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Improved Visualisation of Patient-Specific Heart Structure Using Three-Dimensional Printing Coupled with Image-Processing Techniques Inspired by Astrophysical Methods

机译:使用三维印刷改善患者特异性心脏结构的可视化与由天体物理方法启发的图像处理技术

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The aim of this study is to use image-processing techniques developed in the field of astrophysics as inspiration for a novel approach to the three-dimensional (3D) imaging of periprocedural medical data, with the intention of providing improved visualisation of patient-specific heart structure and thereby allowing for an improved quality of procedural planning with regards to individualized cardiovascular healthcare. Using anonymized patient DICOM data for a cardiac computed tomography (CT) angiography, two-dimensional slices of the patients heart were processed using a series of software packages in order to produce an accurate 3D representation of the patients heart tissue as a computer-generated stereolithography (STL) file, followed by the creation of a tactile 3D printout. We find that the models produced provide clear definition of heart structure, in particular in the left atrium, left ventricle and aorta. This level of clarity also allows for the aortic valve to be observed and 3D printed. This study provides a step-by-step blueprint of how this can be achieved using open source software, specifically Slicer 4.8.1, MeshLab and Auto Desk Netfabb. In addition, the implementation of astrophysical image-processing techniques shows an improvement in modelling of the heart based on the CT data, in particular in the case of small-scale features where echocardiography has previously been required for more reliable results.
机译:本研究的目的是使用天体物理学领域中开发的图像处理技术作为一种新颖的跨越医学数据的三维(3D)成像的新方法的灵感,意图能够提供改善的患者特异性心脏的可视化结构,从而允许对个体化心血管医疗保健方面提高程序规划质量。利用用于心脏计算断层扫描(CT)血管造影的匿名患者DICOM数据,使用一系列软件包处理患者心脏的二维切片,以便为患者心脏组织的准确3D表示作为计算机产生的立体刻录(STL)文件,然后创建触觉3D打印输出。我们发现所生产的模型提供了心脏结构的明确定义,特别是在左心房,左心室和主动脉中。这种清晰度也允许观察到主动脉瓣和印刷的3D。本研究提供了通过开源软件,专门切片器4.8.1,Meshlab和Auto Desk NetFabb实现如何实现这方面的逐步蓝图。此外,天体物理图像处理技术的实现示出了基于CT数据的心脏建模的改善,特别是在超声心动图之前所需的小规模特征的情况下,对于更可靠的结果。

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