Botta Daniele, Hutuca Ioana, Ghoul Elyas El, Sveikata Lukas, Assal Frédéric, Lövblad Karl-Olof, Kurz Felix T
Division of Diagnostic and Interventional Neuroradiology, HUG Geneva University Hospitals, Geneva, Switzerland.
Division of Radiology, Diagnostic Department, Geneva University Hospitals, Geneva, Switzerland.
J Neuroradiol. 2025 May;52(3):101322. doi: 10.1016/j.neurad.2025.101322. Epub 2025 Jan 31.
The discovery of the glymphatic system has revolutionized our understanding of brain physiology, particularly in waste clearance and fluid dynamics within the central nervous system. This pathway, essential for nutrient distribution and waste removal, operates predominantly during sleep and has been implicated in neurodegenerative diseases like Alzheimer's and Parkinson's. Recent advances in non-invasive MRI techniques, including diffusion tensor imaging along the perivascular space (DTI-ALPS), perivascular space (PVS) analysis, and free water (FW) indices, have improved our ability to study glymphatic function and its alterations in disease states. This review discusses the glymphatic system's ultrastructure, physiology, and the latest imaging methods to assess this critical pathway. We highlight how these non-invasive MRI techniques can enhance the understanding of glymphatic function in health and disease, with a focus on neurodegenerative conditions. By integrating insights from current research, this review underscores the diagnostic and therapeutic implications of glymphatic dysfunction. Understanding these mechanisms can pave the way for novel strategies to enhance waste clearance and improve neurological health, offering potential benefits for early diagnosis and intervention in neurodegenerative diseases.
淋巴系统的发现彻底改变了我们对脑生理学的理解,尤其是在中枢神经系统的废物清除和流体动力学方面。这条对营养物质分布和废物清除至关重要的途径主要在睡眠期间运作,并与阿尔茨海默病和帕金森病等神经退行性疾病有关。包括沿血管周围间隙的扩散张量成像(DTI-ALPS)、血管周围间隙(PVS)分析和自由水(FW)指数在内的非侵入性MRI技术的最新进展,提高了我们研究淋巴系统功能及其在疾病状态下变化的能力。这篇综述讨论了淋巴系统的超微结构、生理学以及评估这条关键途径的最新成像方法。我们强调这些非侵入性MRI技术如何能够增进对健康和疾病状态下淋巴系统功能的理解,重点关注神经退行性疾病。通过整合当前研究的见解,这篇综述强调了淋巴系统功能障碍的诊断和治疗意义。了解这些机制可为增强废物清除和改善神经健康的新策略铺平道路,为神经退行性疾病的早期诊断和干预带来潜在益处。