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2014
   
1 F. Ansari, C. Major, T. R. Norris, S. B. Gunther, M. Ries, and L. Pruitt. "Unscrewing instability of modular reverse shoulder prosthesis increases propensity for in vivo fracture: a report of two cases." Journal of shoulder and elbow surgery/American Shoulder and Elbow Surgeons...[et al.] 23, no. 2 (2014): e40-5.
2 E.W. Patten, D. Van Citters, M. D. Ries, and L. Pruitt. "Quantifying cross-shear under translation, rolling, and rotation, and its effect on UHMWPE wear." Wear 313, no. 1 (2014): 125-134.
2013
   
3 F. Ansari, J. Chang, J. Huddleston, D. Van Citters, M. Ries, and L. Pruitt. "Fractography and oxidative analysis of gamma inert sterilized posterior-stabilized tibial insert post fractures: Report of two cases." The Knee 20, no. 6 (2013): 609-613.
4 E.W. Patten, D.Van Citters, M.D. Ries, and L. Pruitt. "Wear of UHMWPE from sliding, rolling, and rotation in a multidirectional tribo-system." Wear 304, no. 1 (2013): 60-66.
5 L. Pruitt, F. Ansari, M. Kury, A. Mehdizah, E.W. Patten, J. Huddlestein, D. Mickelson, J. Chang, K. Hubert, and M. D. Ries. "Clinical trade‐offs in cross‐linked ultrahigh‐molecular‐weight polyethylene used in total joint arthroplasty." Journal of Biomedical Materials Research Part B: Applied Biomaterials 101, no. 3 (2013): 476-484.
2011
   
6 F. Ansari, J. Chang, J. Huddleston, D. Van Citters, M. Ries, and L. Pruitt. "Fractography and oxidative analysis of gamma inert sterilized posterior-stabilized tibial insert post fractures: Report of two cases." The Knee 20, no. 6 (2013): 609-613.
7 E.W. Patten, D.Van Citters, M.D. Ries, and L. Pruitt. "Wear of UHMWPE from sliding, rolling, and rotation in a multidirectional tribo-system." Wear 304, no. 1 (2013): 60-66.
8 L. Pruitt, F. Ansari, M. Kury, A. Mehdizah, E.W. Patten, J. Huddlestein, D. Mickelson, J. Chang, K. Hubert, and M. D. Ries. "Clinical trade‐offs in cross‐linked ultrahigh‐molecular‐weight polyethylene used in total joint arthroplasty." Journal of Biomedical Materials Research Part B: Applied Biomaterials 101, no. 3 (2013): 476-484.
2010
   
9 S.A. Atwood, D.W. Van Citters, E.W. Patten, J. Furmanski, M. D. Ries, and L.A. Pruitt. "Tradeoffs amongst fatigue, wear, and oxidation resistance of cross-linked ultra-high molecular weight polyethylene." Journal of the mechanical behavior of biomedical materials 4, no. 7 (2011): 1033-1045.
10 S.R. Kane, P. D. Ashby, and L. Pruitt. "Microscale wear behavior and crosslinking of PEG-like coatings for total hip replacements." Journal of Materials Science: Materials in Medicine 21.4 (2010): 1037-1045.
11 S.A. Atwood, E.W. Patten, K.J. Bozic, L.A. Pruitt, and M.D. Ries. "Corrosion-Induced Fracture of a Double-Modular Hip Prosthesis." The Journal of Bone & Joint Surgery 92, no. 6 (2010): 1522-1525.
2009
   
12 S. Gupta, J.Lin, P. Ashby, and L. Pruitt. "A fiber reinforced poroelastic model of nanoindentation of porcine costal cartilage: a combined experimental and finite element approach." Journal of the mechanical behavior of biomedical materials 2, no. 4 (2009): 326-338.
13 S. R. Kane, P. D. Ashby, and L. Pruitt. "ATR‐FTIR as a thickness measurement technique for hydrated polymer‐on‐polymer coatings." Journal of Biomedical Materials Research Part B: Applied Biomaterials 91.2 (2009): 613-620.
14 L. Pruitt, and J. Furmanski. "Polymeric biomaterials for load-bearing medical devices." JOM 61.9 (2009): 14-20.
15 N. Gundiah, M. B. Ratcliffe, and L. Pruitt. "The biomechanics of arterial elastin." Journal of the mechanical behavior of biomedical materials 2, no. 3 (2009): 288-296.
16 D.M. Ebenstein, D. Coughlin, J. Chapman, C. Li, and L. Pruitt. "Nanomechanical properties of calcification, fibrous tissue, and hematoma from atherosclerotic plaques." Journal of Biomedical Materials Research Part A 91, no. 4 (2009): 1028-1037.
17 J. Furmanski, M. Anderson, S. Bal, A. S. Greenwald, D. Halley, B. Penenberg, M. Ries, and L. Pruitt. "Clinical fracture of cross-linked UHMWPE acetabular liners." Biomaterials 30, no. 29 (2009): 5572-5582.
2008
   
18 C. Rimnac, and L. Pruitt. "How do material properties influence wear and fracture mechanisms?." Journal of the American Academy of Orthopaedic Surgeons 16.suppl 1 (2008): S94-S100.
2007
   
19 J. Furmanski, and L. Pruitt. "Peak stress intensity dictates fatigue crack propagation in UHMWPE." Polymer 48, no. 12 (2007): 3512-3519.
20 D.M. Ebenstein, D. Coughlin, J. Chapman, C. Li, and L. Pruitt, “Structure-property relations of atherosclerotic plaque tissue,” submitted to Journal of Biomedical Materials Research for publication (2007).
21 J. Furmanski, S. Gupta, A. Chawan, A. Kohm, B. Jewett, L. Pruitt, and M. Ries, “Extensive Surface Cracking in a Highly Crosslinked Acetabular Liner Associated with a Non-Spherical Femoral Head Counterface,” Journal of Bone and Joint Surgery, accepted for publication (2007).
22 S. Gupta, F. Carrillo, C. Li, L. Pruitt, and C. Puttlitz, “Adhesive Forces Significantly Affect Elastic Modulus Determination of Soft Polymeric Materials in Nanoindentation,” Journal of Materials Science Letters 61(2):448-451(2007).
23 N. Gundiah, M, Ratcliffe, and L. Pruitt, “A new constitutive model for arterial elastin: I. Comparison of purification methods for mechanical tests and material symmetry of arterial elastin,” Journal of Biomechanics accepted for publication (2007).
24 N. Gundiah, D. Chang, P. Zhang, L. Pruitt, P. Ursell, and M.B Ratcliffe, “Biomechanical and Structural Changes in Healing Myocardial Infarct Tissue,” submitted to American Physiological Society for publication (2007).
2006
   
25 C. Li, L.Pruitt, and K. King, “ Nanoindentation Differentiates Tissue-Scale Properties of Native Articular Cartilage,” Journal of Biomedical Materials Research Sep 15;78(4):729-38 (2006).
26 D.M. Ebenstein and L. Pruitt, “Nanoindentation of Biological Materials,” Nano Today 1(3) 27-33 (2006).
27 N. Gundiah and L. Pruitt, “Role of elastin and collagen in constitutive properties of arteries: experiments using elastase and collagenase” submitted to Journal of Biomechanical Engineering for publication (2006).
28 K. Cheng, L. Pruitt, C. Zaloudek, and M. D. Ries, “Osteolysis is caused by Tibial Component Debonding in Total Knee Arthroplasty,” Clinical Orthopaedics and Related Research 443 333-336 (2006).
29 M.D. Ries, T. Petrie, L. Al-Marashi, E. Young, P. Goldstein, A. Hetherington and L. Pruitt,” In-vivo Behavior of Acrylic Bone Cement in Total Hip Arthroplasty,” Biomaterials, 27(2) 256-261 (2006).
30 K. Simis, A. Bistolfi, A. Bellare and L. Pruitt, “The Combined Effects of Crosslinking and Elevated Crystallinity on the Microstructural and Mechanical Properties of Ultra High Molecular Weight Polyethylene,” Biomaterials 27(9) 1688-1694 (2006).
2005
   
31 A.P.D. Elfick, K. Healy, A.Unsworth, L. Pruitt, "The Importance of Protein Physisorption in BioMEMs/NEMs Applications: A Nanotribological Study" in "Life Cycle Tribology" (Eds Dowson D, Priest M, Dalmaz G, Lubrecht AA), p835-844, Tribology and Interface Engineering Series, No 48, Elsevier, Amsterdam, (2005).
32 S. Gupta, F. Carrillo, M. Balooch, L. Pruitt, C.M. Puttlitz, “Simulated Soft Tissue Nanoindentation–A Finite Element Study,” Journal of Materials Research 20(8) 1979-1994 (2005).
33 M. Ries and L. Pruitt, “Effect of Crosslinking on the Microstructure and Mechanical Properties of UHMWPE,” Clinical Orthopedics and Related Research, 440:149-156 (2005).
34 F. Carrillo, S. Gupta, M. Balooch, S.J. Marshall, G.W. Marshall, L. Pruitt, C.M. Puttlitz, “Nanoindentation of Polydimethylsiloxane Elastomers:Effect of crosslinking, work of adhesion, and fluid environment on elastic modulus,” Journal of Materials Research, 20(10) 2820-2830 (2005).
35 L. Pruitt, “Deformation, Yielding, Fracture and Fatigue Behavior of Conventional and Highly Cross-linked Ultra High Molecular Weight Polyethylene,” Biomaterials 26 (8) 905-915 (2005).
2004
   
36 L. Bradford, D. Baker, M.D. Ries, and L. Pruitt, “Fatigue Crack Propagation Resistance of Highly Crosslinked Polyethylene,” Clinical Orthopedics and Related Research, (429): 68-72 (2004).
37 D. M. Ebenstein, A. Kuo, J.J. Rodrigo, A. H.Reddi, M.D. Ries, and L. Pruitt, “A Nanoindentation Technique for Functional Evaluation of Cartilage Repair Tissue,” Journal of Materials Research, 19(1), 273-281 (2004).