Canlon B, Marklund K, Borg E
Department of Physiology II, Karolinska Institutet, Stockholm, Sweden.
J Acoust Soc Am. 1993 Dec;94(6):3232-43. doi: 10.1121/1.407229.
Measures of the auditory brain-stem response (ABR), distortion product otoacoustic emission (2f1-f2), hair cell loss, and forward masked tuning curves were obtained from waltzing guinea pigs and their age-matched controls at postnatal day 2, 9, 15, and 30. A mild ABR threshold shift (10-15 dB) is seen by 2 days postnatal and gradually increases to a more severe threshold shift (40-50 dB) by postnatal day 15. Already by 30 days the auditory brain-stem response, being beyond the output of the instrumentation, could not be elicited. The mean distortion product otoacoustic emission (DPOE) amplitude as a function of f1 amplitude for the postnatal day 2, 9, and 15 waltzing guinea pigs were only between 3 and 8 dB below the control values for stimulus levels below 65 dB SPL. The DPOE audiogram constructed for the waltzing guinea pigs shows no more than an 8-dB mean difference from the control values when the intensity of f1 was 50 dB SPL, and no more than 10 dB when f1 was 60 dB SPL. Analysis of the individual cases revealed that the DPOE amplitude could be greater than control values. On the contrary, when f1 stimulus levels were below 65 dB SPL, DPOEs could not be detected for the postnatal day 30 waltzing guinea pigs. At stimulus levels above 65 dB SPL, DPOEs could be recorded yet these responses were depressed from control values by 10 to 25 dB. Analysis of surface preparations of the organ of Corti from the day 15 waltzing guinea pig reveals that the prominent alteration occurs on the third row outer hair cells. To a lesser extent, the second row outer hair cells, and then the first row outer hair cells are affected while the inner hair cells appear normal. In contrast, the organ of Corti from the postnatal day 30 waltzing guinea pig showed a more extensive outer hair cell loss among all three rows as well as a considerable degree of inner hair cell loss. Forward masked auditory brain-stem response tuning curves were generated at 8, 4, and 1 kHz for control and waltzing guinea pigs between 2 and 12 days of age. All tuning curves obtained from waltzing guinea pigs showed progressive decreases in sensitivity with increasing age. The Q 10 dB values of the 1- and 4-kHz tuning curves were not different between the controls and the waltzing guinea pigs at any age.(ABSTRACT TRUNCATED AT 400 WORDS)
在出生后第2天、9天、15天和30天,从患有华尔兹综合征的豚鼠及其年龄匹配的对照豚鼠身上获取听觉脑干反应(ABR)、畸变产物耳声发射(2f1 - f2)、毛细胞损失以及前掩蔽调谐曲线的测量数据。出生后2天可见轻度的ABR阈值偏移(10 - 15分贝),到出生后15天逐渐增加到更严重的阈值偏移(40 - 50分贝)。到30天时,由于超出仪器输出范围,无法引出听觉脑干反应。出生后第2天、9天和15天的患有华尔兹综合征的豚鼠,其畸变产物耳声发射(DPOE)平均振幅与f1振幅的函数关系,在刺激水平低于65分贝声压级时,仅比对照值低3至8分贝。为患有华尔兹综合征的豚鼠构建的DPOE听力图显示,当f1强度为50分贝声压级时,与对照值的平均差异不超过8分贝;当f1为60分贝声压级时,不超过10分贝。对个体病例的分析表明,DPOE振幅可能大于对照值。相反,当f1刺激水平低于65分贝声压级时,出生后第30天的患有华尔兹综合征的豚鼠无法检测到DPOE。在刺激水平高于65分贝声压级时,可以记录到DPOE,但这些反应比对照值降低了10至25分贝。对出生后第15天的患有华尔兹综合征的豚鼠的柯蒂氏器表面标本分析显示,明显的改变发生在第三排外毛细胞。第二排外毛细胞受到较小程度的影响,然后是第一排外毛细胞,而内毛细胞看起来正常。相比之下,出生后第30天的患有华尔兹综合征的豚鼠的柯蒂氏器在所有三排中都显示出更广泛的外毛细胞损失以及相当程度的内毛细胞损失。在2至12日龄的对照豚鼠和患有华尔兹综合征的豚鼠中,分别在8千赫、4千赫和1千赫处生成前掩蔽听觉脑干反应调谐曲线。从患有华尔兹综合征的豚鼠获得的所有调谐曲线都显示出随着年龄增长敏感性逐渐降低。在任何年龄,对照豚鼠和患有华尔兹综合征的豚鼠的1千赫和4千赫调谐曲线的Q 10分贝值都没有差异。(摘要截断于400字)