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首页> 外文期刊>Frontiers in Bioengineering and Biotechnology >Elongation Patterns of the Collateral Ligaments After Total Knee Arthroplasty Are Dominated by the Knee Flexion Angle
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Elongation Patterns of the Collateral Ligaments After Total Knee Arthroplasty Are Dominated by the Knee Flexion Angle

机译:全膝关节置换术后副韧带的伸长方式主要由屈膝角度决定

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The primary aim of this study was to assess the effects of total knee arthroplasty (TKA) implant design on collateral ligament elongation patterns that occur during level walking, downhill walking, and stair descent. Using a moving fluoroscope, tibiofemoral kinematics were captured in three groups of patients with different TKA implant designs, including posterior stabilized, medial stabilized and ultra-congruent. The 3D in vivo joint kinematics were then fed into multibody models of the replaced knees and elongation patterns of virtual bundles connecting origin and insertion points of the medial and lateral collateral ligaments (MCL and LCL) were determined throughout complete cycles of all activities. Regardless of the implant design and activity type, non-isometric behavior of the collateral ligaments was observed. The LCL shortened with increasing knee flexion, while the MCL elongation demonstrated regional variability, ranging from lengthening of the anterior bundle to slackening of the posterior bundle. The implant component design did not demonstrate statistically significant effects on the collateral elongation patterns and this was consistent between the studied activities. This study revealed that post-TKA collateral ligament elongation is primarily determined by the knee flexion angle. The different anterior translation and internal rotation that were induced by three distinctive implant designs had minimal impact on the length change patterns of the collateral ligaments.
机译:这项研究的主要目的是评估全膝关节置换术(TKA)植入物设计对水平行走,下坡行走和楼梯下降过程中发生的侧副韧带伸长模式的影响。使用移动荧光镜,在三组具有不同TKA植入物设计的患者(包括后稳定,中稳定和超全合)中捕获了股骨运动学信息。然后将3D体内关节运动学输入替换膝关节的多体模型中,并在整个活动的整个周期中确定连接内侧和外侧副韧带(MCL和LCL)的起点和插入点的虚拟束的延伸模式。无论植入物的设计和活动类型如何,均观察到副韧带的非等距行为。 LCL随着膝关节屈曲度的增加而缩短,而MCL伸长率则表现出区域差异,范围从前束的延长到后束的松弛。植入物组件设计没有显示出对侧枝伸长模式的统计学显着影响,这在研究的活动之间是一致的。这项研究表明,TKA后侧副韧带的伸长主要取决于膝盖的屈曲角度。三种独特的植入物设计引起的不同的前平移和内部旋转对侧副韧带的长度变化模式影响最小。

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