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基于稳健 PCA 的运动描述符的腹部器官磁共振引导热疗。

MR-guided thermotherapy of abdominal organs using a robust PCA-based motion descriptor.

机构信息

Laboratory for Molecular and FunctionalImaging: From Physiology to Therapy, University of Bordeaux, France.

出版信息

IEEE Trans Med Imaging. 2011 Nov;30(11):1987-95. doi: 10.1109/TMI.2011.2161095. Epub 2011 Jun 30.

DOI:10.1109/TMI.2011.2161095
PMID:21724501
Abstract

Thermotherapies can now be guided in real-time using magnetic resonance imaging (MRI). This technique is rapidly gaining importance in interventional therapies for abdominal organs such as liver and kidney. An accurate online estimation and characterization of organ displacement is mandatory to prevent misregistration and correct for motion related thermometry artifacts. In addition, when the ablation is performed with an extracorporal heating device such as high intensity focused ultrasound (HIFU), the continuous estimation of the organ displacement is the basis for the dynamic adjustment of the focal point position to track the targeted pathological tissue. In this paper, we describe the use of an optimized principal component analysis (PCA)-based motion descriptor to characterize in real-time the complex organ deformation during the therapy. The PCA was used to detect, in a preparative learning step, spatio-temporal coherences in the motion of the targeted organ. During hyperthermia, incoherent motion patterns could be discarded, which enabled improvements in motion estimation robustness, the compensation of motion related errors in thermal maps, and the adjustment of the beam position. The suggested method was evaluated for a moving phantom, and tested in vivo in the kidney and the liver of 12 healthy volunteers under free breathing conditions. The ability to perform a MR-guided thermotherapy in vivo during HIFU intervention was finally demonstrated on a porcine kidney.

摘要

热疗现在可以使用磁共振成像(MRI)进行实时引导。这项技术在腹部器官(如肝和肾)的介入治疗中迅速得到重视。为了防止配准错误和纠正与运动相关的测温伪影,有必要准确在线估计和描述器官的位移。此外,当使用高强度聚焦超声(HIFU)等体外加热装置进行消融时,器官位移的连续估计是动态调整焦点位置以跟踪目标病理组织的基础。在本文中,我们描述了使用优化的主成分分析(PCA)运动描述符来实时描述治疗过程中复杂器官的变形。PCA 用于在预备学习步骤中检测目标器官运动的时空一致性。在高热治疗期间,可以丢弃不相关的运动模式,从而提高运动估计的稳健性、补偿热图中的运动相关误差,并调整波束位置。该方法在移动的仿体上进行了评估,并在 12 名健康志愿者的肾脏和肝脏中进行了体内测试,这些志愿者在自由呼吸条件下接受治疗。最后,在猪肾上演示了在 HIFU 介入期间进行体内磁共振引导热疗的能力。

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