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Distal femoral fractures are challenging injuries despite improvements of fixation techniques and plate designs.
A countercurrent continuous single-stage fluidized bed system using different perforated plate designs was studied.
Newer plate designs have emerged that allow a shorter plate and screw construct.
A variety of plate designs have been implemented for treatment of periprosthetic femoral fracture (PFF) fixation.
Different combinations of operating conditions and bipolar plate designs were analysed.
We hypothesized that significant differences in VLP prominence exist between various plate designs.
Current volar plate designs incorporate a volar cortical angle (VCA) of 25 degrees.
Analysis has been carried out for different fuel and oxidant flow configurations and bipolar plate designs.
Fixation by plates and screws pose an additional surgical injury to an already compromised soft tissue envelope, even with minimally invasive plate designs.
Fixed-angle plate designs minimize screw loosening in the distal fragments due to a 'toggling effect' and thus reduce the danger of secondary displacement.
Various bipolar plate designs have been tested and evaluated by researchers worldwide in the field of PEM fuel cells [13, 14].
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