von Wedel H, von Wedel U C, Streppel M
Hals-Nasen-Ohren-Universitätsklinik Köln, FRG.
Acta Otolaryngol Suppl. 1990;476:161-6.
Time resolution ability is an important factor of auditory processing, especially in binaural hearing. In psychoacoustical and electrophysiological studies the time resolution of brief modulations of signal amplitude and frequency in monaural hearing, including gap detection ability, was analysed. To reveal the time resolution ability of the binaural hearing system, brief interaural modulations of signal amplitude, short changes of interaural time delay or noise coherence in broadband noise bursts were generated. The sensation levels of these short-lasting changes in the noise structure and the cortical evoked potentials were investigated in young normal hearing subjects and in the elderly. Thus age-dependent changes in monaural and binaural time resolution ability could be detected. For the monaural experiments, lengthened time constants of between 2-20 ms, depending on the degree of intensity or frequency modulation could be derived for older subjects. The binaural experiments were characterized by prolongation between 4-26 ms for short interaural signal delay changes. For both groups the time constants derived from the electrophysiological investigations were more prolonged, which might be explained by masking effects or habituation. Further electrophysiological investigations will be required to differentiate between time resolution processes of brief signal changes within the peripheral and central parts of the auditory system.
时间分辨能力是听觉处理的一个重要因素,在双耳听觉中尤为如此。在心理声学和电生理研究中,分析了单耳听觉中信号幅度和频率的短暂调制的时间分辨能力,包括间隙检测能力。为了揭示双耳听觉系统的时间分辨能力,产生了信号幅度的短暂双耳调制、双耳时间延迟的短暂变化或宽带噪声突发中的噪声相干性。在年轻的听力正常受试者和老年人中,研究了这些噪声结构中短暂变化的感觉水平和皮层诱发电位。因此,可以检测到单耳和双耳时间分辨能力的年龄依赖性变化。对于单耳实验,根据强度或频率调制的程度,老年受试者的时间常数延长至2-20毫秒。双耳实验的特点是,短暂的双耳信号延迟变化会延长4-26毫秒。对于两组来说,从电生理研究中得出的时间常数都更长,这可能是由掩蔽效应或习惯化来解释的。需要进一步的电生理研究来区分听觉系统外周和中枢部分内短暂信号变化的时间分辨过程。