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Tibio-Femoral Contact Pressure During Gait

[+] Author Affiliations
Antonis P. Stylianou, Mohammad Kia, Trent M. Guess

University of Missouri - Kansas City, Kansas City, MO

Paper No. SBC2013-14685, pp. V01BT31A004; 2 pages
doi:10.1115/SBC2013-14685
From:
  • ASME 2013 Summer Bioengineering Conference
  • Volume 1B: Extremity; Fluid Mechanics; Gait; Growth, Remodeling, and Repair; Heart Valves; Injury Biomechanics; Mechanotransduction and Sub-Cellular Biophysics; MultiScale Biotransport; Muscle, Tendon and Ligament; Musculoskeletal Devices; Multiscale Mechanics; Thermal Medicine; Ocular Biomechanics; Pediatric Hemodynamics; Pericellular Phenomena; Tissue Mechanics; Biotransport Design and Devices; Spine; Stent Device Hemodynamics; Vascular Solid Mechanics; Student Paper and Design Competitions
  • Sunriver, Oregon, USA, June 26–29, 2013
  • Conference Sponsors: Bioengineering Division
  • ISBN: 978-0-7918-5561-4
  • Copyright © 2013 by ASME

abstract

Detailed analysis of knee joint loading during ambulatory activities is of utmost importance for improving the design of total knee replacement components and the outcome of the surgical procedures. A dynamic computational model capable of concurrent predictions of muscle, ligament, and articular surface contact forces would be the ideal tool for enhancing our knowledge of these in-vivo loads and for exploring different loading scenarios.

Copyright © 2013 by ASME

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