In this work, we investigate the phenomenon of transverse resonance and transverse standing waves that occur within the cochlea of living organisms. It is demonstrated that the predisposing factor for their occurrence is the cochlear shape, which resembles a conical acoustic tube coiled into a spiral and exhibits non-uniformities on its internal surface. This cochlear structure facilitates the analysis of constituent sound signals akin to a spectrum analyzer, with a corresponding interpretation of the physical processes occurring in the auditory system. Additionally, we conclude that the cochlear duct's scala media, composed of a system of membranes and the organ of Corti, functions primarily as an information collection and amplification system along the cochlear spiral. Collectively, these findings enable the development of a novel, highly realistic wave model of the auditory system in living organisms based on a technocratic approach within the scientific context.
翻译:本文研究了生物耳蜗内发生的横向共振与横向驻波现象。研究表明,这些现象的产生诱因是耳蜗形态——其形似卷曲成螺旋状的锥形声学管道,且内表面存在非均匀性。这种耳蜗结构使得声音构成信号的分析方式类似于频谱分析仪,并对听觉系统中发生的物理过程进行了相应解释。此外,我们得出结论:由膜性系统和柯蒂氏器构成的耳蜗管中阶,主要功能是沿耳蜗螺旋进行信息收集与放大。综合这些发现,基于科学语境下的技术官僚方法,可构建生物听觉系统的新型高保真波动模型。