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Non-invasive vibrometry-based diagnostic detection of acetabular cup loosening in total hip replacement (THR). | LitMetric

Non-invasive vibrometry-based diagnostic detection of acetabular cup loosening in total hip replacement (THR).

Med Eng Phys

The Centre for Orthopaedic Biomechanics, Department of Mechanical Engineering, University of Bath, Bath BA2 7AY, United Kingdom. Electronic address:

Published: October 2017

AI Article Synopsis

  • Total hip replacement aims to relieve pain and restore function, but current imaging techniques are unreliable for early detection of loosening.
  • The study tested the effectiveness of a novel vibrometry technique by simulating different levels of acetabular cup loosening in composite bones.
  • Results showed that the vibrometry method could successfully distinguish between secure and loosened conditions, indicating its potential as a reliable clinical tool.

Article Abstract

Total hip replacement is aimed at relieving pain and restoring function. Currently, imaging techniques are primarily used as a clinical diagnosis and follow-up method. However, these are unreliable for detecting early loosening, and this has led to the proposal of novel techniques such as vibrometry. The present study had two aims, namely, the validation of the outcomes of a previous work related to loosening detection, and the provision of a more realistic anatomical representation of the clinical scenario. The acetabular cup loosening conditions (secure, and 1 and 2 mm spherical loosening) considered were simulated using Sawbones composite bones. The excitation signal was introduced in the femoral lateral condyle region using a frequency range of 100-1500 Hz. Both the 1 and 2 mm spherical loosening conditions were successfully distinguished from the secure condition, with a favourable frequency range of 500-1500 Hz. The results of this study represent a key advance on previous research into vibrometric detection of acetabular loosening using geometrically realistic model, and demonstrate the clinical potential of this technique.

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Source
http://dx.doi.org/10.1016/j.medengphy.2017.06.037DOI Listing

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