Purpose: This study investigates the loss of compression when 3 commonly used headless compression screws are backed out (reversed), and assesses the ability to re-establish compression with screws of greater diameter.
Methods: Two investigators tested 3 screw designs (Acutrak 2, Synthes HCS, Medartis SpeedTip CCS) in 2 diameters and lengths. Each design had 10 test cycles in a polyurethane foam bone model with compression recorded using a washer load cell.
Complex floating knee injuries, comprising complete articular distal femur and proximal tibia fractures, are a significant challenge in Orthopedic Traumatology. Traditional surgical approaches can result in a limited exposure, compromising osteosynthesis, with an extensive soft tissue dissection predisposing to adhesion of the quadriceps and arthrofibrosis. The Patella Osteotomy technique provides unrivaled visualization of the articular surfaces of the knee, with a limited soft tissue dissection to permit the anatomical reconstruction of the articular injury, while minimizing the risk of postsurgical complications and reducing intraoperative fluoroscopy time.
View Article and Find Full Text PDFBackground: This report documents our experiences with a new technique for reconstructing massive uncontained defects of the glenoid with reverse total shoulder arthroplasty.
Materials And Methods: We use a modified deltopectoral approach to perform the combined allograft-autograft construct glenoid reconstruction. We make use of a peripherally seated cortical allograft acting as a sleeve bushing to provide a stable ring under compression in which to house impacted cancellous autograft centrally for early incorporation and in-growth with the long-peg Aequalis (Tornier, Saint-Ismier Cedex, France) reverse total shoulder arthroplasty baseplate.