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C P Neu

Showing results (11-20 of 32) with videos related to

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Osteoarthritis and Cartilage|May 24, 2019
Propagation of microcracks in collagen networks of cartilage under mechanical loadsS Santos, N Emery, C P Neu, et al.
The Orthopedic Clinics of North America|May 2, 2001
Advances in the in vivo measurement of normal and abnormal carpal kinematicsJ J Crisco, S W Wolfe, C P Neu, et al.
Journal of Tissue Engineering and Regenerative Medicine|June 17, 2009
Characterization of engineered tissue construct mechanical function by magnetic resonance imagingC P Neu, H F Arastu, S Curtiss, et al.
Journal of Biomechanics|June 18, 2011
The role of lubricant entrapment at biological interfaces: reduction of friction and adhesion in articular cartilageS M T Chan, C P Neu, K Komvopoulos, et al.
Magnetic Resonance in Medicine|January 29, 2005
MRI-based technique for determining nonuniform deformations throughout the volume of articular cartilage explantsC P Neu, M L Hull, J H Walton, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|March 1, 2005
A new tibial coordinate system improves the precision of anterior-posterior knee laxity measurements: a cadaveric study using Roentgen stereophotogrammetric analysisP J Roos, C P Neu, M L Hull, et al.
Osteoarthritis and Cartilage|December 3, 2014
Optical clearing in collagen- and proteoglycan-rich osteochondral tissuesC P Neu, T Novak, K F Gilliland, et al.
Materials Science & Engineering. C, Materials for Biological Applications|May 10, 2011
Polymer Mechanics as a Model for Short-Term and Flow-Independent Cartilage ViscoelasticityR K June, C P Neu, J R Barone, et al.
Journal of Biomechanics|February 15, 2011
Dependence of nanoscale friction and adhesion properties of articular cartilage on contact loadS M T Chan, C P Neu, K Komvopoulos, et al.
Injury|April 20, 2010
A biomechanical comparison of the Surgical Implant Generation Network (SIGN) tibial nail with the standard hollow nailL A Calafi, T Antkowiak, S Curtiss, et al.
Pageof 4

Showing results (11-20 of 32) with videos related to

Sort By:
Pageof 4
Osteoarthritis and Cartilage|May 24, 2019
Propagation of microcracks in collagen networks of cartilage under mechanical loadsS Santos, N Emery, C P Neu, et al.
The Orthopedic Clinics of North America|May 2, 2001
Advances in the in vivo measurement of normal and abnormal carpal kinematicsJ J Crisco, S W Wolfe, C P Neu, et al.
Journal of Tissue Engineering and Regenerative Medicine|June 17, 2009
Characterization of engineered tissue construct mechanical function by magnetic resonance imagingC P Neu, H F Arastu, S Curtiss, et al.
Journal of Biomechanics|June 18, 2011
The role of lubricant entrapment at biological interfaces: reduction of friction and adhesion in articular cartilageS M T Chan, C P Neu, K Komvopoulos, et al.
Magnetic Resonance in Medicine|January 29, 2005
MRI-based technique for determining nonuniform deformations throughout the volume of articular cartilage explantsC P Neu, M L Hull, J H Walton, et al.
Journal of Orthopaedic Research : Official Publication of the Orthopaedic Research Society|March 1, 2005
A new tibial coordinate system improves the precision of anterior-posterior knee laxity measurements: a cadaveric study using Roentgen stereophotogrammetric analysisP J Roos, C P Neu, M L Hull, et al.
Osteoarthritis and Cartilage|December 3, 2014
Optical clearing in collagen- and proteoglycan-rich osteochondral tissuesC P Neu, T Novak, K F Gilliland, et al.
Materials Science & Engineering. C, Materials for Biological Applications|May 10, 2011
Polymer Mechanics as a Model for Short-Term and Flow-Independent Cartilage ViscoelasticityR K June, C P Neu, J R Barone, et al.
Journal of Biomechanics|February 15, 2011
Dependence of nanoscale friction and adhesion properties of articular cartilage on contact loadS M T Chan, C P Neu, K Komvopoulos, et al.
Injury|April 20, 2010
A biomechanical comparison of the Surgical Implant Generation Network (SIGN) tibial nail with the standard hollow nailL A Calafi, T Antkowiak, S Curtiss, et al.
Pageof 4