Biomechanical Testing of Pin Configurations in Supracondylar Humeral Fractures: The Effect of Medial Column Comminution
OBJECTIVES:We measured biomechanical stability in simulated supracondylar humeral fractures fixed with each of 6 pin configurations, 2 with associated medial comminution, and developed a technique for reproducible pin placement and divergence. METHODS:A transverse supracondylar osteotomy was perform...
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Veröffentlicht in: | Journal of orthopaedic trauma 2013-05, Vol.27 (5), p.275-280 |
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Sprache: | eng |
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Zusammenfassung: | OBJECTIVES:We measured biomechanical stability in simulated supracondylar humeral fractures fixed with each of 6 pin configurations, 2 with associated medial comminution, and developed a technique for reproducible pin placement and divergence.
METHODS:A transverse supracondylar osteotomy was performed on 36 biomechanical humerus models. Of these, 24 (4 groups of 6 specimens each) were fixed with pins in 1 of 4 lateral entry configurations. The remaining 12 (2 groups of 6 specimens each) had a 30-degree medial wedge removed from the distal humerus and were fixed with 1 of 2 configurations. Half of each group was tested under axial rotation and the other half under varus bending. The distal humerus was divided into 4 equal regions from lateral to medial (1–4). Lateral entry pins were inserted through regions 1–3, whereas the medial pin was inserted through region 4.
RESULTS:Without comminution, 3 widely spaced, divergent lateral entry pins resulted in higher torsional stiffness (0.36 Nm/degree) than 2 pins in adjacent regions (P < 0.055), but similar to 2 pins in nonadjacent regions (P = 0.57). Three lateral entry pins had higher bending stiffness (79.6 N/mm) than 2 pins, which ranged from 46.7 N/mm (P < 0.01) to 62.5 N/mm (P = 0.21). With comminution, adding a third medial entry pin increased torsional stiffness (0.13–0.24 Nm/degree, P < 0.01) and increased bending stiffness (38.7–44.7 N/mm, P = 0.10).
CONCLUSIONS:For fractures without medial column comminution, fixation using 3 lateral entry pins may provide the greatest combination of torsional and bending stiffness. With medial comminution, adding a third medial pin increased torsional stiffness (P < 0.01) and bending stiffness (P = 0.10). |
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ISSN: | 0890-5339 1531-2291 |
DOI: | 10.1097/BOT.0b013e31826fc05e |