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聋猫的电耳蜗刺激:心理物理学阈值与中枢听觉神经元阈值的比较

Electrical cochlear stimulation in the deaf cat: comparisons between psychophysical and central auditory neuronal thresholds.

作者信息

Beitel R E, Snyder R L, Schreiner C E, Raggio M W, Leake P A

机构信息

Department of Otolaryngology, University of California, San Francisco, California 94143-0732, USA.

出版信息

J Neurophysiol. 2000 Apr;83(4):2145-62. doi: 10.1152/jn.2000.83.4.2145.

Abstract

Cochlear prostheses for electrical stimulation of the auditory nerve ("electrical hearing") can provide auditory capacity for profoundly deaf adults and children, including in many cases a restored ability to perceive speech without visual cues. A fundamental challenge in auditory neuroscience is to understand the neural and perceptual mechanisms that make rehabilitation of hearing possible in these deaf humans. We have developed a feline behavioral model that allows us to study behavioral and physiological variables in the same deaf animals. Cats deafened by injection of ototoxic antibiotics were implanted with either a monopolar round window electrode or a multichannel scala tympani electrode array. To evaluate the effects of perceptually significant electrical stimulation of the auditory nerve on the central auditory system, an animal was trained to avoid a mild electrocutaneous shock when biphasic current pulses (0.2 ms/phase) were delivered to its implanted cochlea. Psychophysical detection thresholds and electrical auditory brain stem response (EABR) thresholds were estimated in each cat. At the conclusion of behavioral testing, acute physiological experiments were conducted, and threshold responses were recorded for single neurons and multineuronal clusters in the central nucleus of the inferior colliculus (ICC) and the primary auditory cortex (A1). Behavioral and neurophysiological thresholds were evaluated with reference to cochlear histopathology in the same deaf cats. The results of the present study include: 1) in the cats implanted with a scala tympani electrode array, the lowest ICC and A1 neural thresholds were virtually identical to the behavioral thresholds for intracochlear bipolar stimulation; 2) behavioral thresholds were lower than ICC and A1 neural thresholds in each of the cats implanted with a monopolar round window electrode; 3) EABR thresholds were higher than behavioral thresholds in all of the cats (mean difference = 6.5 dB); and 4) the cumulative number of action potentials for a sample of ICC neurons increased monotonically as a function of the amplitude and the number of stimulating biphasic pulses. This physiological result suggests that the output from the ICC may be integrated spatially across neurons and temporally integrated across pulses when the auditory nerve array is stimulated with a train of biphasic current pulses. Because behavioral thresholds were lower and reaction times were faster at a pulse rate of 30 pps compared with a pulse rate of 2 pps, spatial-temporal integration in the central auditory system was presumably reflected in psychophysical performance.

摘要

用于电刺激听神经的人工耳蜗(“电听觉”)可为重度失聪的成人和儿童提供听觉能力,在许多情况下还能恢复他们在无视觉线索时感知语音的能力。听觉神经科学的一个基本挑战是了解使这些失聪者恢复听力成为可能的神经和感知机制。我们开发了一种猫行为模型,使我们能够在同一失聪动物身上研究行为和生理变量。通过注射耳毒性抗生素致聋的猫被植入单极圆窗电极或多通道鼓阶电极阵列。为了评估听神经在感知上有意义的电刺激对中枢听觉系统的影响,训练动物在向其植入的耳蜗施加双相电流脉冲(0.2毫秒/相位)时避免轻微的皮肤电刺激。在每只猫身上估计心理物理学检测阈值和电听觉脑干反应(EABR)阈值。在行为测试结束时,进行急性生理实验,并记录下丘中央核(ICC)和初级听觉皮层(A1)中单个神经元和多神经元簇的阈值反应。行为和神经生理阈值根据同一失聪猫的耳蜗组织病理学进行评估。本研究的结果包括:1)在植入鼓阶电极阵列的猫中,最低的ICC和A1神经阈值实际上与鼓室内双极刺激的行为阈值相同;2)在每只植入单极圆窗电极的猫中,行为阈值低于ICC和A1神经阈值;3)在所有猫中,EABR阈值高于行为阈值(平均差异=6.5分贝);4)ICC神经元样本的动作电位累积数量随刺激双相脉冲的幅度和数量单调增加。这一生理结果表明,当用一串双相电流脉冲刺激听神经阵列时,ICC的输出可能在空间上跨神经元整合,在时间上跨脉冲整合。因为与2次/秒的脉冲率相比,30次/秒的脉冲率下行为阈值更低且反应时间更快,所以中枢听觉系统中的时空整合大概反映在心理物理学表现中。

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