INFANT Research Centre, University College Cork, Cork, Ireland.
Department of Paediatrics and Child Health, University College Cork, Cork, Ireland.
Pediatr Res. 2024 Sep;96(4):896-904. doi: 10.1038/s41390-024-03207-2. Epub 2024 Apr 29.
Neonatal neurocritical intensive care is dedicated to safeguarding the newborn brain by prioritising clinical practices that promote early identification, diagnosis and treatment of brain injuries. The most common newborn neurological emergency is neonatal seizures, which may also be the initial clinical indication of neurological disease. A high seizure burden in the newborn period independently contributes to increased mortality and morbidity. The majority of seizures in newborns are subclinical (without clinical presentation), and hence identification may be difficult. Neuromonitoring techniques most frequently used to monitor brain wave activity include conventional electroencephalography (cEEG) or amplitude-integrated EEG (aEEG). cEEG with video is the gold standard for diagnosing and treating seizures. Many neonatal units do not have access to cEEG, and frequently those that do, have little access to real-time interpretation of monitoring. IMPACT: EEG monitoring is of no benefit to an infant without expert interpretation. Whilst EEG is a reliable cot-side tool and of diagnostic and prognostic use, both conventional EEG and amplitude-integrated EEG have strengths and limitations, including sensitivity to seizure activity and ease of interpretation. Automated seizure detection requires a sensitive and specific algorithm that can interpret EEG in real-time and identify seizures, including their intensity and duration.
新生儿神经重症监护致力于通过优先考虑促进新生儿脑损伤早期识别、诊断和治疗的临床实践来保护新生儿大脑。新生儿最常见的神经急症是新生儿惊厥,它也可能是神经系统疾病的初始临床指征。新生儿期的高惊厥负担独立导致死亡率和发病率增加。大多数新生儿惊厥是亚临床的(无临床表现),因此识别可能很困难。最常用于监测脑电波活动的神经监测技术包括常规脑电图(cEEG)或振幅整合脑电图(aEEG)。带有视频的 cEEG 是诊断和治疗惊厥的金标准。许多新生儿病房无法进行 cEEG,即使那些有 cEEG 的病房,也很少能够实时解读监测结果。影响:没有专家解读,脑电图监测对婴儿无益。虽然脑电图是一种可靠的床边工具,具有诊断和预后作用,但常规脑电图和振幅整合脑电图都有其优势和局限性,包括对惊厥活动的敏感性和解读的容易程度。自动惊厥检测需要一个敏感和特异的算法,能够实时解读脑电图并识别惊厥,包括其强度和持续时间。