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Deformable medical image registration of pleural cavity for photodynamic therapy by using finite-element based method

机译:基于有限元的可变形胸膜腔医学图像配准用于光动力治疗

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When the pleural cavity is opened during the surgery portion of pleural photodynamic therapy (PDT) of malignant mesothelioma, the pleural volume will deform. This impacts the delivered dose when using highly conformal treatment techniques. To track the anatomical changes and contour the lung and chest cavity, an infrared camera-based navigation system (NDI) is used during PDT. In the same patient, a series of computed tomography (CT) scans of the lungs are also acquired before the surgery. The reconstructed three-dimensional contours from both NDI and CTs are imported into COMSOL Multiphysics software, where a finite element-based (FEM) deformable image registration is obtained. The CT contour is registered to the corresponding NDI contour by overlapping the center of masses and aligning their orientations. The NDI contour is considered as the reference contour, and the CT contour is used as the target one, which will be deformed. Deformed Geometry model is applied in COMSOL to obtain a deformed target contour. The distortion of the volume at X, Y and Z is mapped to illustrate the transformation of the target contour. The initial assessment shows that FEM-based image deformable registration can fuse images acquired by different modalities. It provides insights into the deformation of anatomical structures along X, Y and Z-axes. The deformed contour has good matches to the reference contour after the dynamic matching process. The resulting three-dimensional deformation map can be used to obtain the locations of other critical anatomic structures, e.g., heart, during surgery.
机译:当在恶性间皮瘤的胸膜光动力疗法(PDT)的手术部分打开胸膜腔时,胸膜体积会变形。当使用高度保形的治疗技术时,这会影响给药剂量。为了跟踪解剖结构变化并轮廓化肺和胸腔,在PDT期间使用了基于红外摄像机的导航系统(NDI)。在同一名患者中,在手术前还需要进行一系列的肺部计算机断层扫描(CT)扫描。从NDI和CT重建的三维轮廓均导入COMSOL Multiphysics软件,在该软件中获得基于有限元(FEM)的可变形图像配准。通过重叠质心并对齐其方向,将CT轮廓注册到相应的NDI轮廓。 NDI轮廓被视为参考轮廓,而CT轮廓被用作将变形的目标轮廓。将变形几何模型应用于COMSOL中以获得变形的目标轮廓。映射了X,Y和Z处的体积变形,以说明目标轮廓的变换。初步评估表明,基于FEM的图像可变形配准可以融合通过不同方式获取的图像。它提供了有关沿X,Y和Z轴的解剖结构变形的见解。经过动态匹配后,变形轮廓与参考轮廓具有良好的匹配性。所得的三维变形图可用于获得手术期间其他关键解剖结构(例如心脏)的位置。

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