人工耳蜗中的三极配置和脉冲形状可减少时域中的通道相互作用

IF 2.5 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY Hearing Research Pub Date : 2024-01-19 DOI:10.1016/j.heares.2024.108953
Gunnar L Quass , Andrej Kral
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引用次数: 0

摘要

本研究利用人工耳蜗刺激,研究了电流聚焦和脉冲形状对阈值、动态范围、激励扩散和时域通道交互的影响。研究使用 6 通道动物人工耳蜗对 20 只成年豚鼠进行了刺激,并使用多电极阵列在听觉中脑进行了记录。在通过声刺激确定单个记录触点的最佳频率后,耳朵被震聋,人工耳蜗被植入耳蜗。植入体的位置由 X 射线控制。在两组实验中,分别使用单极、单极共地、双极和三极刺激进行了双相、假单相和单相刺激,从而比较了不同刺激策略对阈值、动态范围、激励扩散和通道交互的影响。在时域中对通道相互作用进行了研究,用脉冲串激活了两个电极,并量化了这些脉冲串在中脑中的锁相。研究结果表明,反应特性受多种因素影响,不同因素之间存在显著的相互作用。阈值随电流聚焦的增加而增加,但随假单相和单相脉冲形状的增加而降低。结果表明,电流聚焦(尤其是三极配置)可有效减少通道相互作用,但假单相和单相刺激以及相位持续时间编码也会减少通道相互作用。
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Tripolar configuration and pulse shape in cochlear implants reduce channel interactions in the temporal domain

The present study investigates effects of current focusing and pulse shape on threshold, dynamic range, spread of excitation and channel interaction in the time domain using cochlear implant stimulation. The study was performed on 20 adult guinea pigs using a 6-channel animal cochlear implant, recording was performed in the auditory midbrain using a multielectrode array. After determining the best frequencies for individual recording contacts with acoustic stimulation, the ear was deafened and a cochlear implant was inserted into the cochlea. The position of the implant was controlled by x-ray. Stimulation with biphasic, pseudomonophasic and monophasic stimuli was performed with monopolar, monopolar with common ground, bipolar and tripolar configuration in two sets of experiments, allowing comparison of the effects of the different stimulation strategies on threshold, dynamic range, spread of excitation and channel interaction. Channel interaction was studied in the temporal domain, where two electrodes were activated with pulse trains and phase locking to these pulse trains in the midbrain was quantified. The results documented multifactorial influences on the response properties, with significant interaction between factors. Thresholds increased with increasing current focusing, but decreased with pseudomonophasic and monophasic pulse shapes. The results documented that current focusing, particularly tripolar configuration, effectively reduces channel interaction, but that also pseudomonophasic and monophasic stimulation and phase duration intensity coding reduce channel interactions.

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来源期刊
Hearing Research
Hearing Research 医学-耳鼻喉科学
CiteScore
5.30
自引率
14.30%
发文量
163
审稿时长
75 days
期刊介绍: The aim of the journal is to provide a forum for papers concerned with basic peripheral and central auditory mechanisms. Emphasis is on experimental and clinical studies, but theoretical and methodological papers will also be considered. The journal publishes original research papers, review and mini- review articles, rapid communications, method/protocol and perspective articles. Papers submitted should deal with auditory anatomy, physiology, psychophysics, imaging, modeling and behavioural studies in animals and humans, as well as hearing aids and cochlear implants. Papers dealing with the vestibular system are also considered for publication. Papers on comparative aspects of hearing and on effects of drugs and environmental contaminants on hearing function will also be considered. Clinical papers will be accepted when they contribute to the understanding of normal and pathological hearing functions.
期刊最新文献
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