Martignoli Stefan, Gomez Florian, Stoop Ruedi
1] Institute of Neuroinformatics, University of Zurich and ETH Zurich, Winterthurerstrasse 190, CH-8057 Zurich, Switzerland [2] Department of Mathematics, University of Applied Sciences HSR Rapperswil, Oberseestrasse 10 CH-8640 Rapperswil, Switzerland.
Sci Rep. 2013;3:2676. doi: 10.1038/srep02676.
Pitch is a complex hearing phenomenon that results from elicited and self-generated cochlear vibrations. Read-off vibrational information is relayed higher up the auditory pathway, where it is then condensed into pitch sensation. How this can adequately be described in terms of physics has largely remained an open question. We have developed a peripheral hearing system (in hardware and software) that reproduces with great accuracy all salient pitch features known from biophysical and psychoacoustic experiments. At the level of the auditory nerve, the system exploits stochastic resonance to achieve this performance, which may explain the large amount of noise observed in the working auditory nerve.
音高是一种复杂的听觉现象,它由诱发的和自发产生的耳蜗振动所导致。读出的振动信息在听觉通路中向上传递,然后在那里被浓缩为音高感觉。如何从物理学角度充分描述这一现象在很大程度上仍是一个悬而未决的问题。我们已经开发出一种外周听觉系统(包括硬件和软件),它能极其精确地再现生物物理和心理声学实验中已知的所有显著音高特征。在听觉神经层面,该系统利用随机共振来实现这一性能,这或许可以解释在工作中的听觉神经中观察到的大量噪声。