arXiv:2506.21828q-bio.NCcs.LG2025-06中稿 · publication in Sle…综述被引 4

首篇跨物种综述胎儿睡眠,揭示脑发育与神经损伤预警的关联。

Fetal Sleep: A Cross-Species Review of Physiology, Measurement, and Classification

  • 对比人类与动物模型,梳理胎儿睡眠周期的发育规律。
  • 发现羊和猴孕晚期(80%-90%)出现清醒/安静睡眠循环,人约在95%孕龄。
  • 呼吁建立非侵入式、多模态监测体系,助力产前神经风险早期识别。

胎儿睡眠是围产期神经发育的关键却未被充分研究的方面。其周期性组织反映中枢神经回路的成熟,异常模式可能是神经系统受损的最早可检测信号。本研究首次整合七十余年来跨物种研究成果,形成统一的胎儿睡眠综述。我们分析:(i) 生理与发育进程——比较人类胎儿与动物模型;(ii) 方法演进——从侵入式神经生理学向无创监测及深度学习框架转变。通过四个数据库(PubMed、Scopus、IEEE Xplore、Google Scholar)系统检索,从2,925条记录中纳入171项涉及胎儿睡眠生理、状态分类或信号监测的研究。结果显示,随着大脑成熟,胎儿睡眠状态逐渐清晰。在胎羊和狒狒中,活跃睡眠与安静睡眠的周期性交替约在80%-90%妊娠期出现;人类则稍晚,约在95%妊娠期显现,接近足月时完全成熟。尽管动物研究广泛,但目前尚无统一且临床验证的胎儿睡眠状态定义框架,限制了其在产科实践中的应用。结论:通过整合跨物种、方法与临床背景证据,本综述为开发客观、多模态、非侵入式胎儿睡眠监测技术提供了科学基础,有望实现神经系统损伤的早期发现并指导及时产前干预。

原文摘要 · Abstract (English)

Study Objectives: Fetal sleep is a vital yet underexplored aspect of prenatal neurodevelopment. Its cyclic organization reflects the maturation of central neural circuits, and disturbances in these patterns may offer some of the earliest detectable signs of neurological compromise. This is the first review to integrate more than seven decades of research into a unified, cross-species synthesis of fetal sleep. We examine: (i) Physiology and Ontogeny-comparing human fetuses with animal models; and (ii) Methodological Evolution-transitioning from invasive neurophysiology to non-invasive monitoring and deep learning frameworks. Methods: A structured narrative synthesis was guided by a systematic literature search across four databases (PubMed, Scopus, IEEE Xplore, and Google Scholar). From 2,925 identified records, 171 studies involving fetal sleep-related physiology, sleep-state classification, or signal-based monitoring were included in this review. Results: Across the 171 studies, fetal sleep states become clearly observable as the brain matures. In fetal sheep and baboons, organized cycling between active and quiet sleep emerges at approximately 80%-90% gestation. In humans, this differentiation occurs later, around 95% gestation, with full maturation reached near term. Despite extensive animal research, no unified, clinically validated framework exists for defining fetal sleep states, limiting translation into routine obstetric practice. Conclusions: By integrating evidence across species, methodologies, and clinical contexts, this review provides the scientific foundation for developing objective, multimodal, and non-invasive fetal sleep monitoring technologies-tools that may ultimately support earlier detection of neurological compromise and guide timely prenatal intervention.

胎儿睡眠神经发育跨物种非侵入监测

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