Accuracy of imageless stem navigation during simulated total hip arthroplasty
DOI:
https://doi.org/10.1080/17453670810016858Abstract
Background and purpose New computer-assisted measurement algorithms have been established to support the surgeon during total joint replacement intraoperatively. We asked whether the assessment of leg length and offset measured with an imageless navigation system is reliable during simulated total hip arthroplasty in a sawbone model test bench. Methods and results We found no statistically significant difference between change in leg length and offset measured on a millimeter scale connected to the test bench and that obtained with the calculation algorithm of the imageless navigation system. Interpretation Measurement of leg length and offset with an imageless navigation system is reliable during simulated total hip arthroplasty. The leg length situation algorithm offers the advantage of measuring leg length and offset by determination of the change in position of the femur relative to the pelvic coordinate system without the need to calculate the center of rotation of the hip joint. Further studies should address the accuracy of this imageless stem navigation method in an anatomical and clinical setting.Downloads
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Published
2008-01-01
How to Cite
Renkawitz, T., Sendtner, E., Grifka, J., & Kalteis, T. (2008). Accuracy of imageless stem navigation during simulated total hip arthroplasty. Acta Orthopaedica, 79(6), 785–788. https://doi.org/10.1080/17453670810016858
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Acta Orthopaedica (Scandinavica) content is available freely online as from volume 1, 1930. The journal owner owns the copyright for all material published until volume 80, 2009. As of June 2009, the journal has however been published fully Open Access, meaning the authors retain copyright to their work. As of June 2009, articles have been published under CC-BY-NC or CC-BY licenses, unless otherwise specified.
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