Approach for Non-Intrusive Detection of the Fit of Orthopaedic Devices Based on Vibrational Data

Author:

Neupetsch Constanze123ORCID,Hensel Eric1,Heinke Andreas4,Stapf Tom1,Stecher Nico4,Malberg Hagen4,Heyde Christoph-Eckhard3ORCID,Drossel Welf-Guntram12ORCID

Affiliation:

1. Fraunhofer Institute for Machine Tools and Forming Technology, 09126 Chemnitz, Germany

2. Professorship Adaptronics and Lightweight Design, Faculty of Mechanical Engineering, Chemnitz University of Technology, 09111 Chemnitz, Germany

3. Department of Orthopaedic, Trauma and Plastic Surgery, University of Leipzig Medical Center, 04103 Leipzig, Germany

4. Institute of Biomedical Engineering, Dresden University of Technology, 01307 Dresden, Germany

Abstract

The soft tissues of residual limb amputees are subject to large volume fluctuations over the course of a day. Volume fluctuations in residual limbs can lead to local pressure marks, causing discomfort, pain and rejection of prostheses. Existing methods for measuring interface stress encounter several limitations. A major problem is that the measurement instrumentation is applied in the sensitive interface between the prosthesis and residual limb. This paper presents the principle investigation of a non-intrusive technique to evaluate the fit of orthopaedic prosthesis sockets in transfemoral amputees based on experimentally obtained vibrational data. The proposed approach is based on changes in the dynamical behaviour detectable at the outer surface of prostheses; thus, the described interface is not affected. Based on the experimental investigations shown and the derived results, it can be concluded that structural dynamic measurements are a promising non-intrusive technique to evaluate the fit of orthopaedic prosthesis sockets in transfemoral amputee patients. The obtained resonance frequency changes of 2% are a good indicator of successful applicabilityas these changes can be detected without the need for complex measurement devices.

Funder

Chemnitz University of Technology

State Ministry of Science, Culture and Tourism

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

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