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Effects of sitting postures on risks for deep tissue injury in the residuum of a transtibial prosthetic-user: a biomechanical case study
Authors:S. Portnoy  I. Siev-Ner  N. Shabshin
Affiliation:1. Department of Biomedical Engineering , Faculty of Engineering, Tel Aviv University , Ramat Aviv , Israel;2. Department of Orthopaedic Rehabilitation , Chaim Sheba Medical Center , Ramat Gan , Israel;3. Department of Diagnostic Imaging , Chaim Sheba Medical Center , Ramat Gan , Israel
Abstract:Transtibial amputation prosthetic-users are at risk of developing deep tissue injury (DTI) while donning their prosthesis for prolonged periods; however, no study addresses the mechanical loading of the residuum during sitting with a prosthesis. We combined MRI-based 3D finite element modelling of a residuum with an injury threshold and a muscle damage law to study risks for DTI in one sitting subject in two postures: 30°-knee-flexion vs. 90°-knee-flexion. We recorded skin-socket pressures, used as model boundary conditions. During the 90°-knee-flexion simulations, major internal muscle injuries were predicted (>1000 mm3). In contrast, the 30°-knee-flexion simulations only produced minor injury ( < 14 mm3). Predicted injury rates at 90°-knee-flexion were over one order of magnitude higher than those at 30°-knee-flexion. We concluded that in this particular subject, prolonged 90°-knee-flexion sitting theoretically endangers muscle viability in the residuum. By expanding the studies to large subject groups, this research approach can support development of guidelines for DTI prevention in prosthetic-users.
Keywords:pressure ulcer  patient-specific finite element model  tissue injury threshold  below-knee prosthesis  amputation rehabilitation
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