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神经超声检查:塑造极早产儿神经保护策略的未来。

Neurosonography: Shaping the future of neuroprotection strategies in extremely preterm infants.

作者信息

Tang Lukun, Li Qi, Xiao Feifan, Gao Yanyan, Zhang Peng, Cheng Guoqiang, Wang Laishuan, Lu Chunmei, Ge Mengmeng, Hu Liyuan, Xiao Tiantian, Yin Zhaoqing, Yan Kai, Zhou Wenhao

机构信息

Department of Neonatology, Children's Hospital of Fudan University, Shanghai, China.

Kunming Medical University Affiliated Dehong Hospital, Dehong, Yunnan, China.

出版信息

Heliyon. 2024 May 24;10(11):e31742. doi: 10.1016/j.heliyon.2024.e31742. eCollection 2024 Jun 15.

Abstract

This review aims to explore the current application of Cranial Ultrasound Screening (CUS) in the diagnosis and treatment of brain diseases in extremely preterm infants. It also discusses the potential role of emerging ultrasound-derived technologies such as Super Microvascular Structure Imaging (SMI), Shear Wave Elastography (SWE), Ultrafast Doppler Ultrasound (UfD), and 3D ventricular volume assessment and automated segmentation techniques in clinical practice. A systematic search of medical databases was conducted using the keywords "(preterm OR extremely preterm OR extremely low birth weight) AND (ultrasound OR ultrasound imaging) AND (neurodevelopment OR brain development OR brain diseases OR brain injury OR neuro*)" to identify relevant literature. The titles, abstracts, and full texts of the identified articles were carefully reviewed to determine their relevance to the research topic. CUS offers unique advantages in early screening and monitoring of brain diseases in extremely preterm infants, as it can be performed at the bedside without the need for anesthesia or special monitoring. This technique facilitates early detection and intervention of conditions such as intraventricular hemorrhage, white matter injury, hydrocephalus, and hypoxic-ischemic injury in critically ill preterm infants. Continuous refinement of the screening and follow-up processes provides reliable clinical decision-making support for healthcare professionals and parents. Emerging ultrasound technologies, such as SWE, SMI, and UfD, are being explored to provide more accurate and in-depth understanding of brain diseases in extremely preterm infants. SWE has demonstrated its effectiveness in assessing the elasticity of neonatal brain tissue, aiding in the localization and quantification of potential brain injuries. SMI can successfully identify microvascular structures in the brain, offering a new perspective on neurologic diseases. UfD provides a high-sensitivity and quantitative imaging method for the prevention and treatment of neonatal brain diseases by detecting subtle changes in red blood cell movement and accurately assessing the status and progression of brain diseases. CUS and its emerging technologies have significant applications in the diagnosis and treatment of brain diseases in extremely preterm infants. Future research aims to address current technical challenges, optimize and enhance the clinical decision-making capabilities related to brain development, and improve the prevention and treatment outcomes of brain diseases in extremely preterm infants.

摘要

本综述旨在探讨头颅超声筛查(CUS)在极早产儿脑疾病诊断和治疗中的当前应用。它还讨论了诸如超微血管结构成像(SMI)、剪切波弹性成像(SWE)、超快多普勒超声(UfD)以及三维脑室容积评估和自动分割技术等新兴超声衍生技术在临床实践中的潜在作用。使用关键词“(早产或极早产或极低出生体重)且(超声或超声成像)且(神经发育或脑发育或脑疾病或脑损伤或神经*)”对医学数据库进行了系统检索,以识别相关文献。对所识别文章的标题、摘要和全文进行了仔细审查,以确定它们与研究主题的相关性。CUS在极早产儿脑疾病的早期筛查和监测中具有独特优势,因为它可以在床边进行,无需麻醉或特殊监测。该技术有助于对危重症早产儿的脑室内出血、白质损伤、脑积水和缺氧缺血性损伤等情况进行早期检测和干预。筛查和随访流程的不断完善为医护人员和家长提供了可靠的临床决策支持。正在探索诸如SWE、SMI和UfD等新兴超声技术,以更准确、深入地了解极早产儿的脑疾病。SWE已证明其在评估新生儿脑组织弹性方面的有效性,有助于潜在脑损伤的定位和量化。SMI能够成功识别脑内的微血管结构,为神经系统疾病提供了新的视角。UfD通过检测红细胞运动的细微变化并准确评估脑疾病的状态和进展,为新生儿脑疾病的防治提供了一种高灵敏度的定量成像方法。CUS及其新兴技术在极早产儿脑疾病的诊断和治疗中具有重要应用。未来的研究旨在解决当前的技术挑战,优化并增强与脑发育相关的临床决策能力,改善极早产儿脑疾病的防治效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8bf0/11154624/38af5f591e3b/gr1.jpg

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