Roopakala M S, Dayananda G, Manjula P, Konde Anish S, Acharya P T, Srinivasa R, Nirmala K S
Department of Physiology, M. S. Ramaiah Medical College and Hospital, Bangalore - 560 054, Karnataka.
Indian J Physiol Pharmacol. 2011 Jan-Mar;55(1):44-52.
Preterm infants can have many neurological problems. An enormous amount of fetal brain development occurs during the last trimester of pregnancy. They include myelination, glial cell migration and the development of a complex gyral pattern. The brain doesn't show the normal growth after birth in preterm infants. Brainstem auditory evoked potentials (BAEPs) are a noninvasive neurophysiologic assessment of brainstem maturation in babies.
BAEPs in 25 preterm and 25 full-term infants were considered for the study. Infants having history of birth trauma, metabolic disorders or intracranial infection were excluded. BAEP waveforms (absolute and interpeak latencies) were recorded and analyzed. Student t test was used to analyze the data thus acquired.
Analysis of data revealed a significant increase in latency of BAEP waveform V (P<0.05). Other latencies and interpeak latencies of BAEP waveforms were comparable.
The preterm infants have a prolonged latency of BAEP waveform V suggestive of a retarded myelination of the central auditory pathway. Thus BAEP could be a useful electrophysiological test to assess neuronal myelination and maturation in preterm infants.
早产儿可能会出现许多神经问题。胎儿大脑的大量发育发生在妊娠晚期。这些发育包括髓鞘形成、神经胶质细胞迁移以及复杂脑回模式的形成。早产儿出生后大脑并未呈现正常生长。脑干听觉诱发电位(BAEPs)是对婴儿脑干成熟度的一种非侵入性神经生理学评估。
本研究纳入了25例早产儿和25例足月儿的BAEPs数据。排除有出生创伤、代谢紊乱或颅内感染病史的婴儿。记录并分析BAEP波形(绝对潜伏期和峰间潜伏期)。使用学生t检验分析所获得的数据。
数据分析显示BAEP波形V的潜伏期显著延长(P<0.05)。BAEP波形的其他潜伏期和峰间潜伏期具有可比性。
早产儿BAEP波形V的潜伏期延长,提示中枢听觉通路髓鞘形成延迟。因此,BAEP可能是评估早产儿神经元髓鞘形成和成熟度的一种有用的电生理检查。