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How has John D. DesJardins's publication output changed over time?
ScholarIQpublication output · 1999–2024
Output grew0% over the shown period — from 1 works in 1999 to 1 in 2024.
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1999200020022006200720082010201320172024
What are the most-cited papers on John D. DesJardins?
ScholarIQmost cited works
Hamstrings cocontraction reduces internal rotation, anterior translation, and anterior cruciate ligament load in weight‐bearing flexion
Bruce A. MacWilliams, David R. Wilson, John D. DesJardins, J. Roméro, Edmund Y.S. Chao
Journal of Orthopaedic Research®. 1999208 Citations
The use of a force-controlled dynamic knee simulator to quantify the mechanical performance of total knee replacement designs during functional activity
John D. DesJardins, Peter S. Walker, Hani Haider, J Perry
Journal of Biomechanics. 2000121 Citations
UHMWPE wear against roughened oxidized zirconium and CoCr femoral knee components during force-controlled simulation
John D. DesJardins, Brian Burnikel, Martine LaBerge
Wear. 200761 Citations
A direct comparison of patient and force-controlled simulator total knee replacement kinematics
John D. DesJardins, Scott A. Banks, Lisa Benson, Thomas B. Pace, Martine LaBerge
Journal of Biomechanics. 200761 Citations
Development of Luminescent pH Sensor Films for Monitoring Bacterial Growth Through Tissue
Fenglin Wang, Yash S. Raval, Hongyu Chen, Tzuen‐Rong Tzeng, John D. DesJardins, Jeffrey N. Anker
S2500736452. 201360 CitationsOPEN ACCESS
Related on ScholarIQ
Clemson University
Institution
Hamstrings cocontraction reduces internal rotation, anterior translation, and anterior cruciate ligament load in weight‐bearing flexion
Paper
The use of a force-controlled dynamic knee simulator to quantify the mechanical performance of total knee replacement designs during functional activity
Paper
UHMWPE wear against roughened oxidized zirconium and CoCr femoral knee components during force-controlled simulation
Paper
A direct comparison of patient and force-controlled simulator total knee replacement kinematics
Paper
Development of Luminescent pH Sensor Films for Monitoring Bacterial Growth Through Tissue
Paper