Research & Publications
Selected publications authored by Dr. Nathaniel Stewart
Read Dr. Stewart's published work.
Explore selected orthopedic publications authored by Dr. Stewart, including research on hip arthroplasty techniques, component positioning, and surgical approaches that support informed patient care.
A Comparison of Component Positioning Between Fluoroscopy-Assisted and Robotic-Assisted Total Hip Arthroplasty
Dr. Stewart is an author of this Journal of Arthroplasty publication comparing component positioning in fluoroscopy-assisted and robotic-assisted total hip arthroplasty.
Fluoroscopy Assessment During Anterior Minimally Invasive Hip Replacement Is More Accurate Than With the Posterior Approach
This study compares fluoroscopic assessment during direct anterior and posterior total hip arthroplasty.
Differences in Patellar Tracking and Knee Kinematics Among Three Different Total Knee Designs
A comparison of patellofemoral tracking and knee kinematics across three total-knee designs using cadaveric specimens.
Surgical Treatment of Aseptic Olecranon Bursitis
A long-term review of surgically treated aseptic olecranon bursitis, including outcomes in patients with and without rheumatoid arthritis.
Lymphangiosarcoma Following Mastectomy
A review of postmastectomy lymphangiosarcoma, also known as Stewart–Treves syndrome.
Load Affects Remodeling of Transplanted, Autogenous Bone–Patellar Tendon–Bone Segments in a Rabbit Model
This orthopedic biomechanics study examines how mechanical loading affects remodeling of transplanted bone–patellar tendon–bone tissue.
Effect of Anterior Cruciate Ligament Graft Tensioning Direction, Magnitude, and Flexion Angle on Knee Biomechanics
A cadaveric biomechanics study evaluating how ACL graft-tensioning technique influences knee motion and graft forces.
Maintenance of Set Force in Anterior Cruciate Ligament Grafts
This study evaluates whether initially applied tension in ACL grafts is maintained after fixation and loading.
A Theoretical Model of the Knee and ACL: Theory and Experimental Verification
A three-dimensional mathematical model of knee mechanics covering ACL graft forces, cartilage contact forces, and joint motion.
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