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跟不同位置的跟骨支撑螺钉相关的术后跟骨骨折的计算生物力学分析

Computational Biomechanical Analysis of Postoperative Calcaneal Fractures with Different Placement of the Sustentaculum Screw.

机构信息

Department of Orthopaedic Surgery, Zhongshan Hospital, Fudan University, Shanghai, China.

Department of Orthopaedic Trauma, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, China.

出版信息

Orthop Surg. 2020 Apr;12(2):661-667. doi: 10.1111/os.12541. Epub 2020 Feb 13.

Abstract

OBJECTIVE

To evaluate the computational biomechanical analysis of intra-articular calcaneal fractures with different fixation status of the sustentaculum plate screw, when the finite element modeling of calcaneal fractures were fixed by the lateral locking plate.

METHODS

The normal right foot of a male (age: 36 years; height: 174 cm; body weight: 65 kg) was scanned by the CT scanner. As the computational biomechanical study, the three-dimensional finite element model of the simplified Sanders type-II calcaneal fracture was built. Fixation with the lateral calcaneal locking plate and screws was simulated using a finite element software package according to clinical operation. According to the different placement of the sustentaculum plate screw, the models were categorized as the accurate fixation group, marginal fixation group, and non-fixation group. The loading of 650 N with the vertical axial compression was applied to simulate the standing phase with single foot. The Von Mises stress distribution, maximal displacement, and contact area of the subtalar joint were analyzed among three groups.

RESULTS

The pressure distribution of the subtalar joint facet was inhomogeneous. The stress concentration of the calcaneus was located at the medial zone of the posterior subtalar joint facet. The peak Von Mises stress distribution in three groups was similar at the subtalar joint facet of 4.9 MPa, 5.1 MPa, and 5.4 MPa. In the accurate fixation group, the contact area on the posterior articular facet was 277.1 mm ; the maximal displacement was 0.18 mm. The contact area of the marginal fixation group was 265.3 mm on the posterior facet, where the maximal displacement was 0.23 mm. In the non-fixation group, the contact area was 253.8 mm ; the maximal displacement was 0.25 mm. There was a slight change in the contact area of the subtalar joint and no prominent displacement of the calcaneus could be detected among the three groups.

CONCLUSIONS

The biomechanical results, including the peak stress distribution, contact area, and maximal displacement of subtalar joint, were similar whether the screw is placed exactly within the sustentaculum tali or not, when the calcaneal fractures were fixed by the lateral locking plate. The sustentaculum plate screw had less effect on the biomechanical performance of the calcaneus.

摘要

目的

评估不同跟骨支撑钢板螺钉固定状态下关节内跟骨骨折的计算生物力学分析,当采用外侧锁定钢板固定跟骨骨折时,建立跟骨骨折的有限元模型。

方法

对一名 36 岁男性(年龄:36 岁;身高:174cm;体重:65kg)的正常右足进行 CT 扫描。作为计算生物力学研究,建立简化 Sanders Ⅱ型跟骨骨折的三维有限元模型。使用有限元软件包根据临床操作模拟外侧跟骨锁定钢板和螺钉固定。根据跟骨支撑钢板螺钉的不同位置,将模型分为精确固定组、边缘固定组和非固定组。通过垂直轴向压缩施加 650N 的载荷,模拟单足站立相。分析三组中距下关节的 Von Mises 应力分布、最大位移和接触面积。

结果

距下关节关节面的压力分布不均匀。跟骨的应力集中位于后距下关节面的内侧区。三组距下关节面的峰值 Von Mises 应力分布相似,均为 4.9MPa、5.1MPa 和 5.4MPa。在精确固定组中,后关节面的接触面积为 277.1mm,最大位移为 0.18mm。在边缘固定组中,后关节面的接触面积为 265.3mm,最大位移为 0.23mm。在非固定组中,接触面积为 253.8mm,最大位移为 0.25mm。三组距下关节的接触面积均有轻微变化,跟骨无明显位移。

结论

当采用外侧锁定钢板固定跟骨骨折时,螺钉是否准确置于跟骨支撑突内,对距下关节的峰值应力分布、接触面积和最大位移等生物力学结果影响不大。跟骨支撑钢板螺钉对跟骨的生物力学性能影响较小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e8ea/7189067/d32024312ce1/OS-12-661-g001.jpg

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