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Objective measurement of subjective tinnitus using the acoustic change complex

机译:使用声学变化复合体客观测量主观耳鸣

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摘要

At present, there is no objective method for diagnosing subjective sensorineural tinnitus. Recently, the acoustic change complex (ACC) has been used to evaluate neural detection of sounds. Thus, the present study aimed to examine whether the ACC can reflect cortical detection and discrimination of sounds matched with tinnitus frequencies. We hypothesized that the ACC to change stimuli matched with tinnitus frequencies would be decreased in tinnitus patients because the tinnitus interferes with the perception of acoustic changes. To test the hypothesis, 96 ears of normal-hearing (NH) tinnitus patients and controls were tested. Among the tinnitus patients, 33 ears with a tinnitus frequency of 8 kHz constituted the tinnitus group, and the remaining 63 ears with no experience of tinnitus were allocated to the control group. For the 4 kHz non-tinnitus matched frequency, a subset of tinnitus (n = 17) and NH (n = 47) subjects was tested. The acoustic stimuli were pure tones with a total duration of 500 ms consisting of a 1 kHz tone in the first 250 ms and a second tone of either 8 kHz or 4 kHz in the latter 250 ms. The normalized amplitude of the ACC (naACC) was calculated separately for the amplitude of the N1’-P2’ complex evoked by an 8 kHz or 4 kHz change stimulus and for the amplitude of the N1-P2 complex elicited by the initial 1 kHz background stimulus. Our results showed that the naACC to an 8 kHz stimulus in the tinnitus group was significantly smaller than those to 4 kHz and 8 kHz in normal controls. Additionally, in the tinnitus group, the naACC to 4 kHz was greater compared to 8 kHz. The receiver operating characteristic (ROC) curve analysis conducted for naACC to 8 kHz at UCL revealed a fair degree of diagnostic efficacy. Overall, our results indicated that the ACC to a change stimulus matched with the tinnitus frequency can provide an objective measure of frequency-specific tinnitus.
机译:目前,还没有客观的方法来诊断主观感觉神经性耳鸣。最近,声学变化复合体(ACC)已用于评估声音的神经检测。因此,本研究旨在检查ACC是否可以反映皮层检测和对与耳鸣频率匹配的声音的区分。我们假设在耳鸣患者中改变与耳鸣频率匹配的刺激的ACC会降低,因为耳鸣会干扰听觉变化。为了验证该假设,测试了96例正常听力(NH)耳鸣患者和对照组的耳朵。在耳鸣患者中,耳鸣频率为8 kHz的33耳构成耳鸣组,其余无耳鸣经验的63耳被分配为对照组。对于4 kHz非耳鸣匹配频率,测试了一组耳鸣(n = 17)和NH(n = 47)受试者。声音刺激是纯音,总持续时间为500毫秒,包括前250毫秒的1 kHz音和后250毫秒的第二个8 kHz或4 kHz音。对于由8 kHz或4 kHz变化刺激引起的N1'-P2'复合物的振幅以及由初始1 kHz背景引起的N1-P2复合物的振幅,分别计算ACC的归一化振幅(naACC)刺激。我们的结果表明,耳鸣组中对8 kHz刺激的naACC显着小于正常对照组中对4 kHz和8 kHz刺激的naACC。另外,在耳鸣组中,naACC至4 kHz大于8 kHz。在UCL上针对naACC至8 kHz进行的接收器工作特性(ROC)曲线分析显示了相当程度的诊断功效。总体而言,我们的结果表明,与耳鸣频率相匹配的刺激变化的ACC可以客观地测量特定频率的耳鸣。

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