听觉诱发电位测量脑电数据采集系统的设计与构建

J. Gnecchi, L.R.S. Lara, J.C.H. Garcia
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引用次数: 10

摘要

为了提高年轻的低聋患者康复的机会,有必要在出生后的前3 ~ 6个月进行听力诊断检查。然而,例如,在墨西哥的农村地区,很少或根本没有获得专门设备的机会,通常会发现,直到患者的听力能力下降损害了他们的语言发展以及他们的社会和学校融合,才会诊断出患者。本文介绍了用于耳聋诊断的EEG- itm03脑电图听觉诱发电位数据采集系统的设计与构建。对5名健康年轻人的脑电图数据采集系统进行了测试,并将结果与使用商用设备(CADWELL 7200)获得的结果进行了比较。结果表明,即使在进行听力测试的非理想位置运行该系统,也可以检测到与听力过程相关的早期脑干诱发电位潜伏期。因此,结果表明,该设备可用于没有特殊设施(即隔音室)的诊所,作为常规诊断活动的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Construction of an EEG Data Acquisition System for Measurement of Auditory Evoked Potentials
In order to improve the chances of recovery of young patients suffering from hypoacusia, it is necessary to conduct hearing diagnostic tests during the first 3 to 6 moths after birth. However, for instance, in rural areas of Mexico where there is little or null access to specialized equipment, it is common to find that patients are not diagnosed until the patientspsila diminished hearing capacity has impaired their speech development as well as their and social and school integration. This paper presents the design and construction of the EEG-ITM03 EEG auditory evoked potential data acquisition system intended for diagnostic of hypoacusia. The EEG data acquisition system was tested on 5 healthy young adults and the results were compared to those obtained using a commercial equipment (CADWELL 7200). The results show that the early brain stem evoked potential latencies, related to the hearing process can be detected, even when the system is operated in non-ideal locations for conducting hearing tests. Thus the results suggest that the equipment can be used in clinics without special facilities (i.e. sound proof rooms) as part of routine diagnostic activities.
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