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桡骨头植入物形状对体外前臂旋转过程中桡肱关节运动学的影响。

The effect of radial head implant shape on radiocapitellar kinematics during in vitro forearm rotation.

作者信息

Shannon Hannah L, Deluce Simon R, Giles Joshua W, Johnson James A, King Graham J W

机构信息

Hand and Upper Limb Centre Bioengineering Laboratory, St. Joseph's Health Care, Western University, London, ON, Canada.

Hand and Upper Limb Centre Bioengineering Laboratory, St. Joseph's Health Care, Western University, London, ON, Canada.

出版信息

J Shoulder Elbow Surg. 2015 Feb;24(2):258-64. doi: 10.1016/j.jse.2014.09.019. Epub 2014 Nov 6.

Abstract

BACKGROUND

A number of radial head implants are in clinical use for the management of radial head fractures and their sequelae. However, the optimal shape of a radial head implant to ensure proper tracking relative to the capitellum has not been established. This in vitro biomechanical study compared radiocapitellar joint kinematics for 3 radial head implant designs as well as the native head.

METHODS

Eight cadaveric upper extremities were tested using a forearm rotation simulator with the elbow at 90° of flexion. Motion of the radius relative to the capitellum was optically tracked. A stem was navigated into a predetermined location and cemented in place. Three unipolar implant shapes were tested: axisymmetric, reverse-engineered patient-specific, and population-based quasi-anatomic. The patient-specific and quasi-anatomic implants were derived from measurements performed on computed tomography models.

RESULTS

Medial-lateral and anterior-posterior translation of the radial head with respect to the capitellum varied with forearm rotation and radial head condition. A significant difference in medial-lateral (P = .03) and anterior-posterior (P = .03) translation was found between the native radial head and the 3 implants. No differences were observed among the radial head conditions except for a difference in medial-lateral translation between the axisymmetric and patient-specific implants (P = .04).

CONCLUSIONS

Radiocapitellar kinematics of the tested radial head implants were similar in all but one comparison, and all had different kinematics from the native radial head. Patient-specific radial head implants did not prove advantageous relative to conventional implant designs. The shape of the fixed stem unipolar radial head implants had little influence on radiocapitellar kinematics when optimally positioned in this testing model.

摘要

背景

目前有多种桡骨头植入物应用于临床,用于治疗桡骨头骨折及其后遗症。然而,尚未确定能确保与肱骨小头正确匹配的桡骨头植入物的最佳形状。这项体外生物力学研究比较了3种桡骨头植入物设计以及天然桡骨头的桡肱关节运动学。

方法

使用前臂旋转模拟器对8具尸体上肢进行测试,肘关节屈曲90°。通过光学跟踪桡骨相对于肱骨小头的运动。将一根柄导向预定位置并固定到位。测试了三种单极植入物形状:轴对称型、逆向工程定制型和基于人群的准解剖型。定制型和准解剖型植入物源自对计算机断层扫描模型的测量。

结果

桡骨头相对于肱骨小头的内外侧和前后向平移随前臂旋转和桡骨头状况而变化。天然桡骨头与3种植入物之间在内外侧(P = .03)和前后向(P = .03)平移上存在显著差异。除了轴对称型和定制型植入物在内外侧平移上存在差异(P = .04)外,各桡骨头状况之间未观察到差异。

结论

在所有比较中,除了一项外,测试的桡骨头植入物的桡肱关节运动学相似,并且所有植入物的运动学都与天然桡骨头不同。定制的桡骨头植入物相对于传统植入物设计并未显示出优势。在该测试模型中,当固定柄单极桡骨头植入物处于最佳位置时,其形状对桡肱关节运动学影响不大。

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