Bakshi Rohit, Minagar Alireza, Jaisani Zeenat, Wolinsky Jerry S
Department of Neurology and Radiology, Partners MS Center, Center for Neurological Imaging, Brigham and Women's Hospital, Harvard Medical School, Boston, Massachusetts 02115, USA.
NeuroRx. 2005 Apr;2(2):277-303. doi: 10.1602/neurorx.2.2.277.
Magnetic resonance imaging (MRI) plays an ever-expanding role in the evaluation of multiple sclerosis (MS). This includes its sensitivity for the diagnosis of the disease and its role in identifying patients at high risk for conversion to MS after a first presentation with selected clinically isolated syndromes. In addition, MRI is a key tool in providing primary therapeutic outcome measures for phase I/II trials and secondary outcome measures in phase III trials. The utility of MRI stems from its sensitivity to longitudinal changes including those in overt lesions and, with advanced MRI techniques, in areas affected by diffuse occult disease (the so-called normal-appearing brain tissue). However, all current MRI methodology suffers from limited specificity for the underlying histopathology. Conventional MRI techniques, including lesion detection and measurement of atrophy from T1- or T2-weighted images, have been the mainstay for monitoring disease activity in clinical trials, in which the use of gadolinium with T1-weighted images adds additional sensitivity and specificity for areas of acute inflammation. Advanced imaging methods including magnetization transfer, fluid attenuated inversion recovery, diffusion, magnetic resonance spectroscopy, functional MRI, and nuclear imaging techniques have added to our understanding of the pathogenesis of MS and may provide methods to monitor therapies more sensitively in the future. However, these advanced methods are limited by their cost, availability, complexity, and lack of validation. In this article, we review the role of conventional and advanced imaging techniques with an emphasis on neurotherapeutics.
磁共振成像(MRI)在多发性硬化症(MS)的评估中发挥着越来越重要的作用。这包括其对疾病诊断的敏感性,以及在识别首次出现特定临床孤立综合征后转化为MS高风险患者方面的作用。此外,MRI是在I/II期试验中提供主要治疗结果指标以及在III期试验中提供次要结果指标的关键工具。MRI的效用源于其对纵向变化的敏感性,包括明显病变的变化,以及借助先进的MRI技术,对受弥漫性隐匿性疾病影响区域(即所谓的正常脑组织)变化的敏感性。然而,目前所有的MRI方法对潜在组织病理学的特异性都有限。传统的MRI技术,包括从T1加权或T2加权图像中检测病变和测量萎缩,一直是临床试验中监测疾病活动的主要手段,其中使用钆剂增强T1加权图像可增加对急性炎症区域的敏感性和特异性。包括磁化传递、液体衰减反转恢复、扩散、磁共振波谱、功能MRI和核成像技术在内的先进成像方法增进了我们对MS发病机制的理解,并可能在未来提供更敏感的治疗监测方法。然而,这些先进方法受到成本、可用性、复杂性以及缺乏验证的限制。在本文中,我们将回顾传统和先进成像技术的作用,重点是神经治疗学。