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后角内侧半月板根部撕裂对体内膝关节运动学的影响。

Effect of Posterior Horn Medial Meniscus Root Tear on In Vivo Knee Kinematics.

机构信息

Biodynamics Laboratory, University of Pittsburgh, Pittsburgh, Pennsylvania, USA. ; Department of Bioengineering, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.

Biodynamics Laboratory, University of Pittsburgh, Pittsburgh, Pennsylvania, USA. ; Kaiser Permanente, Napa-Solano, Vacaville, California, USA.

出版信息

Orthop J Sports Med. 2014 Jul 11;2(7):2325967114541220. doi: 10.1177/2325967114541220. eCollection 2014 Jul.

Abstract

BACKGROUND

Medial meniscus root tear (MMRT) is a recently recognized yet frequently missed meniscal tear pattern that biomechanically creates an environment approaching meniscal deficiency.

HYPOTHESIS/PURPOSE: The purpose of this study was to assess the effect of MMRT on tibiofemoral kinematics and arthrokinematics during daily activities by comparing the injured knees of subjects with isolated MMRT to their uninjured contralateral knees. The hypothesis was that the injured knee will demonstrate significantly more lateral tibial translation and adduction than the uninjured knee, and that the medial compartment will exhibit significantly different arthrokinematics than the lateral compartment in the affected limb.

STUDY DESIGN

Cross-sectional study; Level of evidence, 3.

METHODS

Seven subjects with isolated MMRT were recruited and volumetric, density-based 3-dimensional models of their distal femurs and proximal tibia were created from computed tomography scans. High-speed, biplane radiographs were obtained of both their affected and unaffected knees. Moving 3-dimensional models of tibiofemoral kinematics were calculated using model-based tracking to assess overall kinematic variables and specific measures of tibiofemoral joint contact. The affected knees of the subjects were then compared to their unaffected contralateral knees.

RESULTS

Affected knees demonstrated significantly more lateral tibial translation than the uninjured contralateral limb in all dynamic activities. Additionally, the medial compartment displayed greater amounts of mobility than the lateral compartment in the injured limbs.

CONCLUSION

This study suggests that MMRT causes significant changes in in vivo knee kinematics and arthrokinematics and that the magnitude of these changes is influenced by dynamic task difficulty.

CLINICAL RELEVANCE

Medial meniscus root tears lead to significant changes in joint arthrokinematics, with increased lateral tibial translation and greater medial compartment excursion. With complete root tears, essentially 100% of circumferential fibers are lost. This study will further our knowledge of meniscal deficiency and osteoarthritis and provide a baseline for more common forms of medial meniscal injuries (vertical, horizontal, radial), with various degrees of circumferential fiber function remaining.

摘要

背景

内侧半月板后根部撕裂(MMRT)是一种最近才被认识但经常被漏诊的半月板撕裂模式,它在生物力学上造成了一种接近半月板缺失的环境。

假设/目的:本研究的目的是通过比较有孤立性 MMRT 的受试者的受伤膝关节与其未受伤的对侧膝关节,来评估 MMRT 对日常活动中胫股关节运动学和关节运动学的影响。假设是受伤的膝关节比未受伤的膝关节有明显更多的外侧胫骨平移和内收,并且受影响肢体的内侧间室将表现出与外侧间室明显不同的关节运动学。

研究设计

横断面研究;证据水平,3 级。

方法

招募了 7 名孤立性 MMRT 患者,并从 CT 扫描中创建了他们的远端股骨和近端胫骨的容积、基于密度的 3 维模型。对他们的双侧膝关节进行高速双平面射线照相。使用基于模型的跟踪计算胫股关节运动学的移动 3 维模型,以评估整体运动学变量和胫股关节接触的特定测量值。然后将患者的患病膝关节与未患病的对侧膝关节进行比较。

结果

在所有动态活动中,患病膝关节的外侧胫骨平移明显大于未受伤的对侧肢体。此外,在受伤肢体中,内侧间室的活动度大于外侧间室。

结论

本研究表明,MMRT 导致体内膝关节运动学和关节运动学的显著变化,并且这些变化的幅度受动态任务难度的影响。

临床相关性

内侧半月板后根部撕裂导致关节关节运动学发生显著变化,表现为外侧胫骨平移增加和内侧间室活动度增加。完全根部撕裂时,基本上 100%的环形纤维丢失。本研究将进一步了解半月板缺失和骨关节炎,并为更常见的内侧半月板损伤(垂直、水平、放射状)提供基线,这些损伤具有不同程度的环形纤维功能保留。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0535/4588528/95fcd54ba220/10.1177_2325967114541220-fig1.jpg

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