首页> 外文OA文献 >MICROSTRUCTURE AUDIOGRAMS AND PSYCHOPHYSICAL TUNING CURVES FROM SUBJECTS WITH SPONTANEOUS OTOACOUSTIC EMISSIONS (HEARING, ACOUSTICS).
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MICROSTRUCTURE AUDIOGRAMS AND PSYCHOPHYSICAL TUNING CURVES FROM SUBJECTS WITH SPONTANEOUS OTOACOUSTIC EMISSIONS (HEARING, ACOUSTICS).

机译:自发性自发声听觉(听觉,声学)对象的微观结构听觉描记图和心理生理曲线。

摘要

Spontaneous otoacoustic emissions (SOAEs) are narrowband continuous signals that can be recorded from the ear canals of humans in the absence of external stimulation. SOAEs have been detected in 30 to 50% of individuals whose hearing is within normal limits. They are believed to originate in the cochlea but the mechanism by which they are produced remains unknown. It has not been determined if SOAEs are an indication of subtle abnormality in the cochlea or if they are the result of an auditory system that is functioning normally. Most investigators agree, however, that an active source of energy within the cochlea is required for the generation of SOAEs. The objective of this study was to describe the effects of SOAEs on behavioral sensitivity and frequency selectivity. Eight subjects with SOAEs were evaluated. Sensitivity was measured using a Bekesy tracking method to obtain thresholds at 30-Hz intervals. Microstructure audiograms were obtained in this manner from the frequency region surrounding the SOAE and from the same frequency region in the other ear where no SOAE was detected. Frequency selectivity was assessed using a Bekesy tracking method to obtain psychophysical tuning curves (PTCs) from frequency regions with and without SOAEs. SOAEs were found to be associated consistently with threshold minima (regions of increased sensitivity) on the microstructure audiograms, although not all threshold minima corresponded to SOAE frequencies. PTCs centered at SOAE frequencies were characterized by higher Q10 values than PTCs from the same frequency region in the other ear or from a higher frequency region in the same ear. The high and low frequency slopes were not found to differ significantly when PTCs from frequency regions with and without SOAEs were compared. These results suggest that the differences between PTCs obtained from frequency regions with and without SOAES are restricted to the tips of the PTCs. Complex interactions among the SOAE, the probe tone, and the masker were thought to be responsible for the enhanced frequency selectivity observed near SOAE frequencies and manifested by higher Q10 values.
机译:自发性耳声发射(SOAE)是窄带连续信号,可以在没有外部刺激的情况下从人的耳道记录下来。在30到50%的听力在正常范围内的个体中已检测到SOAE。据信它们起源于耳蜗,但其产生机理尚不清楚。尚未确定SOAE是耳蜗中细微异常的征兆还是它们是正常听觉系统的结果。但是,大多数研究人员同意,SOAE的产生需要耳蜗内的主动能源。这项研究的目的是描述SOAE对行为敏感性和频率选择性的影响。对八名患有SOAE的受试者进行了评估。使用Bekesy跟踪方法测量灵敏度,以30 Hz的间隔获得阈值。以这种方式从SOAE周围的频率区域以及另一只耳朵中未检测到SOAE的相同频率区域获得了微结构听力图。使用Bekesy跟踪方法评估了频率选择性,以从具有和不具有SOAE的频率区域中获得心理物理调谐曲线(PTC)。尽管并非所有阈值最小值都对应于SOAE频率,但发现SOAE与微观结构听力图上的阈值最小值(灵敏度提高的区域)一致相关。与来自另一只耳朵相同频率区域或同一只耳朵较高频率区域的PTC相比,以SOAE频率为中心的PTC具有更高的Q10值。当比较带有和不带有SOAE的频率区域中的PTC时,发现高和低频斜率没有显着差异。这些结果表明,从有和无SOAES的频率区域获得的PTC之间的差异仅限于PTC的尖端。 SOAE,探测音和掩蔽器之间的复杂相互作用被认为是在SOAE频率附近观察到的频率选择性增强的原因,并表现出较高的Q10值。

著录项

  • 作者

    BRIGHT KATHRYN ELIZABETH.;

  • 作者单位
  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 en
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