center Pacific, Code 71510, 53560 Hull Street, San Diego, California 92152.
J Acoust Soc Am. 2014 Sep;136(3):1402. doi: 10.1121/1.4892795.
Suction cup transducers, also known as "jawphones," are now commonly used to deliver acoustic stimuli to odontocete cetaceans during hearing studies. It is often assumed that stimulation is primarily limited to the ear ipsilateral to a jawphone; however, the actual differences in auditory stimulation at the two ears are not well understood. To examine these differences, auditory evoked potentials (AEPs) were simultaneously recorded from both ears during jawphone stimulation in two bottlenose dolphins. The amplitudes and latencies of auditory nerve responses (ANRs) elicited by broadband clicks were measured as functions of stimulus level and used to estimate the difference in received level and interaural time difference (ITD) between the two ears. Results indicated that clicks received at the ear contralateral to the jawphone were attenuated by approximately 20 dB relative to the level at the ipsilateral ear. The ITD between the contralateral and ipsilateral ears was 70 μs for the first dolphin and 118 μs for the second dolphin. While these results provide support for a notable degree of acoustic isolation of the ears for jawphone-delivered stimuli, there are implications for studies involving processes such as sound localization and unilateral hearing loss.
吸盘式换能器,也被称为“颚式耳机”,目前在听力研究中常用于向齿鲸类鲸目动物传递声学刺激。人们通常认为刺激主要局限于与颚式耳机同侧的耳朵;然而,两只耳朵在听觉刺激方面的实际差异尚未得到充分了解。为了研究这些差异,在两只宽吻海豚接受颚式耳机刺激期间,同时记录了它们两只耳朵的听觉诱发电位(AEP)。测量了由宽带点击诱发的听神经反应(ANR)的振幅和潜伏期,并将其作为刺激水平的函数,用于估计两只耳朵之间接收水平和耳间时间差(ITD)的差异。结果表明,与颚式耳机对侧耳朵接收到的点击相比,同侧耳朵接收到的点击强度衰减了约20分贝。第一只海豚对侧耳朵和同侧耳朵之间的ITD为70微秒,第二只海豚为118微秒。虽然这些结果支持了对于颚式耳机传递的刺激,耳朵存在显著程度的声学隔离这一观点,但对于涉及声音定位和单侧听力损失等过程的研究也有启示意义。