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全踝关节置换的三个组件的运动学:体内荧光透视分析。

Kinematics of the three components of a total ankle replacement: in vivo fluoroscopic analysis.

机构信息

Istituto Ortopedico Rizzoli, Movement Analysis Laboratory, Via di Barbiano, Bologna, Italy.

出版信息

Foot Ankle Int. 2012 Apr;33(4):290-300. doi: 10.3113/FAI.2012.0290.

Abstract

BACKGROUND

Careful kinematic analysis of ankle joints with newly developed prostheses should be carried out to assess the actual performance in vivo. This study analyzed the pattern of motion of the three components of a ligament-compatible ankle replacement, developed to replicate normal joint kinematics.

MATERIALS AND METHODS

Twelve patients treated with this design were analyzed at 6, 12, and 24 months followup. A series of images were acquired by videofluoroscopy at extremes of the range of motion, and during flexion/extension against gravity and stair-climbing/descending. Three-dimensional positions and orientations of the tibial and talar metal components and of the polyethylene mobile-bearing were obtained from the images by a standard shape-matching procedure. Motion between the three components was calculated and descriptively analyzed.

RESULTS

Large tibiotalar joint mobility of the replaced ankle was observed in all three anatomical planes, particularly in the sagittal. In flexion/extension against gravity, the mean range of flexion was 17.6, 17.7, and 16.2 degrees, respectively, over the three followups. The inclination angle of the mean axis of joint rotation was 3.7 degrees down and lateral in the frontal plane and 4.7 degrees posterior and lateral in the transverse plane, similar to those in the normal ankle. The corresponding antero-posterior translation of the meniscal-bearing with respect to the tibia was 3.3, 3.3, and 3.2 mm, with statistically significant correlation with joint flexion.

CONCLUSION

Physiological motion can be achieved in ligament-compatible ankle joint replacements. The considerable antero-posterior bearing-to-tibial motion and its coupling with flexion support the main original claims of this design.

摘要

背景

应对新开发的假肢进行仔细的运动学分析,以评估其在体内的实际性能。本研究分析了一种韧带兼容踝关节置换的三个组成部分的运动模式,该设计旨在复制正常的关节运动学。

材料与方法

对 12 例接受该设计治疗的患者进行了分析,随访时间分别为 6、12 和 24 个月。在运动范围的极限处、在对抗重力的屈伸过程中和在爬楼梯/下楼过程中,通过视频透视获取一系列图像。通过标准的形状匹配程序,从图像中获得胫骨和距骨金属部件以及聚乙烯活动衬垫的三维位置和方向。计算并描述性分析三个部件之间的运动。

结果

在所有三个解剖平面上,尤其是在矢状面上,都观察到了置换踝关节的大胫距关节活动度。在对抗重力的屈伸过程中,平均屈曲范围分别为 17.6、17.7 和 16.2 度,在三次随访中均如此。关节旋转轴的平均倾斜角在额状面为 3.7 度向下和向外侧,在横断面上为 4.7 度向后和向外侧,与正常踝关节相似。半月板衬垫相对于胫骨的前后平移分别为 3.3、3.3 和 3.2 毫米,与关节屈曲具有统计学显著相关性。

结论

韧带兼容踝关节置换可实现生理性运动。相当大的前后衬垫相对于胫骨的运动及其与屈曲的耦合支持了该设计的主要原始主张。

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