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A Physiological Signal Transmission Model to be Used for Specific Diagnosis of Cochlear Impairments

机译:用于特定诊断耳蜗损伤的生理信号传输模型

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Many of the sophisticated characteristics of human auditory system are attributed to cochlea. Also, most of patients with a hearing loss suffer from impairments that originate from cochlea (sensorineural). Despite this, today's clinical diagnosis methods do not probe the specific origins of such cochlear lesions. The aim of this research is to introduce a physiological signal transmission model to be clinically used as a tool for diagnosis of cochlear losses. This model enables simulation of different bio-mechano-electrical processes which occur in the auditory organ of Corti inside the cochlea. What makes this model different from many available computational models is its loyalty to physiology since the ultimate goal is to model each single physiological phenomenon. This includes passive BM vibration, outer hair cells' performances such as nonlinear mechanoelectrical transduction (MET), active amplifications by somatic motor, as well as vibration to neural conversion at the inner hair cells.
机译:人类听觉系统的许多复杂特征归因于耳蜗。此外,大多数听力损失的患者患有来自耳蜗(感觉物体)的损伤。尽管如此,今天的临床诊断方法不会探测这种耳蜗病变的特定起源。本研究的目的是引入生理信号传输模型,以临床用作诊断耳蜗损失的工具。该模型能够模拟在耳蜗内皮质觉器中发生的不同生物机械电气过程。是什么使得这种模型与许多可用的计算模型不同,这是它对生理学的忠诚度,因为最终目标是模拟每个生理现象。这包括被动BM振动,外毛细胞的性能,例如非线性机械转导(MET),通过体细胞马达的主动扩增,以及在内毛细胞处的神经转化振动。

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