首页> 美国卫生研究院文献>JARO: Journal of the Association for Research in Otolaryngology >Concurrent Development of the Head and Pinnae and the Acoustical Cues to Sound Location in a Precocious Species the Chinchilla (Chinchilla lanigera)
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Concurrent Development of the Head and Pinnae and the Acoustical Cues to Sound Location in a Precocious Species the Chinchilla (Chinchilla lanigera)

机译:在早熟物种龙猫(Chinchilla lanigera)中头部和耳廓以及声音提示的并发发展

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摘要

Sounds are filtered in a spatial- and frequency-dependent manner by the head and pinna giving rise to the acoustical cues to sound source location. These spectral and temporal transformations are dependent on the physical dimensions of the head and pinna. Therefore, the magnitudes of binaural sound location cues—the interaural time (ITD) and level (ILD) differences—are hypothesized to systematically increase while the lower frequency limit of substantial ILD production is expected to decrease due to the increase in head and pinna size during development. The frequency ranges of the monaural spectral notch cues to source elevation are also expected to decrease. This hypothesis was tested here by measuring directional transfer functions (DTFs), the directional components of head-related transfer functions, and the linear dimensions of the head and pinnae for chinchillas from birth through adulthood. Dimensions of the head and pinna increased by factors of 1.8 and 2.42, respectively, reaching adult values by ~6 weeks. From the DTFs, the ITDs, ILDs, and spectral shape cues were computed. Maximum ITDs increased by a factor of 1.75, from ~160 μs at birth (P0-1, first postnatal day) to 280 μs in adults. ILDs depended on source location and frequency exhibiting a shift in the frequency range of substantial ILD (>10 dB) from higher to lower frequencies with increasing head and pinnae size. Similar trends were observed for the spectral notch frequencies which ranged from 14.7–33.4 kHz at P0-1 to 5.3–19.1 kHz in adults. The development of the spectral notch cues, the spatial- and frequency-dependent distributions of DTF amplitude gain, acoustic directionality, maximum gain, and the acoustic axis were systematically related to the dimensions of the head and pinnae. The dimension of the head and pinnae in the chinchilla as well as the acoustical properties associated with them are mature by ~6 weeks.
机译:头部和耳廓以空间和频率相关的方式对声音进行过滤,从而产生声音提示,提示声源位置。这些频谱和时间上的转换取决于头部和耳廓的物理尺寸。因此,假设双耳声音定位提示的幅度(听觉时间(ITD)和声级(ILD)的差异)会系统地增加,而由于头顶和耳廓尺寸的增加,实际ILD产生的下限频率会降低在开发过程中。单声道频谱陷波提示到源高度的频率范围也有望减小。通过测量方向传递函数(DTF),与头部相关的传递函数的方向分量以及从出生到成年的龙猫的头部和耳廓的线性尺寸,对这一假设进行了检验。头部和耳廓的尺寸分别增加了1.8和2.42倍,达到了大约6周的成人值。从DTF中计算出ITD,ILD和频谱形状提示。最大ITD增加了1.75倍,从出生时的约160μs(P0-1,出生后第一天)到成人的280μs。 ILD取决于信号源的位置和频率,随着头部和耳廓尺寸的增加,ILD的实质频率范围(> 10 dB)从较高频率变为较低频率。在成年人中,频谱陷波频率的观察趋势相似,范围从P0-1的14.7-33.4kHz到5.3-19.1kHz。频谱陷波提示的发展,DTF幅度增益的空间和频率相关分布,声指向性,最大增益和声轴与头部和耳廓的尺寸系统地相关。黄鼠头部和耳廓的尺寸以及与之相关的声学特性在大约6周之前就已经成熟。

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