Akhoun Idrick, Moulin Annie, Jeanvoine Arnaud, Ménard Mikael, Buret François, Vollaire Christian, Scorretti Riccardo, Veuillet Evelyne, Berger-Vachon Christian, Collet Lionel, Thai-Van Hung
Université de Lyon, Lyon F-69003, France.
J Neurosci Methods. 2008 Nov 15;175(2):196-205. doi: 10.1016/j.jneumeth.2008.07.026. Epub 2008 Aug 28.
Speech elicited auditory brainstem responses (Speech ABR) have been shown to be an objective measurement of speech processing in the brainstem. Given the simultaneous stimulation and recording, and the similarities between the recording and the speech stimulus envelope, there is a great risk of artefactual recordings. This study sought to systematically investigate the source of artefactual contamination in Speech ABR response. In a first part, we measured the sound level thresholds over which artefactual responses were obtained, for different types of transducers and experimental setup parameters. A watermelon model was used to model the human head susceptibility to electromagnetic artefact. It was found that impedances between the electrodes had a great effect on electromagnetic susceptibility and that the most prominent artefact is due to the transducer's electromagnetic leakage. The only artefact-free condition was obtained with insert-earphones shielded in a Faraday cage linked to common ground. In a second part of the study, using the previously defined artefact-free condition, we recorded speech ABR in unilateral deaf subjects and bilateral normal hearing subjects. In an additional control condition, Speech ABR was recorded with the insert-earphones used to deliver the stimulation, unplugged from the ears, so that the subjects did not perceive the stimulus. No responses were obtained from the deaf ear of unilaterally hearing impaired subjects, nor in the insert-out-of-the-ear condition in all the subjects, showing that Speech ABR reflects the functioning of the auditory pathways.
言语诱发听觉脑干反应(言语ABR)已被证明是脑干言语处理的一种客观测量方法。鉴于同时进行刺激和记录,以及记录与言语刺激包络之间的相似性,存在产生伪迹记录的巨大风险。本研究旨在系统地调查言语ABR反应中伪迹污染的来源。在第一部分中,我们测量了针对不同类型的换能器和实验设置参数获得伪迹反应的声级阈值。使用西瓜模型来模拟人头对电磁伪迹的敏感性。结果发现电极之间的阻抗对电磁敏感性有很大影响,并且最突出的伪迹是由于换能器的电磁泄漏。唯一无伪迹的条件是使用屏蔽在与公共接地相连的法拉第笼中的插入式耳机获得的。在研究的第二部分中,使用先前定义的无伪迹条件,我们在单侧聋受试者和双侧听力正常受试者中记录了言语ABR。在一个额外的对照条件下,在不将用于传递刺激的插入式耳机插入耳朵(即受试者未感知到刺激)的情况下记录言语ABR。单侧听力受损受试者的聋耳以及所有受试者在耳机未插入耳朵的情况下均未获得反应,这表明言语ABR反映了听觉通路的功能。