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Articles 31 - 32 of 32
Full-Text Articles in Musculoskeletal System
Enhanced Osseous Integration Of Human Trabecular Allografts Following Surface Modification With Bioactive Lipids, Tiffany Wang, Jack Krieger, Cynthia Huang, Anusuya Das, Michael P. Francis, Roy Ogle, Edward Botchwey
Enhanced Osseous Integration Of Human Trabecular Allografts Following Surface Modification With Bioactive Lipids, Tiffany Wang, Jack Krieger, Cynthia Huang, Anusuya Das, Michael P. Francis, Roy Ogle, Edward Botchwey
School of Medical Diagnostics & Translational Sciences Publications
In this study, we used extracellular matrix (ECM) gels and human bone allograft as matrix vehicles to deliver the sphingolipid growth factor FTY720 to rodent models of tibial fracture and a critical-sized cranial defect. We show that FTY720 released from injectable ECM gels may accelerate callous formation and resolution and bone volume in a mouse tibial fracture model. We then show that FTY720 binds directly to human trabecular allograft bone and releases over 1 week in vitro. Rat critical-sized cranial defects treated with FTY720-coated grafts show increases in vascularization and bone deposition, with histological and micro-computed topography (microCT) evidence of …
The Effect Of Scoliotic Deformity On Spine Kinematics In Adolescents., Sarah Galvis, Douglas Burton, Brandon Barnds, John Anderson, Richard M. Schwend, Nigel Price, Sara Wilson, Elizabeth Friis
The Effect Of Scoliotic Deformity On Spine Kinematics In Adolescents., Sarah Galvis, Douglas Burton, Brandon Barnds, John Anderson, Richard M. Schwend, Nigel Price, Sara Wilson, Elizabeth Friis
Manuscripts, Articles, Book Chapters and Other Papers
Background: While adolescent idiopathic scoliosis (AIS) produces well characterized deformation in spinal form, the effect on spinal function, namely mobility, is not well known. Better understanding of scoliotic spinal mobility could yield better treatment targets and diagnoses. The purpose of this study was to characterize the spinal mobility differences due to AIS. It was hypothesized that the AIS group would exhibit reduced mobility compared to the typical adolescent (TA) group.
Methods: Eleven adolescents with right thoracic AIS, apices T6-T10, and eleven age- and gender-matched TAs moved to their maximum bent position in sagittal and coronal plane bending tasks. A Trakstar …