FLUOROSCOPIC ANALYSIS FOR THE ESTIMATION OF IN VIVO ELBOW KINEMATICS: INFLUENCE OF 3D MODEL

Author:

TERSI LUCA1,FANTOZZI SILVIA1,STAGNI RITA1,CAPPELLO ANGELO1

Affiliation:

1. Department of Electronics, Computer Science, and System (DEIS), and Health Sciences and Technologies — Interdepartmental, Center for Industrial Research (HST-ICIR), University of Bologna, viale Risorgimento 2, Bologna, Italy

Abstract

The reliable knowledge that model-based three-dimensional (3D) fluoroscopy can provide about in vivo joints kinematics is essential to diagnose orthopedic pathologies, develop new prosthesis, and evaluate clinical procedures. To exploit 3D fluoroscopy for the analysis of elbow kinematics, its use was evaluated considering a single model for the forearm or two different models for the ulna and radius. Active elbow flexion-extension and prono-supination motor tasks of a healthy male subject were acquired by means of fluoroscopy. The 3D bone models were automatically aligned to the relevant projections. The pose estimation algorithm sought the tangency condition of the projection rays with the model surface, minimizing a cost function and exploiting an adaptive distance map. Five iterative guided alignments were performed to avoid the final convergence to a local minimum. The results highlighted the critical alignment of the ulna/radius model, particularly when prono-supination is performed. From the physiological motion patterns and given the values of the cost function, 3D fluoroscopy was proven to be applicable to the analysis of the elbow kinematics when single bone models for the ulna and radius are used.

Publisher

World Scientific Pub Co Pte Lt

Subject

Biomedical Engineering

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Comparison of modelling and tracking methods for analysing elbow and forearm kinematics;Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine;2019-08-29

2. Characterization of the Performance of Memetic Algorithms for the Automation of Bone Tracking With Fluoroscopy;IEEE Transactions on Evolutionary Computation;2015-02

3. Effect of Calibration Error on Bone Tracking Accuracy With Fluoroscopy;Journal of Biomechanical Engineering;2014-04-10

4. In vitro quantification of the performance of model-based mono-planar and bi-planar fluoroscopy for 3D joint kinematics estimation;Medical & Biological Engineering & Computing;2012-11-11

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