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侧坐会导致双膝的股胫旋转角度不同。

Sitting Sideways Causes Different Femoral-Tibial Rotations in Each Knee.

作者信息

Kono Kenichi, Konda Shoji, Yamazaki Takaharu, Taketomi Shuji, Tamaki Masashi, Inui Hiroshi, Tanaka Sakae, Tomita Tetsuya

机构信息

Department of Orthopaedic Surgery, The University of Tokyo, Bunkyo, JPN.

Department of Health and Sport Sciences, Osaka University, Suita, JPN.

出版信息

Cureus. 2024 May 5;16(5):e59678. doi: 10.7759/cureus.59678. eCollection 2024 May.

Abstract

Purpose According to a previous study, asymmetrical kneeling, such as sitting sideways, does not exhibit asymmetrical movements. Rotational analyses of each femur and tibia help explain why rotational knee kinematics while sitting sideways do not exhibit asymmetrical movement. We aimed to assess the rotation of the femur and tibia in normal knees while sitting sideways. Methods Each volunteer sat sideways under fluoroscopy. Two-dimensional and three-dimensional registration techniques were used. After evaluating the femoral rotation angle relative to the tibia at each flexion angle, the femoral and tibial sole rotation angles at each flexion angle were compared between the ipsilateral and contralateral knees. Results While sitting sideways, both knees showed femoral external rotation relative to the tibia with flexion. In the ipsilateral knees, the femurs exhibited an external rotation of 26.3 ± 8.0°, from 110° to 150° of flexion. Conversely, the tibia exhibited an external rotation of 12.2 ± 7.8°, from 110° to 150° of flexion. From 110° to 150° of flexion, femoral external rotation was significantly larger than tibial external rotation. In the contralateral knees, the femurs exhibited an internal rotation of 23.8 ± 6.3°, from 110° to 150° of flexion (110°, p < 0.001; 120°, p < 0.001; 130°, p < 0.001; 140°, p < 0.001; and 150°, p < 0.001). Contrastingly, the tibia exhibited an internal rotation of 30.4 ± 8.8°, from 110° to 150° of flexion, which was significantly larger than femoral internal rotation (110°, p = 0.002; 120°, p < 0.001; 130°, p < 0.001; 140°, p < 0.001; and 150°, p < 0.001). Conclusions Although bilateral knees exhibited femoral external rotation relative to the tibia while sitting sideways, the ipsilateral and contralateral knees showed femoral and tibial sole rotations in opposite directions. In particular, the contralateral knees might show a strained movement because both femurs and tibias exhibited internal rotation with flexion. Patients who have undergone guided-motion total knee arthroplasty (TKA) or medial-pivot TKAs might be advised to avoid sitting sideways.

摘要

目的 根据先前的一项研究,不对称跪姿,如侧坐,不会表现出不对称运动。对每根股骨和胫骨的旋转分析有助于解释为什么侧坐时膝关节的旋转运动学不表现出不对称运动。我们旨在评估正常膝关节在侧坐时股骨和胫骨的旋转情况。

方法 每位志愿者在荧光透视下侧坐。使用二维和三维配准技术。在评估每个屈曲角度下股骨相对于胫骨的旋转角度后,比较同侧和对侧膝关节在每个屈曲角度下的股骨和胫骨足底旋转角度。

结果 侧坐时,随着屈曲,双膝关节的股骨相对于胫骨均表现为外旋。在同侧膝关节中,股骨在屈曲110°至150°时表现出26.3±8.0°的外旋。相反,胫骨在屈曲110°至150°时表现出12.2±7.8°的外旋。在屈曲110°至150°时,股骨外旋明显大于胫骨外旋。在对侧膝关节中,股骨在屈曲110°至150°时表现出23.8±6.3°的内旋(110°,p<0.001;120°,p<0.001;130°,p<0.001;140°,p<0.001;150°,p<0.001)。相比之下,胫骨在屈曲110°至150°时表现出30.4±8.8°的内旋,明显大于股骨内旋(110°,p = 0.002;120°,p<0.001;130°,p<0.001;140°,p<0.001;150°,p<0.001)。

结论 虽然双侧膝关节在侧坐时股骨相对于胫骨均表现为外旋,但同侧和对侧膝关节的股骨和胫骨足底旋转方向相反。特别是,对侧膝关节可能表现出紧张的运动,因为股骨和胫骨在屈曲时均表现为内旋。对于接受引导运动全膝关节置换术(TKA)或内侧旋转TKA的患者,可能建议避免侧坐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/19bb/11149726/e1395ced50c3/cureus-0016-00000059678-i01.jpg

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