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Biomechanical Registration of Prostate Images using Statistical Shape Models

机译:使用统计形状模型的前列腺图像的生物力学配准

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Proper targeting of radiation therapy during the treatment of prostate cancer requires the successful alignment of initial planning images with more recent ones taken during the treatment course. Prostatic displacement, if unaccounted for during the treatment course, can lead to radiation underdosage of the target area or radiation of the surrounding healthy tissue. Studies have shown that prostatic displacement is directly correlated with changes in the volume of the rectum. We have developed a non-rigid image registration system based on a biomechanical model of the prostate, rectum, and surrounding tissues, that incorporates statistical shape information about changes in the volume of the rectum. Using finite-element analysis and statistical shape models, our non-rigid registration method defines a mapping between two prostate image volumes. The proposed method assumes that the prostate image misregistration occurs as a result of changes in the rectum's shape. The change along the rectum's circumference was considered as the displacement boundary condition of the prostate's finite element model. As such we used a mutual information similarity measure in conjunction with the finite element model for computing the optimal boundary condition as well as estimating the location and relative Young's modulus of the central and peripheral zones within the prostate to the surrounding tissue. Compared to other techniques, this registration technique is not only efficient but also capable of providing valuable mechanical properties of tissue in vivo.
机译:在前列腺癌的治疗过程中正确定位放射治疗需要将初始计划图像与治疗过程中拍摄的最新图像进行成功对准。如果在治疗过程中无法解决前列腺移位,则可能导致目标区域的辐射剂量不足或周围健康组织的辐射。研究表明,前列腺移位与直肠体积的变化直接相关。我们已经开发了基于前列腺,直肠和周围组织的生物力学模型的非刚性图像配准系统,该系统结合了有关直肠体积变化的统计形状信息。通过使用有限元分析和统计形状模型,我们的非刚性配准方法定义了两个前列腺图像体积之间的映射。所提出的方法假定前列腺图像重合失调是由于直肠形状变化而发生的。沿直肠周长的变化被认为是前列腺有限元模型的位移边界条件。因此,我们将相互信息相似性度量与有限元模型结合使用,以计算最佳边界条件,并估算前列腺中的中央和周围区域与周围组织的位置和相对杨氏模量。与其他技术相比,该配准技术不仅有效,而且还能够在体内提供有价值的组织机械性能。

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