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Peter Hull With thanks to LVR March 2012.  Screws  Plates  Nails  External fixators.

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Presentation on theme: "Peter Hull With thanks to LVR March 2012.  Screws  Plates  Nails  External fixators."— Presentation transcript:

1 Peter Hull With thanks to LVR March 2012

2  Screws  Plates  Nails  External fixators

3  Head  Stops screw sinking in bone  Connection to screw driver  ? Locking screw, locks head into plate  Shaft  Core, Partial or fully threaded  Thread  Shape  Depth  Pitch  Tip  Blunt  Self tapping

4  Cortical  Cancellous  Partially threaded  Headless  Locking  Fixed angle  Variable angle

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6  Normal screw  Drill core  Measure  (Tap)  Countersink  Insert screw

7  Lag screw  Over drill near cortex Gliding hole  (thread diameter)  Drill core diameter  Measure  (Tap)  Countersink  Insert screw

8  Compression screw  Anchor plate  Eccentric drill  Repeat

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10  Achieve compression via  Variable pitch in the thread  Examples  Herbert screw  Barouk screw  Acutrak / Acutrak 2

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12  1/3 rd tubular  Reconstruction plate  Dynamic Compression Plate – DCP  Low Contact Dynamic Compression Plate – LCDCP  Locking Compression Plate – LCP  Special plates  Pre contoured, anatomic, injury specific

13  Solid  Hollow, cannulated  Reamed  Un reamed  Titanium elastic nails (TENS)  Bending rigidity proportional to diameter 4  Increasing diameter by 10% increases bending rigidity by 50%  Reaming allows increased torsional resistance due to larger contact area and allows larger nail with increased rigidity and strength

14  Monolateral frame  Hybrid  Ilizarov frame


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