利用Materialise软件从肺结核组织的计算机断层扫描图像中创建虚拟三维肺模型的方法的比较分析

Aleksey G. Naumov, Alexander S. Shprykov, Dina A. Sutyagina, Evgenii S. Grinin
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 Aim. Demonstrate the possibilities and evaluate the labor costs (time spent on virtualization and the size of the final digital files of models) while working with the Mimics inPrint 2.0.0.159 and Mimics Medical 21.0.0.406 software systems in the aspect of virtual reconstruction of the lungs of a patient with a destructive form of tuberculosis.
 Materials and methods. A comparative analysis of methods for creating virtual three-dimensional models of the lungs from CT images was carried out at the Nizhny Novgorod Regional Clinical Tuberculosis Dispensary. The study involved one patient with a destructive form of tuberculosis of the upper lobe of the left lung. Virtual three-dimensional models were made according to a specially developed algorithm. The time spent for the formation of virtual lung models was analyzed using the built-in function in the \"Log\" software. The analysis of the size of the obtained virtual lung models in the STL format was carried out using the operating system function from the Windows family \"Properties\", section \"General\", subsection \"Size\".
 Results. The most practical software package for virtual lung reconstructions turned out to be Mimics inPrint 2.0.0.159 with the result of the time spent on creating a model of 2 minutes (Mimics Medical 21.0.0.406 7 minutes 17 seconds) and a model size of 125 megabytes (Mimics Medical 21.0.0.406 26.1 megabyte). The technical nuances and algorithms of lung reconstruction covered in the article using the Mimics inPrint 2.0.0.159 and Mimics Medical 21.0.0.406 software packages will allow the interested person not to make a mistake in realizing their scientific and practical interests in the process of providing personalized care to the patient. The article focuses on the main advantages of the Mimics inPrint 2.0.0.159 software package in comparison with Mimics Medical 21.0.0.406. A brief description of similar programs is given.
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引用次数: 0

摘要

背景。最终战胜结核病的重要条件之一不仅是预防其发展和早期发现,而且还要为患者提供高质量的个性化医疗服务。增材技术和虚拟化技术是在医疗实践中充分体现这一原则的途径。 的目标。在使用Mimics inPrint 2.0.0.159和Mimics Medical 21.0.0.406软件系统进行破坏性结核病患者肺部虚拟重建时,演示可能性并评估人工成本(在虚拟化上花费的时间和模型的最终数字文件的大小)。 材料和方法。在下诺夫哥罗德地区临床结核病诊所,对从CT图像中创建虚拟三维肺模型的方法进行了比较分析。该研究涉及一名患有左肺上叶破坏性肺结核的患者。根据专门开发的算法制作虚拟三维模型。利用“Log”软件内置的功能对虚拟肺模型的形成时间进行分析。STL格式的虚拟肺模型的大小分析使用Windows家族“Properties”,“General”部分,“size”小节中的操作系统功能。 结果。最实用的虚拟肺重建软件包是Mimics inPrint 2.0.0.159,其结果是创建模型所需的时间为2分钟(Mimics Medical 21.0.0.406 7分17秒),模型大小为125兆字节(Mimics Medical 21.0.0.406 26.1兆字节)。本文使用Mimics inPrint 2.0.0.159和Mimics Medical 21.0.0.406软件包介绍的肺重建技术的细微差别和算法将使感兴趣的人在为患者提供个性化护理的过程中不会在实现其科学和实际兴趣方面犯错误。本文重点介绍Mimics inPrint 2.0.0.159软件包与Mimics Medical 21.0.0.406软件包的主要优点。给出了类似程序的简要描述。 结论。所研究的软件系统成功地处理了分配给它们的目标,这涉及到它们的能力演示和虚拟化人工成本的评估。Mimics inPrint 2.0.0.159被证明是在日常临床实践中使用的最容易理解和最有前途的软件和应用程序。
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Comparative analysis of methods for creating virtual three-dimensional models of the lungs from computed tomography images in the practice of a tuberculosis organization using Materialise software
Background. One of the important conditions for the final victory over tuberculosis is not only the prevention of its development and early detection, but also the provision of high-quality personalized medical care to the patient. Additive technologies and virtualization technologies are ways to fully reveal this principle in phthisiatric practice. Aim. Demonstrate the possibilities and evaluate the labor costs (time spent on virtualization and the size of the final digital files of models) while working with the Mimics inPrint 2.0.0.159 and Mimics Medical 21.0.0.406 software systems in the aspect of virtual reconstruction of the lungs of a patient with a destructive form of tuberculosis. Materials and methods. A comparative analysis of methods for creating virtual three-dimensional models of the lungs from CT images was carried out at the Nizhny Novgorod Regional Clinical Tuberculosis Dispensary. The study involved one patient with a destructive form of tuberculosis of the upper lobe of the left lung. Virtual three-dimensional models were made according to a specially developed algorithm. The time spent for the formation of virtual lung models was analyzed using the built-in function in the "Log" software. The analysis of the size of the obtained virtual lung models in the STL format was carried out using the operating system function from the Windows family "Properties", section "General", subsection "Size". Results. The most practical software package for virtual lung reconstructions turned out to be Mimics inPrint 2.0.0.159 with the result of the time spent on creating a model of 2 minutes (Mimics Medical 21.0.0.406 7 minutes 17 seconds) and a model size of 125 megabytes (Mimics Medical 21.0.0.406 26.1 megabyte). The technical nuances and algorithms of lung reconstruction covered in the article using the Mimics inPrint 2.0.0.159 and Mimics Medical 21.0.0.406 software packages will allow the interested person not to make a mistake in realizing their scientific and practical interests in the process of providing personalized care to the patient. The article focuses on the main advantages of the Mimics inPrint 2.0.0.159 software package in comparison with Mimics Medical 21.0.0.406. A brief description of similar programs is given. Conclusion. The studied software systems successfully coped with the goal assigned to them, which concerned the demonstration of their capabilities and the assessment of labor costs for virtualization. Mimics inPrint 2.0.0.159 turned out to be the most understandable and promising software and application complex for use in everyday clinical practice.
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