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量化脑脊液动力学:人类神经影像学对脑脊液生理学和神经退行性疾病的贡献综述。

Quantifying cerebrospinal fluid dynamics: A review of human neuroimaging contributions to CSF physiology and neurodegenerative disease.

机构信息

Department of Biology, Cornell University, Ithaca, NY, USA.

Division of Neuroradiology, Department of Radiology, University of Texas Southwestern Medical Center, Dallas, TX, USA.

出版信息

Neurobiol Dis. 2022 Aug;170:105776. doi: 10.1016/j.nbd.2022.105776. Epub 2022 May 25.

Abstract

Cerebrospinal fluid (CSF), predominantly produced in the ventricles and circulating throughout the brain and spinal cord, is a key protective mechanism of the central nervous system (CNS). Physical cushioning, nutrient delivery, metabolic waste, including protein clearance, are key functions of the CSF in humans. CSF volume and flow dynamics regulate intracranial pressure and are fundamental to diagnosing disorders including normal pressure hydrocephalus, intracranial hypotension, CSF leaks, and possibly Alzheimer's disease (AD). The ability of CSF to clear normal and pathological proteins, such as amyloid-beta (Aβ), tau, alpha synuclein and others, implicates it production, circulation, and composition, in many neuropathologies. Several neuroimaging modalities have been developed to probe CSF fluid dynamics and better relate CSF volume and flow to anatomy and clinical conditions. Approaches include 2-photon microscopic techniques, MRI (tracer-based, gadolinium contrast, endogenous phase-contrast), and dynamic positron emission tomography (PET) using existing approved radiotracers. Here, we discuss CSF flow neuroimaging, from animal models to recent clinical-research advances, summarizing current endeavors to quantify and map CSF flow with implications towards pathophysiology, new biomarkers, and treatments of neurological diseases.

摘要

脑脊液(CSF)主要在脑室中产生,并在大脑和脊髓中循环,是中枢神经系统(CNS)的关键保护机制。在人体中,脑脊液具有物理缓冲、营养物质输送、代谢废物清除(包括蛋白质清除)等重要功能。CSF 的体积和流动动力学可调节颅内压,对诊断包括正常压力脑积水、颅内低血压、CSF 漏和可能的阿尔茨海默病(AD)在内的多种疾病具有重要意义。CSF 清除正常和病理蛋白质(如淀粉样蛋白-β(Aβ)、tau、α 突触核蛋白等)的能力表明,其产生、循环和组成与许多神经病理学有关。已经开发了几种神经影像学方法来探测 CSF 流体动力学,并更好地将 CSF 体积和流动与解剖结构和临床状况联系起来。这些方法包括双光子显微镜技术、MRI(示踪剂、钆对比剂、内源性相位对比)和使用现有批准的放射性示踪剂的动态正电子发射断层扫描(PET)。在这里,我们讨论 CSF 流动神经影像学,从动物模型到最近的临床研究进展,总结了目前量化和绘制 CSF 流动的努力,以及它们对病理生理学、新生物标志物和神经疾病治疗的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0da1/9987579/39e59c0a1dda/nihms-1862503-f0001.jpg

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