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眼科磁共振成像:我们现在(正朝着何方)处于什么阶段?

Ophthalmic Magnetic Resonance Imaging: Where Are We (Heading To)?

作者信息

Niendorf Thoralf, Beenakker Jan-Willem M, Langner Sönke, Erb-Eigner Katharina, Bach Cuadra Meritxell, Beller Ebba, Millward Jason M, Niendorf Thea Marie, Stachs Oliver

机构信息

MRI.TOOLS GmbH, Berlin, Germany.

Berlin Ultrahigh Field Facility, Max Delbrueck Center for Molecular Medicine in the Helmholtz Association, Berlin, Germany.

出版信息

Curr Eye Res. 2021 Sep;46(9):1251-1270. doi: 10.1080/02713683.2021.1874021. Epub 2021 Feb 4.

DOI:10.1080/02713683.2021.1874021
PMID:33535828
Abstract

Magnetic resonance imaging of the eye and orbit (MReye) is a cross-domain research field, combining (bio)physics, (bio)engineering, physiology, data sciences and ophthalmology. A growing number of reports document technical innovations of MReye and promote their application in preclinical research and clinical science. Realizing the progress and promises, this review outlines current trends in MReye. Examples of MReye strategies and their clinical relevance are demonstrated. Frontier applications in ocular oncology, refractive surgery, ocular muscle disorders and orbital inflammation are presented and their implications for explorations into ophthalmic diseases are provided. Substantial progress in anatomically detailed, high-spatial resolution MReye of the eye, orbit and optic nerve is demonstrated. Recent developments in MReye of ocular tumors are explored, and its value for personalized eye models derived from machine learning in the treatment planning of uveal melanoma and evaluation of retinoblastoma is highlighted. The potential of MReye for monitoring drug distribution and for improving treatment management and the assessment of individual responses is discussed. To open a window into the eye and into (patho)physiological processes that in the past have been largely inaccessible, advances in MReye at ultrahigh magnetic field strengths are discussed. A concluding section ventures a glance beyond the horizon and explores future directions of MReye across multiple scales, including in vivo electrolyte mapping of sodium and other nuclei. This review underscores the need for the (bio)medical imaging and ophthalmic communities to expand efforts to find solutions to the remaining unsolved problems and technical obstacles of MReye, with the objective to transfer methodological advancements driven by MR physics into genuine clinical value.

摘要

眼部和眼眶磁共振成像(MReye)是一个跨领域的研究领域,融合了(生物)物理学、(生物)工程学、生理学、数据科学和眼科学。越来越多的报告记录了MReye的技术创新,并推动了其在临床前研究和临床科学中的应用。认识到其进展和前景,本综述概述了MReye的当前趋势。展示了MReye策略的实例及其临床相关性。介绍了在眼部肿瘤学、屈光手术、眼肌疾病和眼眶炎症方面的前沿应用,并阐述了它们对眼科疾病探索的意义。展示了在眼部、眼眶和视神经的解剖学细节、高空间分辨率MReye方面取得的重大进展。探讨了眼部肿瘤MReye的最新进展,并强调了其在葡萄膜黑色素瘤治疗规划和视网膜母细胞瘤评估中对源自机器学习的个性化眼部模型的价值。讨论了MReye在监测药物分布、改善治疗管理和评估个体反应方面的潜力。为了打开一扇了解眼睛以及过去在很大程度上无法触及的(病理)生理过程的窗口,讨论了超高磁场强度下MReye的进展。结论部分展望未来,探索了MReye在多个尺度上的未来方向,包括体内钠和其他原子核电解质成像。本综述强调了(生物)医学成像和眼科界需要加大努力,寻找解决MReye剩余未解决问题和技术障碍的方案,目标是将由磁共振物理驱动的方法学进展转化为真正的临床价值。

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