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足月儿新生儿期围产期窒息后脑干听觉诱发电位(BAER)波幅的变化。

Changes in BAER amplitudes after perinatal asphyxia during the neonatal period in term infants.

作者信息

Jiang Ze D, Shao Xiao M, Wilkinson Andrew R

机构信息

Children's Hospital, Fudan University, Shanghai, China.

出版信息

Brain Dev. 2006 Oct;28(9):554-9. doi: 10.1016/j.braindev.2006.03.004. Epub 2006 May 2.

Abstract

We recorded serially brainstem auditory evoked response (BAER) during the neonatal period in term infants who suffered perinatal asphyxia. The amplitudes of BAER components was analysed at 40 dB above BAER threshold of each subject who had a threshold<or=25 dB nHL. No apparent changes in the amplitudes of waves I and III during the first 5 days after birth. The two wave amplitudes were slightly reduced thereafter. On day 30, the amplitudes were slightly smaller than in normal controls. No statistical significant differences were found in the two amplitudes between the infants after asphyxia and the controls on any days studied. In contrast, wave V amplitude showed a trend of reduction during the whole neonatal period. The amplitude was reduced slightly on the first day after birth, but reduced further on day 3 (ANOVA, P<0.01). Thereafter, the reduction persisted without any significant change. On day 30, wave V amplitude remained significantly smaller than in the controls (P<0.001). Compared to the controls, V/I amplitude ratio was slightly smaller during the neonatal period, but V/III amplitude ratio was significantly smaller on most of the days studied (P<0.05-0.01). The persistent reduction of wave V amplitude suggests a sustained neuronal damage of the auditory brainstem in infants after perinatal asphyxia.

摘要

我们对足月围产期窒息婴儿在新生儿期连续记录脑干听觉诱发电位(BAER)。对每个阈值≤25 dB nHL的受试者,在高于其BAER阈值40 dB时分析BAER各波成分的波幅。出生后头5天,I波和III波的波幅无明显变化。此后这两个波的波幅略有降低。在出生30天时,波幅略小于正常对照组。在研究的任何一天,窒息后婴儿与对照组之间这两个波幅均未发现统计学显著差异。相比之下,V波波幅在整个新生儿期呈降低趋势。出生后第一天波幅略有降低,但在第3天进一步降低(方差分析,P<0.01)。此后,降低持续存在且无明显变化。在出生30天时,V波波幅仍显著小于对照组(P<0.001)。与对照组相比,新生儿期V/I波幅比值略小,但在大多数研究日V/III波幅比值显著更小(P<0.05 - 0.01)。V波波幅持续降低提示围产期窒息后婴儿听觉脑干存在持续性神经元损伤。

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