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首页> 外文期刊>BMC Musculoskeletal Disorders >Measurement of femoral posterior condylar offset and posterior tibial slope in normal knees based on 3D reconstruction
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Measurement of femoral posterior condylar offset and posterior tibial slope in normal knees based on 3D reconstruction

机译:基于三维重建的普通膝关节髁突髁偏移和后胫骨坡测量

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摘要

Femoral posterior condylar offset (PCO) and posterior tibial slope (PTS) are important for postoperative range of motion after total knee arthroplasty (TKA). However, normative data of PCO and PTS and the correlation between them among healthy populations remain to be elucidated. The purpose of this study was to determine PCO and PTS in normal knees, and to identify the correlation between them. Eighty healthy volunteers were recruited. CT scans were performed followed by three-dimensional reconstruction. PCO and PTS were measured and analyzed, as well as the correlation between them. PTS averaged 6.78° and 6.11°, on the medial and lateral side respectively (P?=?0.002). Medial PCO was greater than lateral (29.2 vs. 23.8?mm, P? 0.001). Both medial and lateral PCO of male were larger than female. On the contrary, male medial PTS was smaller than female, while there was no significant difference of lateral PTS between genders. There was an inverse correlation between medial PCO and PTS, but not lateral. Significant differences exhibited between medial and lateral compartments, genders, and among individuals. An inverse correlation exists between PCO and PTS in the medial compartment. These results improve our understanding of the morphology and biomechanics of normal knees, and subsequently for optimising prosthetic design and surgical techniques.
机译:股骨后髁突出(PCO)和后胫骨斜率(PTS)对于总膝关节置换术(TKA)后的术后运动范围都很重要。然而,仍然阐明PCO和PTS的规范性数据以及它们之间的相关性仍有待阐明。本研究的目的是确定正常膝盖中的PCO和PTS,并识别它们之间的相关性。招募了八十个健康的志愿者。 CT扫描是进行的,然后进行三维重建。测量和分析PCO和PTS,以及它们之间的相关性。 PTS分别在内侧和横向侧平均为6.78°和6.11°(p?= 0.002)。中间PCO大于横向(29.2与23.8Ω,p≤0.001)。男性的内侧和横向PCO大于女性。相反,雄性内侧pts小于女性,而性别之间的侧面PTS没有显着差异。内侧PCO和PTS之间存在反向相关性,但不侧向。内侧和横向隔室,性别和个体之间的显着差异。在内侧隔室中PCO和PTS之间存在逆相关性。这些结果改善了我们对正常膝盖的形态和生物力学的理解,随后优化假肢设计和手术技术。

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