首页> 外文期刊>The Journal of Experimental Biology >Live CT imaging of sound reception anatomy and hearing measurements in the pygmy killer whale, Feresa attenuata
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Live CT imaging of sound reception anatomy and hearing measurements in the pygmy killer whale, Feresa attenuata

机译:侏儒虎鲸Feresa detecta的声音接收解剖和听力测量的实时CT成像

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摘要

In June 2008, two pygmy killer whales (Feresa attenuata) were stranded alive near Boca Grande, FL, USA, and were taken into rehabilitation. We used this opportunity to learn about the peripheral anatomy of the auditory system and hearing sensitivity of these rare toothed whales. Three-dimensional (3-D) reconstructions of head structures from X-ray computed tomography (CT) images revealed mandibles that were hollow, lacked a bony lamina medial to the pan bone and contained mandibular fat bodies that extended caudally and abutted the tympanoperiotic complex. Using auditory evoked potential (AEP) procedures, the modulation rate transfer function was determined. Maximum evoked potential responses occurred at modulation frequencies of 500 and 1000. Hz. The AEP-derived audiograms were U-shaped. The lowest hearing thresholds occurred between 20 and 60. kHz, with the best hearing sensitivity at 40. kHz. The auditory brainstem response (ABR) was composed of seven waves and resembled the ABR of the bottlenose and common dolphins. By changing electrode locations, creating 3-D reconstructions of the brain from CT images and measuring the amplitude of the ABR waves, we provided evidence that the neuroanatomical sources of ABR waves I, IV and VI were the auditory nerve, inferior colliculus and the medial geniculate body, respectively. The combination of AEP testing and CT imaging provided a new synthesis of methods for studying the auditory system of cetaceans.
机译:2008年6月,在美国佛罗里达州的博卡格兰德附近,两只活泼的侏儒虎鲸(Feresa tensa)被困住,并被送去康复。我们利用这个机会来了解听觉系统的周围解剖结构以及这些稀有齿鲸的听力敏感性。通过X射线计算机断层扫描(CT)图像对头部结构进行三维(3-D)重建,显示下颌骨是空心的,缺少到椎骨内侧的骨板,并且包含下颌脂肪体,其尾状延伸并邻接鼓膜复杂性。使用听觉诱发电位(AEP)程序,确定调制率传递函数。最大诱发电位响应出现在500和1000 Hz的调制频率上。源自AEP的听力图呈U形。最低的听力阈值发生在20至60. kHz之间,最佳的听力灵敏度为40. kHz。听觉脑干反应(ABR)由七个波组成,类似于宽吻海豚和普通海豚的ABR。通过改变电极位置,从CT图像创建大脑的3-D重建并测量ABR波的振幅,我们提供了证据,证明ABR波I,IV和VI的神经解剖学来源是听神经,下睫状肌和内侧膝状体。 AEP测试和CT成像的结合为研究鲸类听觉系统提供了一种新的方法综合方法。

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