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Intracellular studies of hair cells in the mammalian cochlea.

机译:哺乳动物耳蜗中毛细胞的细胞内研究。

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摘要

1. Intracellular recordings were made from inner hair cells in the first turn of the guinea-pig cochlea, the recording sites being confirmed by the injection of Procion yellow dye and subsequent histology. 2. The receptor potential, in response to a pure tone burst, consisted of an AC response which followed the wave form of the stimulus and was analogous to the extracellularly recorded cochlear microphonic and a depolarizating DC response which followed the envelope of the tone burst and was analogous to the extracellularly recorded summating potential. 3. The DC response was broadly tuned at high sound pressure having a maximal amplitude of 27 mV at a sound pressure level of ca. 100 db; however the bandwidth of the response was reduced at lower sound pressure level. Isoamplitude curves for the DC response were indistinguishable from the threshold curves for auditory nerve fibres. 4. The AC response was tuned in a similar fashion to the DC response except that it was attenuated at 6-9 db/octave with respect to the DC response. It is suggested that this difference was due to the effect of membrane capacitance and resistance on the AC response. In contrast the extracellularly recorded AC component was not subject to this attenuation. 5. The total resistance and capacitance in three cells were found to be 46-61 Momega and 7.8-15.8 muF respectively. 6. Intracellular resistance changes were measured during sound stimulation, the resistance change being proportional to the DC receptor potential, indicating constant current flow through the hair cell. The current varied between 0.37 and 0.81 nA between cells. The time constant for seven cells was found to lie between 0.31 and 0.76 msec. 7. A map of the basilar membrane showing position of hair cells against characteristic frequency corresponded to the cut-off frequencies of the basilar membrane mechanical measurements and the innervation sites of spiral ganglion cells.
机译:1.在豚鼠耳蜗的第一个回合中,由内部毛细胞进行细胞内记录,记录部位通过注射Procion黄色染料和随后的组织学证实。 2.响应纯音猝发的受体电位由跟随刺激波形的交流响应和类似于细胞外记录的耳蜗微音的去极化直流响应组成,并伴随着猝发的包络而消极化的直流响应。与细胞外记录的汇总潜力类似。 3.直流响应在高声压下进行了广泛的调谐,声压级为ca时最大振幅为27 mV。 100分贝;但是,响应的带宽在较低的声压级下会降低。 DC反应的等幅曲线与听觉神经纤维的阈值曲线没有区别。 4. AC响应以与DC响应类似的方式进行调谐,除了相对于DC响应以6-9 db / octave衰减。提示这种差异是由于膜电容和电阻对交流响应的影响。相反,细胞外记录的AC成分没有受到这种衰减。 5.三个电池的总电阻和电容分别为46-61 Momega和7.8-15.8μF。 6.在声音刺激期间测量细胞内电阻变化,该电阻变化与DC受体电势成比例,表明恒定电流流过毛细胞。电池之间的电流在0.37至0.81 nA之间变化。发现七个电池的时间常数在0.31到0.76毫秒之间。 7.基底膜图,显示了毛细胞相对于特征频率的位置,对应于基底膜机械测量的截止频率和螺旋神经节细胞的神经支配部位。

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