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选择性卡铂诱导内毛细胞损失对南美栗鼠时间整合的影响。

Effect of Selective Carboplatin-Induced Inner Hair Cell Loss on Temporal Integration in Chinchillas.

机构信息

School of Behavioral and Brain Sciences, The University of Texas at Dallas, Dallas, TX, USA.

出版信息

J Assoc Res Otolaryngol. 2022 Jun;23(3):379-389. doi: 10.1007/s10162-022-00843-5. Epub 2022 Apr 4.

Abstract

Integration of acoustic information over time is essential for processing complex stimuli, such as speech, due to its continuous variability along the time domain. In both humans and animals, perception of acoustic stimuli is a function of both stimulus intensity and duration. For brief acoustic stimuli, as duration increases, thresholds decrease by approximately 3 dB for every doubling in duration until stimulus duration reaches 500 ms, a phenomenon known as temporal integration. Although hearing loss and damage to outer hair cells (OHC) have been shown to alter temporal integration in some studies, the role of cochlear inner hair cells (IHC) on temporal integration is unknown. Because IHC transmit nearly all acoustic information to the central auditory system and are believed to code both intensity and timing information, these sensory cells likely play a critical role in temporal integration. To test the hypothesis that selective IHC loss degrades the temporal integration function, behaviorally trained chinchillas were treated with carboplatin, a drug known to selectively destroy IHC with little to no effect on OHC in this species. Pure-tone thresholds were assessed across frequencies (1, 2, 4, 8, 12 kHz) as a function of signal duration (500, 100, 50, 10, and 5 ms). Baseline testing showed a significant effect of duration on thresholds. Threshold decreased as a function of increasing duration, as expected. Carboplatin treatment (75 mg/kg) produced a moderate to severe loss of IHC (45-85%) with little-to-no loss of OHC. Contrary to our hypothesis, post-carboplatin temporal integration thresholds showed no significant differences from baseline regardless of stimulus duration or frequency. These data suggest that few IHC are necessary for temporal integration of simple stimuli. Temporal integration may be sensitive to loss of OHC and loss of cochlear non-linearities but does not appear to be sensitive to selective IHC loss.

摘要

时间上的声学信息整合对于处理复杂刺激(如语音)至关重要,因为其在时域上具有连续可变性。在人类和动物中,对声学刺激的感知既是强度的函数,也是持续时间的函数。对于短暂的声学刺激,随着持续时间的增加,阈值会在每增加一倍持续时间时降低约 3 分贝,直到刺激持续时间达到 500 毫秒,这一现象称为时间整合。尽管已有研究表明听力损失和外毛细胞(OHC)损伤会改变某些研究中的时间整合,但耳蜗内毛细胞(IHC)对时间整合的作用尚不清楚。由于 IHC 几乎将所有声学信息传递到中枢听觉系统,并且被认为编码强度和时间信息,因此这些感觉细胞可能在时间整合中发挥关键作用。为了测试选择性 IHC 丧失会降低时间整合功能的假设,经过行为训练的卷尾猴用卡铂进行了治疗,这种药物已知在该物种中对 IHC 具有选择性破坏作用,而对 OHC 的影响很小或没有。通过信号持续时间(500、100、50、10 和 5 毫秒)评估纯音阈值在不同频率(1、2、4、8 和 12 kHz)下的情况。基线测试显示出持续时间对阈值的显著影响。阈值随着持续时间的增加而降低,这是预期的。卡铂治疗(75 mg/kg)导致 IHC 中度至重度丧失(45-85%),而 OHC 几乎没有丧失。与我们的假设相反,无论刺激持续时间或频率如何,卡铂后时间整合阈值与基线相比均无显着差异。这些数据表明,少量的 IHC 对于简单刺激的时间整合是必要的。时间整合可能对 OHC 的丧失和耳蜗非线性的丧失敏感,但似乎对选择性 IHC 的丧失不敏感。

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