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Matthew J. Silva

Orthopaedic Research Laboratories

Department of Orthopaedic Surgery

Barnes-Jewish Hospital at Washington University

1 Barnes-Jewish Plaza

USA

[email]@*.wustl.edu

Name/email consistency: high

 
 
 
 
 
 
 

Affiliations

  • Orthopaedic Research Laboratories, Department of Orthopaedic Surgery, Barnes-Jewish Hospital at Washington University, 1 Barnes-Jewish Plaza, USA. 2004
  • Department of Orthopaedic Surgery, Washington University School of Medicine, St. Louis, Missouri 63110, USA. 1998 - 2002

References

  1. Tendon injury response: assessment of biomechanical properties, tissue morphology and viability following flexor digitorum profundus tendon transection. Silva, M.J., Ritty, T.M., Ditsios, K., Burns, M.E., Boyer, M.I., Gelberman, R.H. J. Orthop. Res. (2004) [Pubmed]
  2. Nanoindentation and whole-bone bending estimates of material properties in bones from the senescence accelerated mouse SAMP6. Silva, M.J., Brodt, M.D., Fan, Z., Rho, J.Y. J. Biomech (2004) [Pubmed]
  3. The insertion site of the canine flexor digitorum profundus tendon heals slowly following injury and suture repair. Silva, M.J., Boyer, M.I., Ditsios, K., Burns, M.E., Harwood, F.L., Amiel, D., Gelberman, R.H. J. Orthop. Res. (2002) [Pubmed]
  4. What's new in orthopaedic research. Silva, M.J., Sandell, L.J. J. Bone. Joint. Surg. Am (2002) [Pubmed]
  5. In vitro sodium fluoride exposure decreases torsional and bending strength and increases ductility of mouse femora. Silva, M.J., Ulrich, S.R. J. Biomech (2000) [Pubmed]
  6. Reduced bone stress as predicted by composite beam theory correlates with cortical bone loss following cemented total hip arthroplasty. Silva, M.J., Reed, K.L., Robertson, D.D., Bragdon, C., Harris, W.H., Maloney, W.J. J. Orthop. Res. (1999) [Pubmed]
  7. Effects of increased in vivo excursion on digital range of motion and tendon strength following flexor tendon repair. Silva, M.J., Brodt, M.D., Boyer, M.I., Morris, T.S., Dinopoulos, H., Amiel, D., Gelberman, R.H. J. Orthop. Res. (1999) [Pubmed]
  8. Computed tomography-based finite element analysis predicts failure loads and fracture patterns for vertebral sections. Silva, M.J., Keaveny, T.M., Hayes, W.C. J. Orthop. Res. (1998) [Pubmed]
 
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