Syka J, Melichar I, Ulehlová L
Hear Res. 1981 Jul;4(3-4):287-98. doi: 10.1016/0378-5955(81)90013-7.
Guinea pigs were exposed to 142 dB third-octave band of noise control at 1 kHz for 1 h. At different times after exposure the endocochlear potential (EP), the anoxic negative endocochlear potential (-EP), the concentration of K+ (K+e) and microphonic potentials were recorded in scala media in four cochlear turns. The remaining hair cells were counted in each animal. Immediately after the exposure, the EP and K+e decreased evenly in all four cochlear turns and gradually returned to normal physiological values in 5-20 days. When measured 20 days after the exposure, essentially normal EP and K+e values were observed, with an apicalwards decline, which was similar to that found along the cochlea in nonexposed animals. Abnormal increased EP was observed in some animals 20 days after the exposure in the first and second turns. In contrast to positive EP and K+e values, the anoxic negative EP attained less negative values in the second turn of exposed animals, i.e., in the turn where the narrow band noise exerted the major destructive effect. An almost normal distribution of hair cells and most negative EP values were found in the fourth turn. The distribution of persistent hair cells correlated positively with the values of the anoxic negative EP and amplitudes of the microphonic potentials. It is assumed that, in addition to the difference in K+ concentration between endolymph and perilymph, the anoxic negative EP is dependent upon the functional state of the organ of Corti.
将豚鼠暴露于142分贝、1千赫的1/3倍频程噪声控制下1小时。在暴露后的不同时间,记录四个耳蜗转中蜗管内的内耳蜗电位(EP)、缺氧性负内耳蜗电位(-EP)、钾离子浓度(K+e)和微音器电位。对每只动物剩余的毛细胞进行计数。暴露后立即观察到,所有四个耳蜗转中的EP和K+e均均匀下降,并在5 - 20天内逐渐恢复到正常生理值。在暴露后20天测量时,观察到EP和K+e值基本正常,但呈向顶下降趋势,这与未暴露动物耳蜗中的情况相似。在暴露后20天,部分动物的第一和第二转中观察到EP异常升高。与正的EP和K+e值相反,暴露动物第二转中的缺氧性负EP负值较小,即窄带噪声产生主要破坏作用的那一转。在第四转中发现毛细胞分布几乎正常且EP值最负。存活毛细胞的分布与缺氧性负EP值和微音器电位幅度呈正相关。据推测,除了内淋巴和外淋巴之间钾离子浓度的差异外,缺氧性负EP还取决于柯蒂氏器的功能状态。