Robert L. Spilker

Affiliations: 
Rensselaer Polytechnic Institute, Troy, NY, United States 
Area:
Biomedical Engineering, Mechanical Engineering
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"Robert Spilker"

Children

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Kerem M. Un grad student 2002 RPI
Taiseung Yang grad student 2003 RPI
Hongqiang Guo grad student 2012 RPI
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Publications

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Guo H, Shah M, Spilker RL. (2014) A finite element implementation for biphasic contact of hydrated porous media under finite deformation and sliding. Proceedings of the Institution of Mechanical Engineers. Part H, Journal of Engineering in Medicine. 228: 225-36
Guo H, Spilker RL. (2014) An augmented Lagrangian finite element formulation for 3D contact of biphasic tissues. Computer Methods in Biomechanics and Biomedical Engineering. 17: 1206-16
Guo H, Maher SA, Spilker RL. (2013) Biphasic finite element contact analysis of the knee joint using an augmented Lagrangian method. Medical Engineering & Physics. 35: 1313-20
Leucht P, Monica SD, Temiyasathit S, et al. (2013) Primary cilia act as mechanosensors during bone healing around an implant. Medical Engineering & Physics. 35: 392-402
Guo H, Suzanne AM, Spilker RL. (2013) A 3D biphasic finite element model of the human knee joint for the study of tibiofemoral contact and fluid pressurization Asme 2013 Summer Bioengineering Conference, Sbc 2013. 1
Guo H, Nickel JC, Iwasaki LR, et al. (2012) An augmented Lagrangian method for sliding contact of soft tissue. Journal of Biomechanical Engineering. 134: 084503
Guo H, Spilker RL. (2011) Biphasic finite element modeling of hydrated soft tissue contact using an augmented Lagrangian method. Journal of Biomechanical Engineering. 133: 111001
Galie PA, Spilker RL, Stegemann JP. (2011) A linear, biphasic model incorporating a brinkman term to describe the mechanics of cell-seeded collagen hydrogels. Annals of Biomedical Engineering. 39: 2767-79
Shah M, Spilker R, Koff MF, et al. (2011) Patient specific three dimensional knee model 2011 Ieee 37th Annual Northeast Bioengineering Conference, Nebec 2011
Galie P, Spilker RL. (2009) A two-dimensional computational model of lymph transport across primary lymphatic valves. Journal of Biomechanical Engineering. 131: 111004
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