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使用虚拟耳机探索沙鼠(长爪沙鼠)的双耳听觉。

Exploring binaural hearing in gerbils (Meriones unguiculatus) using virtual headphones.

作者信息

Tolnai Sandra, Beutelmann Rainer, Klump Georg M

机构信息

Cluster of Excellence "Hearing4all", Animal Physiology and Behavior Group, Department of Neuroscience, School of Medicine and Health Sciences, Carl von Ossietzky University of Oldenburg, Oldenburg, Germany.

出版信息

PLoS One. 2017 Apr 10;12(4):e0175142. doi: 10.1371/journal.pone.0175142. eCollection 2017.

Abstract

The Mongolian gerbil (Meriones unguiculatus) has become a key species in investigations of the neural processing of sound localization cues in mammals. While its sound localization has been tested extensively under free-field stimulation, many neurophysiological studies use headphones to present signals with binaural localization cues. The gerbil's behavioral sensitivity to binaural cues, however, is unknown for the lack of appropriate stimulation paradigms in awake behaving gerbils. We close this gap in knowledge by mimicking a headphone stimulation; we use free-field loudspeakers and apply cross-talk cancellation techniques to present pure tones with binaural cues via "virtual headphones" to gerbils trained in a sound localization task. All gerbils were able to lateralize sounds depending on the interaural time or level difference (ITD and ILD, respectively). For ITD stimuli, reliable responses were seen for frequencies ≤2.9 kHz, the highest frequency tested with ITD stimuli. ITD sensitivity was frequency-dependent with the highest sensitivity observed at 1 kHz. For stimuli with ITD outside the gerbil's physiological range, responses were cyclic indicating the use of phase information when lateralizing narrow-band sounds. For ILD stimuli, reliable responses were obtained for frequencies ≥2 kHz. The comparison of ITD and ILD thresholds with ITD and ILD thresholds derived from gerbils' free-field performance suggests that ongoing ITD information is the main cue for sound localization at frequencies <2 kHz. At 2 kHz, ITD and ILD cues are likely used in a complementary way. Verification of the use of the virtual headphones suggests that they can serve as a suitable substitute for conventional headphones particularly at frequencies ≤2 kHz.

摘要

蒙古沙鼠(长爪沙鼠)已成为哺乳动物声音定位线索神经处理研究中的关键物种。虽然其声音定位已在自由场刺激下进行了广泛测试,但许多神经生理学研究使用耳机来呈现具有双耳定位线索的信号。然而,由于缺乏适用于清醒行为沙鼠的适当刺激范式,沙鼠对双耳线索的行为敏感性尚不清楚。我们通过模拟耳机刺激来填补这一知识空白;我们使用自由场扬声器并应用串扰消除技术,通过“虚拟耳机”向在声音定位任务中训练的沙鼠呈现具有双耳线索的纯音。所有沙鼠都能够根据双耳时间差或声级差(分别为ITD和ILD)对声音进行定位。对于ITD刺激,在频率≤2.9 kHz时观察到可靠反应,这是ITD刺激测试的最高频率。ITD敏感性与频率有关,在1 kHz时观察到最高敏感性。对于ITD超出沙鼠生理范围的刺激,反应呈周期性,表明在定位窄带声音时使用了相位信息。对于ILD刺激,在频率≥2 kHz时获得可靠反应。将ITD和ILD阈值与从沙鼠自由场表现得出的ITD和ILD阈值进行比较表明,持续的ITD信息是频率<2 kHz时声音定位的主要线索。在2 kHz时,ITD和ILD线索可能以互补方式使用。对虚拟耳机使用的验证表明,它们可以作为传统耳机的合适替代品,特别是在频率≤2 kHz时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45c8/5386270/ceba23a6e092/pone.0175142.g001.jpg

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