Müller-Wehlau Matthias, Mauermann Manfred, Dau Torsten, Kollmeier Birger
Medizinische Physik, Universität Oldenburg, D-26111 Oldenburg, Germany.
J Acoust Soc Am. 2005 May;117(5):3016-27. doi: 10.1121/1.1867932.
This study investigates the acoustic reflex threshold (ART) dependency on stimulus phase utilizing low-level reflex audiometry [Neumann et al., Audiol. Neuro-Otol. 1, 359-369 (1996)]. The goal is to obtain optimal broadband stimuli for elicitation of the acoustic reflex and to obtain objective determinations of cochlear hearing loss. Three types of tone complexes with different phase characteristics were investigated: A stimulus that compensates for basilar-membrane dispersion, thus causing a large overall neural synchrony (basilar-membrane tone complex-BMTC), the temporally inversed stimulus (iBMTC), and random-phase tone complexes (rTC). The ARTs were measured in eight normal-hearing and six hearing-impaired subjects. Five different conditions of peak amplitude and stimulus repetition rate were used for each stimulus type. The results of the present study suggest that the ART is influenced by at least two different factors: (a) the degree of synchrony of neural activity across frequency, and (b) the fast-acting compression mechanism in the cochlea that is reduced in the case of a sensorineural hearing loss. The results allow a clear distinction of the two subjects groups based on the different ART for the utilized types and conditions of the stimuli. These differences might be useful for objective recruitment detection in clinical diagnostics.
本研究利用低水平反射测听法[Neumann等人,《听力学与神经耳科学》1,359 - 369(1996)],研究声反射阈值(ART)对刺激相位的依赖性。目标是获得用于诱发声反射的最佳宽带刺激,并获得耳蜗性听力损失的客观判定。研究了三种具有不同相位特征的音调复合体:一种补偿基底膜弥散从而引起较大整体神经同步性的刺激(基底膜音调复合体 - BMTC)、时间反转刺激(iBMTC)和随机相位音调复合体(rTC)。在8名听力正常和6名听力受损的受试者中测量了ART。每种刺激类型使用了5种不同的峰值幅度和刺激重复率条件。本研究结果表明,ART受至少两个不同因素影响:(a)跨频率神经活动的同步程度,以及(b)耳蜗中快速作用的压缩机制,在感音神经性听力损失情况下该机制会减弱。结果允许根据所使用的刺激类型和条件下不同的ART对两组受试者进行明确区分。这些差异可能有助于临床诊断中的客观募集检测。