Acoustic change complex using short duration stimuli in normal hearing children: temporal resolution and frequency discrimination

IF 0.3 Q4 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY Hearing Balance and Communication Pub Date : 2022-05-15 DOI:10.1080/21695717.2022.2069976
W. El-Kholy, Dalia Mohammed Hassan, Yasmine El-Sayed El-Toukhy, N. Shafik
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Abstract

Abstract Objective Acoustic Change Complex (ACC) is a cortical auditory evoked potential elicited in response to a change in an ongoing sound. Since it is supposed to reflect auditory discrimination at the cortical level, recording of this potential has recently gained much attention. From a technical standpoint, the stimulus used should be long enough to accommodate the needed change. This research addresses the development and standardization of short duration tonal stimuli which can be implemented in most of the Evoked Potential (EP) equipment used in regular Audiology clinics. Methods Short duration tonal stimuli (500 msec.) were generated and edited using Audacity software. Temporal change was done using gap-in-tones stimuli (6, 10, 30 and 50 msec. in 1000 Hz tone). Frequency change was represented by frequency pairs (2%, 4%, 10% and 25% change from 1000 Hz base frequency). The developed stimuli were then used to generate ACC potential in 41 normal hearing children ranging in age from 2 to 10 years. A comparison was held between ACC response recorded using the different stimuli in reference to percent identifiability, morphology, latency and amplitude measures. Results Gap-in-tones at 10 msec. and 4% frequency change could elicit ACC response in 100% of subjects. ACC had the same morphology of the onset response in the majority of subjects, with longer latency and smaller amplitude. ACC amplitude was consistently affected by magnitude of change. Conclusion ACC was successfully recorded in 100% of normal hearing children using the developed short duration tonal stimuli for temporal change (10 msec.) and frequency change (4%). These stimuli can be uploaded in clinical EP equipment. ACC amplitude could be a better indicator of cortical discrimination compared to latency.
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使用短时间刺激的正常听力儿童声变化复合体:时间分辨和频率辨别
摘要目的声学变化复合体(Acoustic Change Complex, ACC)是一种皮层听觉诱发电位,是对持续声音变化的反应。由于它被认为反映了皮层水平上的听觉辨别,对这一电位的记录最近受到了广泛关注。从技术角度来看,所使用的刺激措施应该足够长,以适应所需的变化。本研究解决了短时间音调刺激的开发和标准化,该刺激可以在常规听力学诊所使用的大多数诱发电位(EP)设备中实施。方法采用Audacity软件生成500 msec的短时间音调刺激。使用音隙刺激(6、10、30和50毫秒)完成时间变化。以1000赫兹的音调)。频率变化由频率对表示(从1000 Hz基频变化2%、4%、10%和25%)。随后,41名年龄在2至10岁的正常听力儿童使用发育好的刺激产生ACC电位。比较使用不同刺激记录的ACC反应,参考百分比可识别性,形态学,潜伏期和振幅测量。结果在10 msec处出现音隙。4%的频率变化可以在100%的受试者中引起ACC反应。ACC在大多数受试者中具有相同的起效反应形态,潜伏期更长,振幅较小。ACC振幅始终受变化幅度的影响。结论采用时间变化(10 msec)和频率变化(4%)的短时间音调刺激,100%成功记录了正常听力儿童的ACC。这些刺激可以上传到临床心电设备中。与潜伏期相比,前扣带振幅可能是皮质区分的更好指标。
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来源期刊
Hearing Balance and Communication
Hearing Balance and Communication AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY-
CiteScore
1.10
自引率
0.00%
发文量
51
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