Yokoyama J
Nihon Jibiinkoka Gakkai Kaiho. 1989 Nov;92(11):1911-24. doi: 10.3950/jibiinkoka.92.1911.
Under adequate stimulus intensities, the power spectra of normal auditory evoked brainstem responses (ABR) are mainly composed of three major parts, i.e. component A (0 approximately 350Hz), B (350-700Hz). and C (700-1200Hz). By means of digital filter using fast Fourier transform, three derived ABR waveforms consist of each component of the power spectrum were obtained and named component waves A, B, and C, respectively. For the purpose of discussing the possibilities of clinical use of derived ABR waveforms, these three component waveforms were analized in normal hearing subjects and patients with central disorders. In addition, the changes of these waveforms were studied in a series of lesion experiments of brainstem auditory pathway in cats. Before and after destructions of cochlear nerve, cochlear nuclei, superior olivary nuclei, lateral lemniscus and inferior colliculus, these three derived waveforms were compared. The following results were obtained: 1) In normal subjects, the changes in ABR waveforms according to the changes of the rise-time, interstimulus interval and frequency of the stimulus were mainly attributed to component wave C. 2) In patients with central disorders, component wave C were initially affected. Therefore, it seemed that the earliest waveform alterations in ABR occur in high frequency parts of the power spectrum. 3) The resultant experimental data in cats indicated that component wave C seems to be the most sensitive to reveal the lesion sites. 4) It was suggested that the analysis of ABR by three component waveforms was useful to detect the neurological disorders.
在适当的刺激强度下,正常听觉诱发脑干反应(ABR)的功率谱主要由三个主要部分组成,即成分A(0至350Hz)、B(350 - 700Hz)和C(700 - 1200Hz)。通过使用快速傅里叶变换的数字滤波器,获得了由功率谱的每个成分组成的三个衍生ABR波形,分别命名为成分波A、B和C。为了探讨衍生ABR波形临床应用的可能性,对听力正常的受试者和患有中枢神经系统疾病的患者的这三个成分波形进行了分析。此外,还在猫的一系列脑干听觉通路损伤实验中研究了这些波形的变化。在破坏蜗神经、蜗神经核、上橄榄核、外侧丘系和下丘前后,比较了这三个衍生波形。得到了以下结果:1)在正常受试者中,ABR波形随刺激的上升时间、刺激间隔和频率变化的改变主要归因于成分波C。2)在患有中枢神经系统疾病的患者中,成分波C首先受到影响。因此,ABR中最早的波形改变似乎发生在功率谱的高频部分。3)猫的实验数据表明,成分波C似乎对揭示病变部位最敏感。4)有人认为,通过三个成分波形分析ABR有助于检测神经系统疾病。