首页> 外文会议>International Conference on Medical Image Computing and Computer-Assisted Intervention;MICCAI 2008 >GPU Accelerated Non-rigid Registration for the Evaluation of Cardiac Function
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GPU Accelerated Non-rigid Registration for the Evaluation of Cardiac Function

机译:GPU加速非刚性配准,以评估心脏功能

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We present a method for the fast and efficient tracking of motion in cardiac magnetic resonance (CMR) cines. A GPU accelerated Levenberg-Marquardt non-linear least squares optimization procedure for finite element non-rigid registration was implemented on an NVIDIA graphics card using the OpenGL environment. Points were tracked from frame to frame using forward and backward incremental registration. The inner (endocardial) and outer (epicardial) boarders of the heart were tracked in six short axis cines with ~25 frames through the cardiac cycle in 36 patients with vascular disease. Contours placed by two independent expert observers using a semi-automatic ventricular analysis program (CIM version 4.6) were used as the gold standard. The method took 0.5 seconds per frame, and the maximum Hausdorff errors were less than 2 mm on average which was of the same order as the expert inter-observer error. In conclusion, GPU accelerated Levenberg-Marquardt non-linear optimization enables fast and accurate tracking of cardiac motion in CMR images.
机译:我们提出了一种快速有效地跟踪心脏磁共振(CMR)电影中运动的方法。使用OpenGL环境在NVIDIA图形卡上实现了GPU加速的Levenberg-Marquardt非线性最小二乘优化程序,用于有限元非刚性配准。使用向前和向后递增配准,逐帧跟踪点。在36个患有血管疾病的患者的整个心动周期中,在6个短轴电影中跟踪了心脏的内部(心内膜)和外部(心外膜)边界,每帧约25帧。由两个独立的专业观察者使用半自动心室分析程序(CIM版本4.6)放置的轮廓线作为黄金标准。该方法每帧花费0.5秒,平均最大Hausdorff错误平均小于2 mm,与专家观察者之间的错误数量级相同。总之,GPU加速的Levenberg-Marquardt非线性优化可快速准确地跟踪CMR图像中的心脏运动。

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