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猫听觉诱发电位的发育。II. 波潜伏期。

Development of auditory-evoked potentials in the cat. II. Wave latencies.

作者信息

Walsh E J, McGee J, Javel E

出版信息

J Acoust Soc Am. 1986 Mar;79(3):725-44. doi: 10.1121/1.393462.

Abstract

Brain stem and forebrain auditory-evoked potentials were studied parametrically during the first 90 postnatal days in unanesthetized kittens using tonal and click stimuli. This paper describes changes that occur in transmission time through the auditory pathway during development by analyses of the maturational time courses of latencies associated with waves of both auditory brain stem responses (ABR's) and late-occurring auditory-evoked potentials (AER's), recorded subdermally from the vertex. In response to click stimuli, ABR latencies were found to decay rapidly early in postnatal life and more slowly after the third postnatal week. Those trends were modeled as a two-stage sequential process, with a linear stage occurring between 7 and 18 postnatal days followed by an exponential stage during which adult latencies were achieved. AER latencies changes during development were less complicated, and followed a single-stage exponential time course. When threshold influences were taken into account--that is, when data were adjusted so that sensation level (SL) was constant across age--the latency-maturation curves associated with all ABR waves were adequately described by a single exponential, and latencies recorded from young animals were substantially shorter than latencies associated with the same aged animals when analyses were carried out with constant sound-pressure level (SPL) stimuli across age. In addition, the difference function, generated when isoasymptotic SPL and SL latency versus age functions were subtracted from one another, was also represented by an exponential curve, suggesting that at least two processes underlie the latency decay that occurs during postnatal development. Evoked responses to tonal stimuli throughout development were consistent with the basoapical developmental gradient that is observed anatomically.

摘要

在出生后的前90天内,使用纯音和短声刺激,对未麻醉小猫的脑干和前脑听觉诱发电位进行了参数研究。本文通过分析从头顶皮下记录的听觉脑干反应(ABR)波和晚期听觉诱发电位(AER)波的潜伏期成熟时间过程,描述了发育过程中听觉通路传输时间的变化。对短声刺激的反应中,发现ABR潜伏期在出生后早期迅速衰减,在出生后第三周后衰减较慢。这些趋势被建模为一个两阶段的连续过程,线性阶段发生在出生后7至18天之间,随后是指数阶段,在此期间达到成人潜伏期。AER潜伏期在发育过程中的变化较不复杂,遵循单阶段指数时间过程。当考虑阈值影响时——即当数据调整以使感觉水平(SL)在各年龄组保持恒定时——所有ABR波的潜伏期成熟曲线都可以用单一指数充分描述,并且当对不同年龄组使用恒定声压级(SPL)刺激进行分析时,幼小动物记录的潜伏期明显短于相同年龄动物的潜伏期。此外,当将等渐近SPL和SL潜伏期与年龄的函数相互相减时产生的差异函数也由一条指数曲线表示,这表明至少有两个过程是出生后发育过程中潜伏期衰减的基础。在整个发育过程中,对纯音刺激的诱发反应与解剖学上观察到的基底-顶端发育梯度一致。

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