Hip resurfacing remains a potentially valuable surgical procedure for appropriately-selected patients with optimised implant choices. However, concern regarding high early failure rates continues to undermine confidence in use. A large contributor to failure is adverse local tissue reactions around metal-on-metal (MoM) bearing surfaces.
View Article and Find Full Text PDFBackground: Ceramic on Ceramic bearings in Total Hip Arthroplasty (THA) afford a low friction coefficient, low wear rates and extreme hardness. Significant complications include hip squeak, ceramic fracture and poor polyethylene performance in revision procedures due to imbedding of abrasive microscopic ceramic fragments. We report on the results of this bearing at a minimum of 10 years.
View Article and Find Full Text PDFMedical and surgical research has always had a long-standing relationship with industry-based funding from sources, such as drug and device companies. Concerns exist surrounding the association between funding sources, outcome from studies and publication bias. Studies demonstrating increased odds ratios associated with positive results in industry sponsored studies across medicine have stimulated Cochrane reviews, literature reviews and other articles to examine this relationship further.
View Article and Find Full Text PDFThe Patient-Reported Outcomes Measurement Information System (PROMIS) is a National Institute of Health initiative to improve the measurement of clinically important symptoms and outcomes. Patient-Reported Outcomes capture health outcomes that are relevant to the daily functioning of the patient and include the monitoring of physical, mental, and social health. PROMIS offers a standardized tool to measure Patient-Reported Outcomes for use in both the clinical and research setting.
View Article and Find Full Text PDFFinite element analysis is a computational technique to predict how different materials will react when a range of forces are applied. In the field of orthopedics, this technique has predominantly been used for implant design and testing. As the technology improves, increasing clinical applications are being developed, offering promise in the areas of surgical planning and the opportunity to tailor implants to individual patient characteristics.
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