基于深度相机的全膝关节置换术 (TKA) 模拟评估方法:3D 打印膝关节的横截面角度测量

IF 1.9 4区 工程技术 Q2 Engineering
Jinwoo Jang, Minchae Kang, Min-Woo Han
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引用次数: 0

摘要

随着社会老龄化的加剧,50 岁以上人群中退行性关节炎的发病率激增,导致对全膝关节置换术的需求增加。因此,对手术模拟系统的需求日益增长,该系统可提高手术满意度,并帮助外科医生提高对特定患者手术计划的熟练程度。然而,目前用于评估手术模拟后进行的膝关节截肢是否符合手术计划的方法非常有限。在这项研究中,我们提出了一种能即时计算膝关节切削角的系统,并利用深度摄像头对手术模拟结果进行评估。为了减少深度摄像头固有的测量误差,我们研究了与标本颜色、物体距离和照明条件相关的误差水平。随后,我们设计了一种能有效减少这些误差的测量环境。随后,我们制作了不同面积和形状的试样,通过角度误差比较来评估角度测量算法的准确性。最后,我们对切割后的仿真骨进行了角度测量,复制了手术模拟程序,并验证了切割面角度的测量误差在 1 度左右。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A Depth Camera-Based Evaluation Method for Total Knee Arthroplasty (TKA) Simulation: Cross-Sectional Angle Measurement of 3D Printed Knee Joint

A Depth Camera-Based Evaluation Method for Total Knee Arthroplasty (TKA) Simulation: Cross-Sectional Angle Measurement of 3D Printed Knee Joint

With the aging of our society, there has been a surge in the prevalence of degenerative arthritis among individuals in their 50 s, leading to an elevated demand for total knee arthroplasty. Consequently, there is a growing need for a surgical simulation system that can enhance surgical satisfaction and assist surgeons improving their proficiency with patient-specific surgical plans. However, there are currently limited methods available to evaluate whether the knee joint amputation performed after surgical simulation aligns with the surgical plan. In this study, we propose a system that can instantly calculate the knee joint's cutting angle and evaluate outcomes in the surgical simulation using a depth camera. In order to reduce the inherent measurement errors of the depth camera, we investigated error levels associated with specimen color, object distance, and illumination conditions. Subsequently, we devised a measurement environment that would effectively mitigate these errors. Following this, we produced specimens with varying areas and shapes to evaluate the accuracy of the angle measurement algorithm through error comparison by angle. Finally, we conducted angle measurements on the mimetic bone that was cut, replicating the surgical simulation procedure, and verified that the angle of the cutting surface could be measured with an error margin of around one degree.

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来源期刊
CiteScore
4.10
自引率
10.50%
发文量
115
审稿时长
3-6 weeks
期刊介绍: The International Journal of Precision Engineering and Manufacturing accepts original contributions on all aspects of precision engineering and manufacturing. The journal specific focus areas include, but are not limited to: - Precision Machining Processes - Manufacturing Systems - Robotics and Automation - Machine Tools - Design and Materials - Biomechanical Engineering - Nano/Micro Technology - Rapid Prototyping and Manufacturing - Measurements and Control Surveys and reviews will also be planned in consultation with the Editorial Board.
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