Factors Influencing Accuracy of Screw Displacement Axis Detection With a D.C.-Based Electromagnetic Tracking System

Author:

Bottlang M.1,Marsh J. L.2,Brown T. D.3

Affiliation:

1. Department of Biomedical Engineering, The University of Iowa, Iowa City, IA 52240

2. Department of Orthopaedic Surgery, The University of Iowa, Iowa City, IA 52240

3. Department of Biomedical Engineering and Department of Orthopaedic Surgery, The University of Iowa, Iowa City, IA 52240

Abstract

Recent technical improvements and cost reductions in electromagnetic motion tracking systems invite their application to motion axis determination in the surgical setting. After evaluation of the accuracy of a state-of-the-art D. C. electromagnetic tracking system, which generates complete three-dimensional kinematic outputs from just a single receiver, we calculated screw displacement axes (SDA’s) from its source data. The accuracy of SDA determination from such source data was evaluated for various rotational increment sizes around a revolute joint. A novel smoothing procedure, customized for this type of source data, was developed, enabling SDA detection from incremental rotations of less than 1 deg, at an accuracy appropriate for intra-operative measurement of human joint motion. Examples of SDA determination are given for motion tracking of a ball joint and of the elbow articulation.

Publisher

ASME International

Subject

Physiology (medical),Biomedical Engineering

Reference17 articles.

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2. Andrews, J. G., 1993, “Segment and joint orientations in 3D space,” Unpublished Tutorial Notes, 17th Annual Meeting of the American Society of Biomechanics, Univ. of Iowa.

3. Beggs, J. S., 1983, Kinematics, Springer-Verlag, Berlin.

4. Bogert A. J. van den , SmithG. D., and NiggB. M., 1994, “In vivo determination of the anatomical axes of the ankle joint complex: An optimization approach,” J. Biomech., 27: 12, 1477–1488.

5. DeLuzio K. J. , WyssU. P., LiJ., and CostiganP. A., 1993, “A procedure to validate three-dimensional motion assessment systems,” J. Biomech., 26: 6, 753–759.

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