Department of Pathological Physiology, Medical Faculty in Hradec Králové, Charles University, Czech Republic.
Paediatrics Department, Havlíčkův Brod Hospital, Czech Republic.
Acta Medica (Hradec Kralove). 2022;65(1):1-7. doi: 10.14712/18059694.2022.9.
This review article introduces the basic principles of infants' neurophysiology, while summarizing the core knowledge of the anatomical structure of the auditory pathway, and presents previous findings on newborns' neural speech processing and suggests their possible applications for clinical practice. In order to tap into the functioning of the auditory pathway in newborns, recent approaches have employed electrophysiological techniques that measure electrical activity of the brain. The neural processing of an incoming auditory stimulus is objectively reflected by means of auditory event-related potentials. The newborn's nervous system processes the incoming sound, and the associated electrical activity of the brain is measured and extracted as components characterized by amplitude, latency, and polarity. Based on the parameters of event-related potentials, it is possible to assess the maturity of a child's brain, or to identify a pathology that needs to be treated or mitigated. For instance, in children with a cochlear implant, auditory event-related potentials are employed to evaluate an outcome of the implantation procedure and to monitor the development of hearing. Event-related potentials turn out to be an irreplaceable part of neurodevelopmental care for high-risk children e.g., preterm babies, children with learning disabilities, autism and many other risk factors.
这篇综述文章介绍了婴儿神经生理学的基本原理,总结了听觉通路解剖结构的核心知识,并介绍了先前关于新生儿神经言语处理的研究结果,并提出了其在临床实践中的可能应用。为了探究新生儿听觉通路的功能,最近的研究方法采用了测量大脑电活动的电生理学技术。听觉事件相关电位客观地反映了传入听觉刺激的神经处理过程。新生儿的神经系统对传入的声音进行处理,测量并提取与大脑相关的电活动作为具有幅度、潜伏期和极性特征的成分。基于事件相关电位的参数,可以评估儿童大脑的成熟度,或识别需要治疗或减轻的病理。例如,在接受耳蜗植入的儿童中,听觉事件相关电位可用于评估植入程序的结果,并监测听力的发展。事件相关电位是高危儿童(例如早产儿、学习障碍儿童、自闭症和许多其他风险因素)神经发育护理中不可或缺的一部分。