Usefulness of Hammering Sound Frequency Analysis as an Evaluation Method for the Prevention of Trouble during Hip Replacement
- 1 Department of Biomedical Engineering and Technology, Kitasato University School of Allied Health Sciences, Kanagawa, Japan
- 2 Department of Orthopedic Surgery, Kitasato University School of Medicine, Kanagawa, Japan
- 3 Department of Orthopedic Surgery, Kitasato University School of Medicine, Kanagawa, Japan
- 4 Mark Electronics Co., Ltd., Kanagawa, Japan
- 5 Mark Electronics Co., Ltd., Kanagawa, Japan
- 6 Department of Biomedical Engineering and Technology, Kitasato University School of Allied Health Sciences, Kanagawa, Japan
- 7 Department of Biomedical Engineering and Technology, Kitasato University School of Allied Health Sciences, Kanagawa, Japan
Abstract
In total hip arthroplasty, judgment of the appropriateness of stem hammering is dependent on the experience and feelings of the surgeon and no objective evaluation method has been established. In this study, a frequency analysis of the hammering sounds in total hip arthroplasty was performed to investigate objective judgment criteria capable of preventing problems during surgery. Stem hammering was applied following the surgeon’s feelings as usual in an operating room. A directional microphone was placed at a distance about 2 m from the surgical field and the peak frequency reaching the maximum amplitude was determined by Fourier analysis. It was clarified that the same peak frequency repeats when appropriate fixation is acquired during surgery, suggesting that intraoperative fracture and postoperative loosening can be prevented by stopping hammering at the time the peak frequency converged. Investigation of changes in the hammering sound frequency may serve as objective judgment criteria capable of preventing problems during surgery.
- Foster, A.P., Thompson, N.W., John, W. and Charlwood, A.P. (2005) Periprosthetic Femoral Fractures—A Comparison between Cemented and Uncemented Hemiarthroplasties. Injury, 36, 424-429. https://doi.org/10.1016/j.injury.2004.07.023
- Sakai, R., Takahashi, A., Takahira, N., Uchiyama, K., Yamamoto, T., Uchida, K., Fukusima, K., Moriya, M., Takaso, M., Itoman, M. and Mabuchi, K. (2011) Hammering Force during Cementless Total Hip Arthroplasty and Risk of Microfracture. HIP International, 21, 330-335. https://doi.org/10.5301/hip.2011.8408
- Sakai, R., Kikuchi, A., Morita, T., Takahira, N., Uchiyama, K., Yamamoto, T., Moriya, M., Uchida, K., Fukusima, K., Tanaka, K., Takaso, M., Itoman, M. and Mabuchi, K. (2011) Hammering Sound Frequency Analysis and Prevention of Intraoperative Periprosthetic Fractures during Total Hip Arthroplasty. HIP International, 21, 718-723. https://doi.org/10.5301/HIP.2011.8823
- Götze, C., Steens, W., Vieth, V., Poremba, C., Claes, L. and Steinbeck, J. (2002) Primary Stability in Cementless Femoral Stems: Custom-Made versus Conventional Femoral Prosthesis. Clinical Biomechanics, 17, 267-273. https://doi.org/10.1016/S0268-0033(02)00012-8
- Schwartz, J.T., Mayer, J.G. and Engh, C.A. (1989) Femoral Fracture during Non-Cemented Total Hip Arthroplasty. Journal of Bone and Joint Surgery, 71, 1135-1142. https://doi.org/10.2106/00004623-198971080-00003
- Lindahl, H. (2007) Epidemiology of Periprosthetic Femur Fracture around a Total Hip Arthroplasty. Injury, 38, 651-654. https://doi.org/10.1016/j.injury.2007.02.048
- Moroni, A., Faldini, C., Piras, F. and Giannini, S. (2000) Risk Factors for Intraoperative Femoral Fractures during Total Hip Replacement. Annales Chirurgiae et Gynaecologiae, 89, 113-118.
- Angulo, á., Tang, J., Khadimallah, A., Soua, S., Mares, C. and Gan, T.H. (2019) Acoustic Emission Monitoring of Fatigue Crack Growth in Mooring Chains. Applied Sciences, 9, 2176-2187. https://doi.org/10.3390/app9112187
- Ye, J., Iwata, M., Murakawa, M. and Higuchi, T. (2015) Noise Reduction Methods for Hammering Impact Acoustic Inspection: An Experimental Comparison. Structural Health Monitoring, 1, 1-8. https://doi.org/10.12783/SHM2015/151
- Crisman, A., Yoder, N., McCuskey, M., Meneghini, M. and Cornwell, P. (2007) Femoral Component Insertion Monitoring Using Human Cadaveric Specimens. 25th Conference and Exposition on Structural Dynamics, Orlando, 19-22 February 2007, 1-15.
- Meredith, N., Books, K., Fribergs, B., Jemt, T. and Sennerby, L. (2002) Resonance Frequency Measurements of Implant Stability in Vivo. A Cross-Sectional and Longitudinal Study of Resonance Frequency Measurements on Implants in the Edentulous and Partially Dentate Maxilla. Clinical Oral Implants Research, 8, 226-233. https://doi.org/10.1034/j.1600-0501.1997.080309.x