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人工耳蜗的强度辨别

Intensity discrimination with cochlear implants.

作者信息

Pfingst B E, Burnett P A, Sutton D

出版信息

J Acoust Soc Am. 1983 Apr;73(4):1283-92. doi: 10.1121/1.389277.

Abstract

Intensity difference limens were measured for various frequencies and intensities of sinusoidal and pulsatile electrical stimulation in monkeys with electrodes implanted in the scala tympani, scala vestibuli, modiolus, or middle ear. Difference limens decreased, as a function of initial stimulus intensity, from values of 1.5-3 dB near threshold to as low as 0.5 dB near the upper limit of the dynamic range. If sensation level was held constant, difference limens decreased as a function of frequency up to about 500 Hz, and then remained constant. They were similar across a variety of electrode placements and separations if differences in threshold and dynamic range were taken into account. However, difference limens measured in severely damaged ears were slightly smaller than those in moderately damaged ears. The near miss to Weber's law, characteristic of acoustic difference limens, was not seen with electrical stimuli. Differences limens for electrical stimuli were roughly one-half those for acoustic stimuli; thus, part of the deficit in dynamic range for electrical stimulation compared with acoustic stimulation is countered by the smaller intensity differences limens for electrical stimuli.

摘要

在将电极植入鼓阶、前庭阶、蜗轴或中耳的猴子身上,测量了正弦和脉动电刺激在各种频率和强度下的强度差阈。差阈作为初始刺激强度的函数而降低,从阈值附近的1.5 - 3分贝降至动态范围上限附近的低至0.5分贝。如果感觉水平保持恒定,差阈在频率高达约500赫兹时作为频率的函数而降低,然后保持恒定。如果考虑阈值和动态范围的差异,它们在各种电极位置和间距上是相似的。然而,在严重受损耳朵中测量的差阈略小于中度受损耳朵中的差阈。电刺激未出现声学差阈所特有的对韦伯定律的近似偏离。电刺激的差阈约为声学刺激差阈的一半;因此,与声学刺激相比,电刺激动态范围的部分不足被电刺激较小的强度差阈所抵消。

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