首页> 外文会议>MICCAI 2011;International conference on medical image computing and computer-assisted intervention >Real-Time 3D Ultrasound Guided Interventional System for Cardiac Stem Cell Therapy with Motion Compensation
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Real-Time 3D Ultrasound Guided Interventional System for Cardiac Stem Cell Therapy with Motion Compensation

机译:实时3D超声引导介入系统用于带运动补偿的心脏干细胞治疗

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This paper describes a clinically translatable interventional guidance platform to improve the accuracy and precision of stem cell injections into a beating heart. The proposed platform overlays live position of an injection catheter onto a fusion of a pre-procedural MR roadmap with real-time 3D transesophageal echocardiography (TEE). Electromagnetic (EM) tracking is used to initialize the fusion. The fusion is intra-operatively compensated for respiratory motion using a novel algorithm that uses peri-operative full volume ultrasound images. Validation of the system on a moving heart phantom produced a landmark registration accuracy of 2.8 ± 1.45mm. Validation on animal in vivo data produced an average registration accuracy of 2.2 ±1.8 mm; indicating that it is feasible to reliably and robustly fuse the MR road-map with catheter position using 3D ultrasound in a clinical setting.
机译:本文介绍了一种临床上可翻译的介入指导平台,以提高在跳动的心脏中注射干细胞的准确性和准确性。所提出的平台将注射导管的实时位置叠加到了术前MR路线图与实时3D经食道超声心动图(TEE)的融合上。电磁(EM)跟踪用于初始化融合。使用一种新的算法在术中对融合进行呼吸运动补偿,该算法使用了围术期全体积超声图像。在移动的心脏幻像上对该系统进行的验证产生了2.8±1.45mm的界标配准精度。对动物体内数据的验证产生了2.2±1.8 mm的平均配准精度;这表明在临床环境中使用3D超声可靠可靠地将MR路线图与导管位置融合是可行的。

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