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早产和晚期早产对神经发育正常儿童脑干及中潜伏期听觉诱发电位的影响。

The effects of early and late preterm birth on brainstem and middle-latency auditory evoked responses in children with normal neurodevelopment.

作者信息

Pasman J W, Rotteveel J J, de Graaf R, Maassen B, Visco Y M

机构信息

Department of Clinical Neurophysiology, University Hospital, Nijmegen, the Netherlands.

出版信息

J Clin Neurophysiol. 1996 May;13(3):234-41. doi: 10.1097/00004691-199605000-00007.

Abstract

In preterm and term infants, brainstem and middle latency auditory evoked responses (ABR and MLR) were obtained at 40 and 52 weeks conceptional age (CA) and at 5 years of age. A neurological and neuropsychological evaluation was performed at 5 years of age. To study the effect of preterm birth on the maturation of the ABR and MLR, the preterm infants were divided into early and late preterm groups. Only children with a normal neurodevelopmental outcome at 5 years of age were entered into the study. For ABR, the late preterm group showed significantly longer mean latencies IIc, III, V, and Vc when compared with the term group at 52 weeks CA. There was a trend to longer ABR latencies I in the early preterm group compared with the term group. At 52 weeks CA, the late preterm group showed longer mean interpeak latencies III-I and V-I when compared with the term as well as the early preterm group. At 5 years, the late preterm group showed significantly longer mean ABR latencies IIc and III when compared to the early preterm group. For MLR, the early preterm group showed significantly longer mean latencies of MLR component PO when compared with the term group at 40 weeks CA. At 52 weeks, the late preterm group also had longer mean MLR latencies P0 than the term group. At 5 years of age, the term group showed higher mean peak-to-peak amplitudes Na-P0 than the early as well as the late preterm group. To a large extent, the ABR results support the hypothesis that middle ear effusions in combination with retarded myelination of the central auditory pathway are responsible for the ABR differences found between term and preterm infants with a normal neurodevelopmental outcome at 5 years of age. The longer latencies and interpeak latencies found in late preterm infants when compared with early preterm infants might be explained by an augmented vulnerability of the auditory pathway between 30 and 34 weeks CA. The MLR differences found between term and preterm infants might be explained by a difference in the maturation of primary and nonprimary MLR components.

摘要

在早产儿和足月儿中,分别于孕龄40周、52周以及5岁时获取脑干听觉诱发电位(ABR)和中潜伏期听觉诱发电位(MLR)。在5岁时进行神经学和神经心理学评估。为研究早产对ABR和MLR成熟的影响,将早产儿分为早早产组和晚早产组。仅5岁时神经发育结局正常的儿童纳入研究。对于ABR,在孕龄52周时,晚早产组与足月儿组相比,平均潜伏期IIc、III、V和Vc显著更长。早早产组与足月儿组相比,ABR潜伏期I有延长趋势。在孕龄52周时,晚早产组与足月儿组以及早早产组相比,平均峰间潜伏期III-I和V-I更长。在5岁时,晚早产组与早早产组相比,平均ABR潜伏期IIc和III显著更长。对于MLR,在孕龄40周时,早早产组与足月儿组相比,MLR成分PO的平均潜伏期显著更长。在52周时,晚早产组的MLR平均潜伏期P0也比足月儿组更长。在5岁时,足月儿组的平均峰峰值幅度Na-P0高于早早产组和晚早产组。ABR结果在很大程度上支持以下假设:中耳积液与中枢听觉通路髓鞘形成延迟共同导致了5岁时神经发育结局正常的足月儿和早产儿之间ABR的差异。与早早产婴儿相比,晚早产婴儿中发现的更长潜伏期和峰间潜伏期可能是由于孕龄30至34周之间听觉通路的易损性增加所致。足月儿和早产儿之间发现的MLR差异可能是由于初级和非初级MLR成分成熟度的差异所致。

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