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Relationship of neural and otoacoustic emission thresholds during endocochlear potential development in the gerbil

机译:沙鼠耳蜗内电位发展过程中神经和耳声发射阈值的关系

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摘要

Distortion product otoacoustic emissions and auditory brainstem responses (ABRs) were measured in neonatal gerbils at three ages: at 15–16 days after birth (dab), near the onset of hearing when the endocochlear potential (EP) is known to be still immature; at 22 dab, when the EP first reaches mature levels; and at 30 dab. Comparing individual 15–16 dab animals to the 22 dab group, ABR threshold changes were typically larger than those for cubic distortion tone (CDT, 2f_1–f_2) emission thresholds which were, in turn, larger than those for the simple difference tone (DT, f_2–f_1). In contrast, from 22 to 30 dab there were no important changes in CDT or DT emission thresholds. Observed threshold-change relationships were very similar to those found in differential diagnosis investigations, where the EP was experimentally decreased using a chronic furosemide application. Therefore, most of the change in cochlear function over the two week period studied could be attributed to the maturation of EP during the first week. Model calculations further show that relative changes in CDT and DT emission thresholds are compatible with a movement of the operating point of the cochlear amplifier toward its symmetrical "central" point as the EP reaches mature levels.
机译:在三个年龄的新生儿沙鼠中测量了畸变产物的耳声发射和听觉脑干反应(ABR):出生后15–16天(dab),接近听力开始时的已知耳蜗电位(EP)还不成熟;当EP首次达到成熟水平时达到22 dab;并在30 DAB。将单个15–16 dab动物与22 dab组进行比较,ABR阈值变化通常大于立方失真音(CDT,2f_1–f_2)发射阈值,而后者又大于简单差异音(DT) ,f_2–f_1)。相反,从22到30 dab,CDT或DT排放阈值没有重要变化。观察到的阈值变化关系与在鉴别诊断研究中发现的非常相似,在鉴别诊断研究中,使用慢性速尿应用实验性降低了EP。因此,在研究的两周期间,大多数耳蜗功能的变化都可以归因于第一周内EP的成熟。模型计算还表明,随着EP达到成熟水平,CDT和DT发射阈值的相对变化与耳蜗放大器的工作点向其对称的“中心”点的移动兼容。

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