Tiantan Neuroimaging Center of Excellence, China National Clinical Research Center for Neurological Diseases, Beijing, China
Department of Radiology and Imaging Sciences, Emory University School of Medicine, Atlanta, Georgia, USA.
J Neurointerv Surg. 2024 Jul 16;16(8):846-851. doi: 10.1136/jnis-2023-020668.
In recent years, ultra-high-field magnetic resonance imaging (MRI) applications have been rapidly increasing in both clinical research and practice. Indeed, 7-Tesla (7T) MRI allows improved depiction of smaller structures with high signal-to-noise ratio, and, therefore, may improve lesion visualization, diagnostic capabilities, and thus potentially affect treatment decision-making. Incremental evidence emerging from research over the past two decades has provided a promising prospect of 7T magnetic resonance angiography (MRA) in the evaluation of intracranial vasculature. The ultra-high resolution and excellent image quality of 7T MRA allow us to explore detailed morphological and hemodynamic information, detect subtle pathological changes in early stages, and provide new insights allowing for deeper understanding of pathological mechanisms of various cerebrovascular diseases. However, along with the benefits of ultra-high field strength, some challenges and concerns exist. Despite these, ongoing technical developments and clinical oriented research will facilitate the widespread clinical application of 7T MRA in the near future. In this review article, we summarize technical aspects, clinical applications, and recent advances of 7T MRA in the evaluation of intracranial vascular disease. The aim of this review is to provide a clinical perspective for the potential application of 7T MRA for the assessment of intracranial vascular disease, and to explore possible future research directions implementing this technique.
近年来,超高场磁共振成像(MRI)在临床研究和实践中的应用迅速增加。事实上,7 特斯拉(7T)MRI 允许以更高的信噪比更好地描绘更小的结构,因此可能改善病变可视化、诊断能力,从而可能影响治疗决策。过去二十年的研究中不断涌现的增量证据为颅内血管评估的 7T 磁共振血管造影(MRA)提供了有前景的前景。7T MRA 的超高分辨率和出色的图像质量使我们能够探索详细的形态和血流动力学信息,检测早期的细微病理变化,并提供新的见解,从而深入了解各种脑血管疾病的病理机制。然而,随着超高场强度的优势,也存在一些挑战和关注点。尽管如此,持续的技术发展和以临床为导向的研究将促进 7T MRA 在不久的将来广泛应用于临床。在这篇综述文章中,我们总结了 7T MRA 在评估颅内血管疾病方面的技术方面、临床应用和最新进展。本文的目的是为 7T MRA 评估颅内血管疾病的潜在应用提供临床视角,并探讨实施该技术的可能未来研究方向。