首页> 外文会议>Visualization, Image-Guided Procedures, and Display; Progress in Biomedical Optics and Imaging; vol.7,no.27 >A System for Rapid Prototyping of Hearts with Congenital Malformations based on the Medical Imaging Interaction Toolkit (MITK)
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A System for Rapid Prototyping of Hearts with Congenital Malformations based on the Medical Imaging Interaction Toolkit (MITK)

机译:基于医学影像交互工具包(MITK)的先天性畸形心脏快速原型制作系统

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Precise knowledge of the individual cardiac anatomy is essential for diagnosis and treatment of congenital heart disease. Complex malformations of the heart can best be comprehended not from images but from anatomic specimens. Physical models can be created from data using rapid prototyping techniques, e.g., lasersintering or 3D-printing. We have developed a system for obtaining data that show the relevant cardiac anatomy from high-resolution CT/MR images and are suitable for rapid prototyping. The challenge is to preserve all relevant details unaltered in the produced models. The main anatomical structures of interest are the four heart cavities (atria, ventricles), the valves and the septum separating the cavities, and the great vessels. These can be shown either by reproducing the morphology itself or by producing a model of the blood-pool, thus creating a negative of the morphology. Algorithmically the key issue is segmentation. Practically, possibilities allowing the cardiologist or cardiac surgeon to interactively check and correct the segmentation are even more important due to the complex, irregular anatomy and imaging artefacts. The paper presents the algorithmic and interactive processing steps implemented in the system, which is based on the open-source Medical Imaging Interaction Toolkit (MITK, www.mitk.org). It is shown how the principles used in MITK enable to assemble the system from modules (functionalities) developed independently from each other. The system allows to produce models of the heart (and other anatomic structures) of individual patients as well as to reproduce unique specimens from pathology collections for teaching purposes.
机译:对个体心脏解剖结构的准确了解对于先天性心脏病的诊断和治疗至关重要。最好不要从图像而是从解剖标本中了解心脏的复杂畸形。可以使用快速成型技术,例如激光烧结或3D打印,从数据创建物理模型。我们已经开发了一种用于从高分辨率CT / MR图像获取显示相关心脏解剖结构的数据的系统,并且该系统适用于快速原型制作。挑战在于保留生产模型中未更改的所有相关细节。感兴趣的主要解剖结构是四个心脏腔(心房,心室),分隔腔的瓣膜和隔膜以及大血管。这些可以通过复制形态本身或通过生成血池模型来显示,从而产生形态的负片。从算法上讲,关键问题是细分。实际上,由于复杂,不规则的解剖结构和成像伪像,允许心脏病专家或心脏外科医生进行交互式检查和校正分割的可能性更加重要。本文介绍了基于开放源代码医学成像交互工具包(MITK,www.mitk.org)的系统中实现的算法和交互处理步骤。它显示了MITK中使用的原理如何使彼此独立开发的模块(功能)组装成系统。该系统可以生成单个患者的心脏模型(以及其他解剖结构),还可以从病理学样本中复制出独特的标本用于教学目的。

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