首页> 外文会议>International Conference on Computational Science(ICCS 2006) pt.4; 20060528-31; Reading(GB) >Three-Dimensional Virtual Anatomic Fit Study for an Implantable Pediatric Ventricular Assist Device
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Three-Dimensional Virtual Anatomic Fit Study for an Implantable Pediatric Ventricular Assist Device

机译:植入式小儿心室辅助装置的三维虚拟解剖拟合研究

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An innovative pediatric ventricular assist device (PVAD) is being developed to treat young patients (2.5kg-15kg) with severe heart failure that otherwise have very few options due to their small size. To optimize the design of the PVAD for the target patient population, three-dimensional anatomical compatibility studies must be conducted. The aim of this project was to evaluate the utility of three dimensional reconstructions to obviate fit studies in human subjects. Serial CT scans of the thorax of one child were obtained as part of routine treatment. The images were enhanced by adjusting the contrast of the images and segmented semi-automatically prior to 3-D reconstruction. The results were visualized as surface renderings of the rib cage and heart. This data was then amended with solid models of the implantable hardware, including the PVAD and cannulae. Manipulation of the relative orientation of the components revealed surgical challenges that may be anticipated and motivated design modifications to improve the anatomic compatibility. Unique challenges associated with these data sets include the availability of pediatric CT images and difficulty of segmentation due to the small scale of the anatomic features as compared to the resolution of the images.
机译:正在开发一种创新的儿科心室辅助设备(PVAD),以治疗严重心力衰竭的年轻患者(2.5kg-15kg),由于其体积小,因此其他选择很少。为了针对目标患者群体优化PVAD的设计,必须进行三维解剖相容性研究。该项目的目的是评估三维重建在人类受试者中避免拟合研究的效用。作为常规治疗的一部分,对一名儿童的胸部进行了连续CT扫描。通过调整图像的对比度来增强图像,并在3-D重建之前进行半自动分割。结果显示为肋骨和心脏的表面渲染图。然后使用可植入硬件的实体模型(包括PVAD和套管)修改此数据。操纵组件的相对方向揭示了可能面临的外科手术挑战,并推动了设计改进,以改善解剖相容性。与这些数据集相关的独特挑战包括小儿CT图像的可用性以及由于解剖特征与图像分辨率相比规模小而难以分割的问题。

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