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短柄肱骨部件尺寸对肱骨骨应力的影响。

The effect of short-stem humeral component sizing on humeral bone stress.

机构信息

Roth|McFarlane Hand and Upper Limb Center, London, ON, Canada.

Roth|McFarlane Hand and Upper Limb Center, London, ON, Canada.

出版信息

J Shoulder Elbow Surg. 2020 Apr;29(4):761-767. doi: 10.1016/j.jse.2019.08.018. Epub 2019 Nov 9.

Abstract

BACKGROUND

Several humeral stem design modifications for shoulder arthroplasty, including reduced stem length, changes to metaphyseal geometry, and alterations to implant surface texture, have been introduced to reduce stress shielding. However, the effect of changes in the diametral size of short-stem humeral components remains poorly understood. The purpose of this finite element study was to quantify the effect of varying the size of short-stem humeral components on the changes in bone stress from the intact state to the reconstructed state.

METHODS

Three-dimensional models of 8 male cadaveric humeri (mean age, 68 ± 6 years; all left-sided humeri) were constructed from computed tomography data using Mimics software. Each humerus was then reconstructed with 2 short-stem components (Exactech Preserve), one having a larger diametral size (SH+) and one having a smaller diametral size (SH-). Modeling was conducted for loading states consistent with 45° and 75° of abduction, and the resulting changes in bone stress compared with the intact state and the expected bone response were determined.

RESULTS

The smaller (SH-) short-stem implant produced humeral cortical and trabecular bone stresses that were closer to the intact state than the larger (SH+) short-stem implant at several locations beneath the humeral head resection (P ≤ .032). A similar trend was observed for expected bone response, where the smaller (SH-) short-stem implant had a smaller proportion of bone that was expected to resorb following reconstruction compared with the larger (SH+) short-stem implant for several slice depths in the medial quadrant (P ≤ .02).

DISCUSSION

These findings may indicate that smaller short-stem components are favorable in terms of stress shielding.

摘要

背景

为了减少应力遮挡,已经引入了几种肱骨柄设计修改,包括缩短柄长度、改变骨干几何形状和改变植入物表面纹理。然而,短柄肱骨部件直径大小变化的影响仍知之甚少。本有限元研究的目的是量化改变短柄肱骨部件的尺寸对从完整状态到重建状态的骨应力变化的影响。

方法

使用 Mimics 软件从 CT 数据构建了 8 个男性尸体肱骨(平均年龄 68 ± 6 岁;均为左侧肱骨)的三维模型。然后,每个肱骨都用 2 个短柄组件(Exactech Preserve)进行重建,一个具有较大直径(SH+),另一个具有较小直径(SH-)。进行建模时考虑了与 45°和 75°外展一致的加载状态,并确定了与完整状态和预期骨反应相比骨应力的变化。

结果

较小的(SH-)短柄植入物在头状骨切除以下的几个部位产生的肱骨皮质和小梁骨应力比较大的(SH+)短柄植入物更接近完整状态(P ≤.032)。在预期骨反应中也观察到了类似的趋势,较小的(SH-)短柄植入物在几个内侧象限的切片深度处,与较大的(SH+)短柄植入物相比,预计吸收的骨比例更小(P ≤.02)。

讨论

这些发现可能表明,较小的短柄组件在应力屏蔽方面是有利的。

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