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使用双荧光透视法测量全踝关节置换术后胫距关节运动学的方法

Methodology for Measurement of Tibiotalar Kinematics After Total Ankle Replacement Using Dual Fluoroscopy.

作者信息

Blair Dylan J, Barg Alexej, Foreman K Bo, Anderson Andrew E, Lenz Amy L

机构信息

Orthopaedic Research Laboratory, Department of Orthpaedics, University of Utah, Salt Lake City, UT, United States.

Department of Biomedical Engineering, University of Utah, Salt Lake City, UT, United States.

出版信息

Front Bioeng Biotechnol. 2020 May 5;8:375. doi: 10.3389/fbioe.2020.00375. eCollection 2020.

Abstract

Biomechanical data could improve our clinical understanding of failures in total ankle replacement (TAR) patients, leading to better surgical approaches and implant designs. Kinematics of the prosthetic tibiotalar joint in TAR patients have yet to be measured using dual fluoroscopy. With dual fluoroscopy, computed tomography (CT) images are acquired to track bone motion. One challenge with this approach is dealing with metal artifact in the CT images that distorts implant visualization and the surrounding bone to implant interfaces. The aim of this study was to develop a methodology to measure TAR kinematics using inputs of computer-aided design (CAD) models, dual fluoroscopy and CT imaging with metal artifact reduction. To develop this methodology, we created a hybrid three-dimensional (3D) model that contained both: (1) the segmented bone; and (2) the CAD models of the TAR components. We evaluated a patient following total ankle replacement to demonstrate feasibility. The patient performed a self-selected overground walk during which dual fluoroscopy images were collected at 200 Hz. tracking verifications were performed during overground walking using a distance calculation between the implant articular surfaces to evaluate the model-based tracking 3D solution. Tracking verification indicated realistic alignment of the hybrid models with an evenly distributed distance map pattern during the trial. Articular surface distance calculations were reported as an average of 1.3 mm gap during the entirety of overground walking. The successful implementation of our new tracking methodology with a hybrid model presents a new approach to evaluate TAR kinematics. Measurements of kinematics could improve our clinical understanding of failures in TAR patients, leading to better long-term surgical outcomes.

摘要

生物力学数据可以提高我们对全踝关节置换(TAR)患者失败情况的临床理解,从而带来更好的手术方法和植入物设计。TAR患者的人工胫距关节的运动学尚未通过双荧光透视法进行测量。使用双荧光透视法时,需要采集计算机断层扫描(CT)图像来跟踪骨骼运动。这种方法面临的一个挑战是处理CT图像中的金属伪影,这些伪影会扭曲植入物的可视化以及周围骨骼与植入物的界面。本研究的目的是开发一种方法,利用计算机辅助设计(CAD)模型、双荧光透视法和减少金属伪影的CT成像来测量TAR的运动学。为了开发这种方法,我们创建了一个混合三维(3D)模型,该模型包含:(1)分割后的骨骼;以及(2)TAR组件的CAD模型。我们评估了一名全踝关节置换后的患者以证明其可行性。该患者进行了一次自选的地面行走,在此期间以200Hz的频率采集双荧光透视图像。在地面行走过程中,使用植入物关节表面之间的距离计算进行跟踪验证,以评估基于模型的跟踪3D解决方案。跟踪验证表明,在试验期间,混合模型具有逼真的对齐方式,距离图模式分布均匀。在整个地面行走过程中,关节表面距离计算结果显示平均间隙为1.3mm。我们采用混合模型成功实施的新跟踪方法为评估TAR运动学提供了一种新途径。运动学测量可以提高我们对TAR患者失败情况的临床理解,从而带来更好的长期手术效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a978/7214754/ee39aec865a2/fbioe-08-00375-g001.jpg

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