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Intracranial Vessel Wall MRI in Clinical Practice: Technical Considerations, Current and Emerging Applications, and Clinical Pearls and Pitfalls

机译:颅内血管壁MRI的临床实践:技术考虑,当前和新兴的应用程序,以及临床珍珠和陷阱

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摘要

Despite considerable advancements in imaging techniques, patients with stroke or intracranial hemorrhage may lack a specific diagnosis, even after an extensive diagnostic evaluation. One of the main underlying reasons for this shortcoming is that neurovascular imaging approaches have traditionally focused on the vessel lumen. Luminal imaging lacks both sensitivity and specificity in many clinical scenarios because luminal compromise may occur at advanced stages of disease and frequently does not offer insights about the underlying pathologic process. Most of the disease processes originate in the vessel wall, which has previously been technically difficult to image. MR imaging is an ideal technique for vessel wall imaging due to its versatility and exquisite soft-tissue contrast. Due to recent progress in imaging techniques, the translation of intracranial vessel wall MR imaging from research applications to routine clinical practice has become possible. The goal of this article was to familiarize readers with the technical underpinnings, normal findings, and current clinical applications of intracranial vessel wall MR imaging as well as to discuss limitations, pitfalls, and future perspectives for this exciting new imaging tool. Learning Objective: Understand the technical requirements and clinical implementation details of intracranial vessel wall MR imaging, recognize normal findings and the imaging appearances of common disease processes, and identify imaging pitfalls and current limitations.
机译:尽管影像技术取得了长足的进步,但即使经过广泛的诊断评估,中风或颅内出血患者仍可能缺乏特异性诊断。造成这种缺陷的主要原因之一是神经血管成像方法传统上将重点放在血管腔上。在许多临床情况下,发光成像缺乏灵敏度和特异性,因为在疾病的晚期可能会发生鲁棒性损害,而且常常无法提供有关潜在病理过程的见解。大多数疾病过程起源于以前在技术上难以成像的血管壁。 MR成像因其多功能性和精致的软组织对比度而成为血管壁成像的理想技术。由于成像技术的最新进展,颅内血管壁MR成像从研究应用到常规临床实践的转变已成为可能。本文的目的是使读者熟悉颅内血管壁MR成像的技术基础,正常发现和当前临床应用,以及讨论这种令人兴奋的新成像工具的局限性,陷阱和未来展望。学习目标:了解颅内血管壁MR成像的技术要求和临床实施细节,认识正常发现和常见疾病过程的成像外观,并确定成像陷阱和当前局限性。

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