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一种评估肱骨头假体位置对反式肩关节假体稳定性和活动范围影响的新方法。

A new method to evaluate the influence of the glenosphere positioning on stability and range of motion of a reverse shoulder prosthesis.

机构信息

Dipartimento di Ingegneria, Università degli Studi di Palermo, Palermo, Italy.

Dipartimento di Ingegneria, Università degli Studi di Palermo, Palermo, Italy.

出版信息

Injury. 2019 Jul;50 Suppl 2:S12-S17. doi: 10.1016/j.injury.2019.01.039. Epub 2019 Feb 5.

Abstract

PURPOSE

Shoulder instability and reduced range of motion are two common complications of a total reverse shoulder arthroplasty. In this work, a new approach is proposed to estimate how the glenoid component positioning can influence the stability and the range of motion of a reverse shoulder prosthesis.

MATERIALS AND METHODS

A standard reverse shoulder prosthesis has been analysed. To perform virtual simulation of the shoulder-prosthesis assembly, all the components of the prosthesis have been acquired via a 3D laser scanner and the solid models of the shoulder bones have been reconstructed through CT images. Loads on the shoulder joint have been estimated using anatomical models database. A new virtual/numerical procedure has been implemented using a 3D parametric modelling software to find the optimal position of the glenosphere.

RESULTS

Several analyses have been performed using different configurations obtained by changing the glenoid component tilt and the lateral position of the glenosphere, modified through the insertion of a cylindrical spacer. For the analysed case study, it was found that the interposition of a spacer (between the baseplate and the glenoid) and 15° inferior tilt of the glenosphere allow improving the range of motion and the stability of the shoulder.

CONCLUSIONS

Some common complications of the reverse shoulder arthroplasty could be effectively reduced by a suitable positioning of the prosthesis components. In this work, using a new method based on virtual simulations, the influence of the glenosphere positioning has been investigated. An optimal configuration for the analysed case study has been found. The proposed approach could be used to find, with no in vivo experiments, the optimal position of a reverse shoulder prosthesis depending on the different dimensions and shape of the bones of each patient.

摘要

目的

肩不稳定和活动范围减小是全反肩关节置换术的两种常见并发症。在这项工作中,提出了一种新的方法来估计肩胛盂组件的定位如何影响反肩假体的稳定性和活动范围。

材料与方法

对标准反肩假体进行了分析。为了对肩-假体组件进行虚拟模拟,通过三维激光扫描仪获取了假体的所有组件,并通过 CT 图像重建了肩骨的实体模型。使用解剖模型数据库估计了肩关节上的载荷。使用三维参数化建模软件实现了一种新的虚拟/数值程序,以找到最佳的肩胛盂位置。

结果

通过改变肩胛盂组件的倾斜度和肩胛盂的外侧位置,使用不同的配置进行了多次分析,通过插入圆柱形间隔物来修改。对于分析的病例研究,发现插入间隔物(在底板和肩胛盂之间)和 15°肩胛盂下倾斜可以改善肩部的活动范围和稳定性。

结论

通过适当的假体组件定位,可以有效减少反肩置换术的一些常见并发症。在这项工作中,使用基于虚拟模拟的新方法,研究了肩胛盂位置的影响。对于分析的病例研究,找到了一个最佳的配置。该方法可以在无需进行体内实验的情况下,根据每个患者骨骼的不同尺寸和形状,找到反肩假体的最佳位置。

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