Area of research
Surgery · Pathology and Forensic Medicine
Research interest
Research interests include Orthopaedic implants and arthroplasty, Total Knee Arthroplasty Outcomes, Spine and Intervertebral Disc Pathology, and Bone fractures and treatments.
Fluorapatite‐Coated Percutaneous Osseointegrated Prostheses Limit Epidermal Downgrowth and Promote Periprosthetic Healing in a Weight‐Bearing Sheep Model—A Preliminary Study
Utilization of Bulk <scp>RNA</scp> Sequencing for the Evaluation of Keratin Nanomaterials as a Coating for Percutaneous Devices
Exploration of the synergistic role of cortical thickness asymmetry (“Trabecular Eccentricity” concept) in reducing fracture risk in the human femoral neck and a control bone (Artiodactyl Calcaneus)
Strain‐mode‐specific mechanical testing and the interpretation of bone adaptation in the deer calcaneus
Fluorapatite-Coated Percutaneous Devices Promote Wound Healing and Limit Epithelial Downgrowth at the Skin-Device Interface
Cortical and medullary morphology of the tibia
Cortical and medullary morphology of the tibia
Sex and Laterality Differences in Medullary Humerus Morphology
Advancing the deer calcaneus model for bone adaptation studies: ex vivo strains obtained after transecting the tension members suggest an unrecognized important role for shear strains.
Evaluation of soft‐tissue response around laser microgrooved titanium percutaneous devices
A 24-month evaluation of a percutaneous osseointegrated limb-skin interface in an ovine amputation model
Transhumeral loading during advanced upper extremity activities of daily living
Occipitocervical Instability After Far-Lateral Transcondylar Surgery: A Biomechanical Analysis
Cortical screws used to rescue failed lumbar pedicle screw construct: a biomechanical analysis
Radiographic Evaluation of Bone Adaptation Adjacent to Percutaneous Osseointegrated Prostheses in a Sheep Model
Role of Plantar Plate and Surgical Reconstruction Techniques on Static Stability of Lesser Metatarsophalangeal Joints
Progression of Bone Ingrowth and Attachment Strength for Stability of Percutaneous Osseointegrated Prostheses
Efficacy of a porous‐structured titanium subdermal barrier for preventing infection in percutaneous osseointegrated prostheses
Immediate post‐implantation skin immobilization decreases skin regression around percutaneous osseointegrated prosthetic implant systems