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外毛细胞缺失时听觉神经反应的特性。

Properties of auditory nerve responses in absence of outer hair cells.

作者信息

Dallos P, Harris D

出版信息

J Neurophysiol. 1978 Mar;41(2):365-83. doi: 10.1152/jn.1978.41.2.365.

Abstract
  1. Recordings were made from chinchilla auditory nerve fibers after portions of the cochlear outer hair cell (OHC) population were destroyed with the antibiotic kanamycin. In most cases the inner hair cell (IHC) population was completely preserved as determined by phase-contrast microscopy. We presume that the remaining IHCs are functionally normal, and thus that recordings obtained from fibers originating from the lesioned cochlear segment reflect IHC behavior. 2. Behavioral thresholds were measured for all animals both before and after the production of the cochlear lesion. The audiograms and the histological evaluation of the ears were the basis for assessing whether a particular fiber originated in a normal, pathological (shifted threshold; IHC only), or border region. These criteria also identified the animals that sustained IHC damage together with the destruction of part of the OHC population. Only the data obtained from those fibers which probably originated from the OHC-free segment of the cochlea are considered in detail. 3. Fibers whose characteristic frequency (CF) identified them as belonging to the normal (audiometrically and histologically) region, were found to be normal in all respects. 4. Fibers from the border region (where the audiogram has a steep slope between normal and hearing-loss regions probably corresponding to the segment where OHC loss progresses from less than 10% to more than 90%) had very complex response patterns. Their frequency threshold curves (FTC) showed great variability. In general, the closer the fiber was to the fully developed lesion, the more abnormal its FTC became. 5. Those units that were concluded to have originated from the OHC-free part of the cochlea could be divided into three categories on the basis of the shape of their FTCs. A small fraction had very broad tuning (9%). The majority (53%) had approximately normal tail segment, normal bandwidth of the tip segment, and highly elevated threshold at CF. A group of fibers (38%) could not be assigned a CF. Probably the FTC of most of these latter fibers are similar to those of the previous group, but the sharply tuned short tip segment was either missed or was not reachable on account of its extremely high threshold level. 6. Such indexes of fiber response as latency, spontaneous rate, and time pattern (PST histograms) were not affected by the loss of OHCs. 7. On the basis of the data and of the assumptions made it was suggested that outer hair cells provide a frequency-dependent sensitizing influence to the inner hair cells. The frequency dependence could best be expressed as a flat-topped band pass characteristic.
摘要
  1. 在使用抗生素卡那霉素破坏部分耳蜗外毛细胞(OHC)后,对毛丝鼠的听神经纤维进行了记录。在大多数情况下,通过相差显微镜观察确定内毛细胞(IHC)群体完全保留。我们推测剩余的内毛细胞功能正常,因此从受损耳蜗节段发出的纤维获得的记录反映了内毛细胞的行为。2. 在制作耳蜗损伤前后,对所有动物都测量了行为阈值。听力图和耳朵的组织学评估是评估特定纤维是否起源于正常、病理(阈值改变;仅内毛细胞)或边界区域的基础。这些标准还确定了那些内毛细胞受损且部分外毛细胞群体被破坏的动物。仅详细考虑从可能起源于耳蜗无外毛细胞节段的那些纤维获得的数据。3. 其特征频率(CF)表明它们属于正常(听力图和组织学)区域的纤维,在各方面均正常。4. 来自边界区域(听力图在正常和听力损失区域之间有陡峭斜率,可能对应于外毛细胞损失从小于10%进展到大于90%的节段)的纤维具有非常复杂的反应模式。它们的频率阈值曲线(FTC)显示出很大的变异性。一般来说,纤维离完全形成的损伤越近,其FTC就越异常。5. 根据其FTC的形状,那些被推断起源于耳蜗无外毛细胞部分的单位可分为三类。一小部分具有非常宽的调谐(9%)。大多数(53%)具有大致正常的尾段、尖端段的正常带宽以及特征频率处的阈值高度升高。一组纤维(38%)无法确定其特征频率。可能这些后一组纤维中的大多数FTC与前一组相似,但尖锐调谐的短尖端段要么未被检测到,要么由于其极高的阈值水平而无法触及。6. 纤维反应的指标,如潜伏期、自发率和时间模式(PST直方图)不受外毛细胞损失的影响。7. 根据这些数据和所作的假设,有人提出外毛细胞对内毛细胞提供频率依赖性的敏化影响。频率依赖性最好表示为平顶带通特性。

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