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磁共振成像图像叠加:在关节造影针插入中的应用。

MRI image overlay: application to arthrography needle insertion.

作者信息

Fischer Gregory S, Deguet Anton, Csoma Csaba, Taylor Russell H, Fayad Laura, Carrino John A, Zinreich S James, Fichtinger Gabor

机构信息

Engineering Research Center, Johns Hopkins University, Baltimore, Maryland, USA.

出版信息

Comput Aided Surg. 2007 Jan;12(1):2-14. doi: 10.3109/10929080601169930.

Abstract

Magnetic Resonance Imaging (MRI) offers great potential for planning, guiding, monitoring and controlling interventions. MR arthrography (MRAr) is the imaging gold standard for assessing small ligament and fibrocartilage injury in joints. In contemporary practice, MRAr consists of two consecutive sessions: (1) an interventional session where a needle is driven to the joint space and MR contrast is injected under fluoroscopy or CT guidance; and (2) a diagnostic MRI imaging session to visualize the distribution of contrast inside the joint space and evaluate the condition of the joint. Our approach to MRAr is to eliminate the separate radiologically guided needle insertion and contrast injection procedure by performing those tasks on conventional high-field closed MRI scanners. We propose a 2D augmented reality image overlay device to guide needle insertion procedures. This approach makes diagnostic high-field magnets available for interventions without a complex and expensive engineering entourage. In preclinical trials, needle insertions have been performed in the joints of porcine and human cadavers using MR image overlay guidance; in all cases, insertions successfully reached the joint space on the first attempt.

摘要

磁共振成像(MRI)在干预的规划、引导、监测和控制方面具有巨大潜力。磁共振关节造影(MRAr)是评估关节内小韧带和纤维软骨损伤的影像学金标准。在当代实践中,MRAr包括两个连续的环节:(1)介入环节,在荧光透视或CT引导下将针插入关节腔并注入MR造影剂;(2)诊断性MRI成像环节,以观察关节腔内造影剂的分布并评估关节状况。我们的MRAr方法是通过在传统高场封闭MRI扫描仪上执行这些任务,消除单独的放射学引导针插入和造影剂注射程序。我们提出一种二维增强现实图像叠加设备来引导针插入程序。这种方法使诊断用高场磁体可用于干预,而无需复杂且昂贵的工程随行设备。在临床前试验中,已使用MR图像叠加引导在猪和人类尸体的关节中进行针插入;在所有情况下,首次尝试时插入均成功到达关节腔。

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