Plating displaced proximal humeral fractures is associated with a high rate of screw perforation. Dynamization of the proximal screws might prevent these complications. The aim of this study was to develop and evaluate a new gliding screw concept for plating proximal humeral fractures biomechanically. Eight pairs of three-part humeral fractures were randomly assigned for pairwise instrumentation using either a prototype gliding plate or a standard PHILOS plate, and four pairs were fixed using the gliding plate with bone cement augmentation of its proximal screws. The specimens were cyclically tested under progressively increasing loading until perforation of a screw. Telescoping of a screw, varus tilting and screw migration were recorded using optical motion tracking.Aims
Methods
The June 2012 Trauma Roundup360 looks at: nerve injuries of warfare; the medical complications of earthquakes; the measuring of tissue pressures in compartment syndrome; the risk of plunging through the bone when drilling; bony nonunion and negative pressure therapy; surgery for the posteriorly dislocated hip; whether to use the sliding screw or intramedullary nail for the trochanteric fracture; antegrade interlocking nailing for the distal femoral fracture; and gunshot wounds to the pancreas.