基于圆柱深度图像的定制螺旋骨板设计

IF 1.7 4区 医学 Q3 ENGINEERING, BIOMEDICAL
Udeok Seo , Yoo-Joo Choi , Ku-Jin Kim
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引用次数: 0

摘要

商用直金属板通常用于固定骨折的骨头,但最近出现了对定制和螺旋金属板的需求。定制金属板是根据骨折部位的形状设计的,而骨折部位是一个三维曲面,因此比在二维平面上设计更加困难。与市面上的直金属板相比,螺旋金属板在避免血管损伤方面更具优势,因此被广泛研究。在本文中,我们提出了一种新颖的算法,利用圆柱深度图像和布尔运算为股骨设计定制的螺旋金属板。我们还展示了使用所提算法设计的金属板的三维打印结果,并通过计算打印金属板表面与股骨表面之间的最小距离验证了形状匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Cylindrical depth image based customized helical bone plate design

Cylindrical depth image based customized helical bone plate design

Commercial straight metal plates have been generally used to fix fractured bones, but recently, the need for customized and helical metal plates has emerged. Customized metal plates are designed to fit the shape of the fracture area that is a 3D curved surface, making it more difficult than designing on a 2D plane. Helical plates are researched due to their advantage in avoiding blood vessel damage compared to commercially available straight metal plates. In this paper, we propose a novel algorithm to design a customized helical metal plate for the femur using cylindrical depth images and Boolean operations. We also present the results of 3D printing a metal plate designed using the proposed algorithm, and the shape matching is verified by calculating the minimum distance between the surface of the printed plate and the surface of the femur.

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来源期刊
Medical Engineering & Physics
Medical Engineering & Physics 工程技术-工程:生物医学
CiteScore
4.30
自引率
4.50%
发文量
172
审稿时长
3.0 months
期刊介绍: Medical Engineering & Physics provides a forum for the publication of the latest developments in biomedical engineering, and reflects the essential multidisciplinary nature of the subject. The journal publishes in-depth critical reviews, scientific papers and technical notes. Our focus encompasses the application of the basic principles of physics and engineering to the development of medical devices and technology, with the ultimate aim of producing improvements in the quality of health care.Topics covered include biomechanics, biomaterials, mechanobiology, rehabilitation engineering, biomedical signal processing and medical device development. Medical Engineering & Physics aims to keep both engineers and clinicians abreast of the latest applications of technology to health care.
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