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Journal of Materials Science. Materials in Medicine|November 11, 2011
Characterization of bionanocomposite scaffolds comprised of mercaptoethylamine-functionalized gold nanoparticles crosslinked to acellular porcine tissueCorey R Deeken, Sharon L Bachman, Bruce J Ramshaw, et al.Surgical Endoscopy|July 3, 2016
Evaluation of a fully absorbable poly-4-hydroxybutyrate/absorbable barrier composite mesh in a porcine model of ventral hernia repairJeffrey R Scott, Corey R Deeken, Robert G Martindale, et al.Journal of the American College of Surgeons|June 28, 2011
Effect of repetitive loading on the mechanical properties of synthetic hernia repair materialsBraden J Eliason, Margaret M Frisella, Brent D Matthews, et al.Journal of the Mechanical Behavior of Biomedical Materials|July 6, 2014
Biaxial analysis of synthetic scaffolds for hernia repair demonstrates variability in mechanical anisotropy, non-linearity and hysteresisCorey R Deeken, Dominic M Thompson, Ryan M Castile, et al.Frontiers in Surgery|May 1, 2023
Fully resorbable poly-4-hydroxybutyrate (P4HB) mesh for soft tissue repair and reconstruction: A scoping reviewCorey R Deeken, David C Chen, Manuel Lopez-Cano, et al.Journal of Biomedical Materials Research. Part A|January 22, 2011
Characterization of bionanocomposite scaffolds comprised of amine-functionalized single-walled carbon nanotubes crosslinked to an acellular porcine tendonCorey R Deeken, Matthew J Cozad, Sharon L Bachman, et al.Medical Devices (Auckland, N.Z.)|June 12, 2023
Efficacy of Flowable Collagen Hemostat Evaluated in Preclinical Models of Liver Injury and Spinal Cord ExposureSpencer P Lake, Kasia Bradbury, Darcy H Gagne, et al.Journal of Biomedical Materials Research. Part B, Applied Biomaterials|March 12, 2011
Characterization of bionanocomposite scaffolds comprised of amine-functionalized gold nanoparticles and silicon carbide nanowires crosslinked to an acellular porcine tendonCorey R Deeken, Derek B Fox, Sharon L Bachman, et al.Journal of the Mechanical Behavior of Biomedical Materials|December 9, 2014
Pore size and pore shape--but not mesh density--alter the mechanical strength of tissue ingrowth and host tissue response to synthetic mesh materials in a porcine model of ventral hernia repairSpencer P Lake, Shuddhadeb Ray, Ahmed M Zihni, et al.Journal of the American College of Surgeons|March 26, 2011
Histologic and biomechanical evaluation of crosslinked and non-crosslinked biologic meshes in a porcine model of ventral incisional hernia repairCorey R Deeken, Lora Melman, Eric D Jenkins, et al.Pageof 5