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正常耳与声学创伤耳中的前掩蔽听觉脑干诱发电位调谐曲线。

Forward-masking AP tuning curves in normal and in acoustically traumatized ears.

作者信息

Gorga M P, Abbas P J

出版信息

J Acoust Soc Am. 1981 Nov;70(5):1322-30. doi: 10.1121/1.387146.

Abstract

Compound action potential tuning curves (APTC's) were developed in a series of normal and acoustically traumatized cats. Probe frequency was set to 4 kHz ad probe level was set to 15-20 dB SL re: AP threshold for both normal and impaired ears. In addition, normal ears received the probe tone at a level of 70-75 dB SPL. Probe-elicited AP amplitude was measured in a forward-masking paradigm as a function of both masker level and frequency. Results indicated that the sharpness of the APTC's (defined by Q 10) was unaffected by acoustic trauma. The relative difference between required masker level on the tail and at the tip was reduced for the noise-damaged ears. Thus sharpness around the tip was essentially normal yet low-frequency energy was more effective at masking high-frequency region in these impaired ear. When slope of the decrement in normalized, probe-elicited AP amplitude-versus-masker level functions are calculated for different frequency maskers, normal ears showed a frequency dependence such that low-frequency maskers resulted in the steepest slopes with progressively less steep slopes as masker frequency increased. Some of the noise-damaged ears did not show this same frequency dependence. Specifically, the slopes of these functions were not as different for low-and high-frequency maskers. These slope data may suggest that nonlinearities, present in the normal system, may be reduced as a consequence of this cochlear insult.

摘要

在一系列正常和遭受声学创伤的猫身上绘制了复合动作电位调谐曲线(APTC)。将探测频率设置为4 kHz,将探测强度设置为相对于正常和受损耳朵的动作电位阈值为15 - 20 dB SL。此外,正常耳朵接收强度为70 - 75 dB SPL的探测音。在正向掩蔽范式中,测量探测诱发的动作电位幅度作为掩蔽声强度和频率的函数。结果表明,APTC的锐度(由Q 10定义)不受声学创伤的影响。对于噪声损伤的耳朵,尾部和尖端所需掩蔽声强度之间的相对差异减小。因此,尖端周围的锐度基本正常,但在这些受损耳朵中,低频能量在掩蔽高频区域时更有效。当针对不同频率的掩蔽声计算归一化的探测诱发动作电位幅度与掩蔽声强度函数的衰减斜率时,正常耳朵表现出频率依赖性,即低频掩蔽声导致最陡的斜率,随着掩蔽声频率增加,斜率逐渐变缓。一些噪声损伤的耳朵没有表现出这种相同的频率依赖性。具体而言,这些函数对于低频和高频掩蔽声的斜率差异不大。这些斜率数据可能表明,正常系统中存在的非线性可能由于这种耳蜗损伤而减少。

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