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闭环双 Endobutton 与 Lag 螺钉固定后踝骨折的生物力学比较。

Biomechanical Comparison of a Closed-Loop Double Endobutton to a Lag Screw in Fixation of Posterior Malleolar Fractures.

机构信息

Department of Orthopedics and Traumatology, İzmir Atatürk Training and Research Hospital, İzmir, Turkey.

Department of Orthopedics and Traumatology, University of Kyrenia, Kyrenia, Cyprus.

出版信息

J Foot Ankle Surg. 2022 Sep-Oct;61(5):975-978. doi: 10.1053/j.jfas.2021.12.023. Epub 2021 Dec 24.

DOI:10.1053/j.jfas.2021.12.023
PMID:35016833
Abstract

Anteroposterior (AP) lag screw, posteroanterior (PA) lag screw, or posterior buttress plate are usually performed for posterior malleolar fixation, but the biomechanically strongest technique is unclear. The aim of our study was to biomechanically compare 3 different fixation methods for posterior malleolar fractures; AP lag screw, PA lag screw, and closed-loop double endobutton. Fracture models were created using a thin blade power saw after drawing the fracture line. The resultant fracture involved 30% of the joint on the distal tibial joint surface and extends with an angulation of approximately 50 degrees using 15 tibia composite bone samples. After anatomical reduction, fixation was achieved with 3.5 mm cortical screw in PA direction and in AP direction for group PA and AP, respectively. In Group DL, fixation was achieved with a closed-loop double endobutton (double lift loop, Orthomed, Turkey). The highest compression force to generate all displacement amounts was required for the double loop group (Group DL). The strongest fixation against compression was a double loop. The PA group was the second strongest fixation, and the AP group was the biomechanically weakest among these 3 fixation techniques. The closed-loop double endobutton technique was found biomechanically superior to anterior to posterior or posterior to anterior screw fixation techniques for posterior malleolar fracture.

摘要

前后(AP)拉力螺钉、后前(PA)拉力螺钉或后支撑钢板通常用于后踝骨折固定,但生物力学最强的技术尚不清楚。我们的研究目的是生物力学比较后踝骨折的 3 种不同固定方法;AP 拉力螺钉、PA 拉力螺钉和闭环双端纽扣。在画出骨折线后,使用薄刀片动力锯创建骨折模型。所得骨折涉及胫骨远端关节面的 30%关节,并使用 15 个胫骨复合骨样本以约 50 度的角度延伸。在解剖复位后,用 3.5mm 皮质螺钉在 PA 方向和 AP 方向分别对 PA 和 AP 组进行固定。在 DL 组中,用闭环双端纽扣(双提拉环,Orthomed,土耳其)进行固定。双环组(DL 组)需要产生所有位移量的最大压缩力。双环的固定抗压缩能力最强。PA 组是第二强的固定,而 AP 组是这 3 种固定技术中生物力学最弱的。闭环双端纽扣技术在生物力学上优于前后螺钉固定技术或后前螺钉固定技术,用于后踝骨折。

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