Department of Paediatric Neurosurgery, Bristol Royal Hospital for Children, University Hospitals Bristol and Weston NHS Foundation Trust, Bristol, UK.
Grey Walter Department of Clinical Neurophysiology, North Bristol NHS Trust, Bristol, UK.
Childs Nerv Syst. 2022 Jul;38(7):1371-1375. doi: 10.1007/s00381-021-05356-9. Epub 2021 Oct 5.
Neurophysiological brainstem mapping techniques facilitate the intra-operative localisation of cranial nerve nuclei amidst distorted anatomy. Neurophysiological recording in young infants can be limited due to immature myelination and synaptogenesis, as well as an increased sensitivity to anaesthetic agents.
A 5-month-old boy was diagnosed with a cystic brainstem lesion located dorsally within the pons and upper medulla. An open surgical biopsy was undertaken via a posterior fossa craniotomy, revealing a grossly distorted fourth ventricular floor. Intra-operative neurophysiological mapping produced oculomotor, facial, glossopharyngeal and vagal muscle responses allowing a deviated functional midline to be identified. Direct stimulation was used to identify an area in the floor of the fourth ventricle eliciting no cranial nerve responses and allow safe entry into the tumour cavity and biopsy. Transcranial motor evoked responses (TcMEPs), short-latency somatosensory evoked potentials (SSEPs) and brainstem auditory evoked potentials (BAEPs) were all successfully recorded throughout the procedure, despite the use of halogenated gaseous anaesthesia.
We describe the use of brainstem mapping techniques for identification of a distorted midline on the floor of the 4th ventricle in an infant, with reproducible recordings of intra-operative TcMEPs, SSEPs and BAEPs.
神经生理学脑干定位技术有助于在解剖结构变形的情况下术中定位颅神经核。由于髓鞘形成和突触发生不成熟,以及对麻醉剂的敏感性增加,年幼婴儿的神经生理记录可能会受到限制。
一名 5 个月大的男孩被诊断患有位于桥脑和延髓上部背侧的囊性脑干病变。通过后颅窝开颅术进行了开放性手术活检,显示第四脑室地板严重变形。术中神经生理学定位产生了动眼神经、面神经、舌咽神经和迷走神经肌肉反应,从而确定了偏离的功能中线。直接刺激用于识别第四脑室底部的一个区域,该区域没有引起颅神经反应,从而可以安全进入肿瘤腔进行活检。尽管使用卤代气体麻醉,但整个手术过程中均成功记录了经颅运动诱发电位(TcMEPs)、短潜伏期体感诱发电位(SSEPs)和脑干听觉诱发电位(BAEPs)。
我们描述了在婴儿中使用脑干定位技术来识别第四脑室地板上变形的中线,术中 TcMEPs、SSEPs 和 BAEPs 的记录具有可重复性。