Fuchs Andreas, Georgii Joachim, Taghizadeh Elham, Heldmann Stefan, Lange Thomas, Bendak Sebastian F, Siegel Markus, Yilmaz Tayfun, Schmal Hagen, Izadpanah Kaywan
Department of Orthopedic Surgery and Traumatology, Freiburg University Hospital, Albert Ludwigs University Freiburg, Hugstetter Straße 55, 79106, Freiburg, Germany.
Fraunhofer Institute for Digital Medicine MEVIS, Max-von-Laue Str.2, 28359, Bremen, Germany.
J Exp Orthop. 2022 Oct 4;9(1):102. doi: 10.1186/s40634-022-00540-5.
The menisci transmit load between femur and tibia and thus play a crucial role in the functionality of the knee joint. Knee joint movements have a major impact on the position of the menisci. However, these meniscus movements have not yet been assessed in a validated setting. The objective of this study is to evaluate the meniscal movements in MRI with prospective motion correction based on optical tracking under loading via internal and external tibial torques. METHODS: Thirty-one healthy volunteers were recruited for this study. MRI scans were performed in internal and external rotation induced by a torque of 5 Nm, using a 3 T MRI. A validated software used the generated images to calculate the absolute meniscus movements as the sum of all vectors. Differences between subgroups were analyzed by using a Wilcoxon signed-rank test. RESULTS: The MM shows an average movement of 1.79 mm in anterior-lateral direction under internal rotation and 6.01 mm in posterior-lateral direction under external rotation, whereas the LM moves an average of 4.55 mm in posterior-medial direction under internal rotation and 3.58 mm in anterior-medial direction under external rotation. When comparing the overall meniscus movements between internal and external rotation, statistically significant differences were found for total vector length and the direction of meniscus movements for medial and lateral meniscus. The comparison between medial and lateral meniscus movements also showed statistically significant differences in all categories for internal and external rotation.
Overall, the MM and LM movements in internal and external rotation differ significantly in extent and direction, although MM and LM movements in opposite directions during internal and external rotation can be observed. In internal rotation, most meniscus movements were found in the IHLM. In external rotation, the IHMM showed the greatest mobility. Segment analysis of internal vs. external rotation showed less difference in LM movements than MM.
Level II.
半月板在股骨和胫骨之间传递负荷,因此在膝关节功能中起着关键作用。膝关节运动对半月板位置有重大影响。然而,这些半月板运动尚未在经过验证的环境中进行评估。本研究的目的是通过基于光学跟踪的前瞻性运动校正,在通过内外胫骨扭矩加载的情况下,评估MRI中的半月板运动。
本研究招募了31名健康志愿者。使用3T MRI在5 Nm扭矩引起的内旋和外旋中进行MRI扫描。一个经过验证的软件使用生成的图像计算绝对半月板运动,作为所有向量的总和。亚组之间的差异采用Wilcoxon符号秩检验进行分析。
内侧半月板在内旋时向前外侧方向平均移动1.79 mm,在外旋时向后外侧方向平均移动6.01 mm,而外侧半月板在内旋时向后内侧方向平均移动4.55 mm,在外旋时向前内侧方向平均移动3.58 mm。比较内旋和外旋之间的整体半月板运动,发现内侧和外侧半月板的总向量长度和半月板运动方向存在统计学显著差异。内侧和外侧半月板运动的比较也显示,在内旋和外旋的所有类别中均存在统计学显著差异。
总体而言,内侧半月板和外侧半月板在内旋和外旋时的运动在程度和方向上有显著差异,尽管在内旋和外旋过程中可以观察到内侧半月板和外侧半月板向相反方向运动。在内旋时,大多数半月板运动发生在内侧半月板后角。在外旋时,外侧半月板前角显示出最大的移动性。内旋与外旋的节段分析显示,外侧半月板运动的差异小于内侧半月板。
二级。