Orthopaedic Trauma Service, Hospital for Special Surgery, New York, NY 10021, USA.
J Orthop Trauma. 2010 Jul;24(7):420-5. doi: 10.1097/BOT.0b013e3181c3f6d4.
This study was designed to compare bone-implant stiffness of two fixation techniques on a sawbone model of a clavicle fracture.
Twenty-four preosteotomized synthetic left clavicles (Sawbones Worldwide, Vashon, WA) were divided into four groups based on type of fixation: standard 3.5-mm pelvic reconstruction plate in the superior position; standard 3.5-mm pelvic reconstruction plate in an anteroinferior position; 3.5-mm locking pelvic reconstruction plate in a superior position; and a 3.5-mm locking pelvic reconstruction plate in an anteroinferior position. Three nondestructive cyclic mechanical tests were performed in random order: axial, torsion, and four-point bend.
No significant difference was found in axial (P = 0.61) or torsional stiffness (internal rotation, P = 0.46 or external rotation, P = 0.49) among all groups. No significant difference occurred in bending rigidity (four-point bending test) with type of plate (P = 0.41), but when the plate was placed anteroinferiorly, bending rigidity was significantly higher (P < 0.001) than in the superior position.
Placing the plate anteroinferiorly on the clavicle provides a more stable construct in terms of bending rigidity with no detriment in axial and torsional stiffness compared with placing the plate superiorly. We believe that anteroinferior plating is preferred as a result of the increase in bending rigidity together with other advantages, including avoidance of neurovascular compromise, the use of longer screws, and decreased hardware prominence.
本研究旨在比较两种内固定技术在锁骨骨折模型中的骨-植入物刚度。
根据固定方式将 24 个预制预切开的合成左锁骨(沃申,华盛顿州的 Sawbones 全球公司)分为四组:位于上方的标准 3.5 毫米骨盆重建板;位于前下方的标准 3.5 毫米骨盆重建板;位于上方的 3.5 毫米锁定骨盆重建板;位于前下方的 3.5 毫米锁定骨盆重建板。以随机顺序进行了三个非破坏性循环机械测试:轴向、扭转和四点弯曲。
各组之间在轴向(P = 0.61)或扭转刚度(内旋,P = 0.46 或外旋,P = 0.49)方面均无显著差异。板的类型对弯曲刚度(四点弯曲试验)无显著差异(P = 0.41),但当板置于前下方时,弯曲刚度显著更高(P < 0.001)。
与将板置于上方相比,将板置于锁骨的前下方可提供更稳定的结构,在弯曲刚度方面具有更高的稳定性,而在轴向和扭转刚度方面没有损害。我们认为,由于弯曲刚度的增加以及其他优势,包括避免神经血管损伤、使用更长的螺钉和减少硬件突出,因此更倾向于采用前下方置板。