May Bradford J, Anderson Michael, Roos Matthew
The Center for Hearing and Balance, Department of Otolaryngology - Head and Neck Surgery, Johns Hopkins University, Traylor Building, Room 521, 720 Rutland Avenue, Baltimore, MD 21205, USA.
Hear Res. 2008 Apr;238(1-2):77-93. doi: 10.1016/j.heares.2008.01.008. Epub 2008 Jan 26.
Previous investigations have shown that a subset of inferior colliculus neurons, which have been designated type O units, respond selectively to isolated features of the cat's head-related transfer functions (HRTFs: the directional transformation of a free-field sound as it propagates from the head to the eardrum). Based on those results, it was hypothesized that type O units would show enhanced spatial tuning in a virtual sound field that conveyed the full complement of HRTF-based localization cues. As anticipated, a number of neurons produced representations of virtual sound source locations that were spatially tuned, level tolerant, and effective under monaural conditions. Preferred locations were associated with spectral cues that complemented the highly individualized broadband inhibitory patterns of tuned neurons. That is, higher response magnitudes were achieved when spectral peaks coincided with excitatory influences at best frequency (BF: the most sensitive frequency) and spectral notches fell within flanking inhibitory regions. The directionally dependent modulation of narrowband ON-BF excitation by broadband OFF-BF inhibition was not a unique property of type O units.
先前的研究表明,下丘神经元的一个子集(已被指定为O型单位)对猫的头部相关传递函数(HRTFs:自由场声音从头部传播到鼓膜时的方向转换)的孤立特征有选择性反应。基于这些结果,有人推测,O型单位在传达基于HRTF的定位线索的完整补充的虚拟声场中会表现出增强的空间调谐。正如预期的那样,许多神经元产生了在空间上被调谐、对声级具有耐受性且在单耳条件下有效的虚拟声源位置表征。偏好位置与光谱线索相关,这些线索补充了调谐神经元高度个性化的宽带抑制模式。也就是说,当光谱峰值与最佳频率(BF:最敏感频率)处的兴奋性影响一致且光谱凹陷落在侧翼抑制区域内时,会获得更高的反应幅度。宽带BF外抑制对窄带BF兴奋的方向依赖性调制不是O型单位的独特属性。