首页> 外文期刊>Knee surgery, sports traumatology, arthroscopy: official journal of the ESSKA >Collagen fibre arrangement and functional crimping pattern of the medial collateral ligament in the rat knee.
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Collagen fibre arrangement and functional crimping pattern of the medial collateral ligament in the rat knee.

机译:大鼠膝关节内侧副韧带的胶原纤维排列和功能性卷曲模式。

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摘要

Ligaments have been described as multifascicular structures with collagen fibres cross-connecting to each other or running straight and parallel also showing a waviness or crimping pattern playing as a shock absorber/recoiling system during joint motions. A particular collagen array and crimping pattern in different ligaments may reflect different biomechanical roles and properties. The aim of the study was to relate the 3D collagen arrangement in the crimping pattern of the medial collateral ligament (MCL) to its functional role. The MCL is one of the most injured ligaments during sports activities and an experimental model to understand the rate, quality and composition of ligaments healing. A deep knowledge of structure-function relationship of collagen fibres array will improve the development of rehabilitation protocols and more appropriate exercises for recovery of functional activity. The rat MCL was analysed by polarized light microscopy, confocal laser microscopy and scanning electron microscopy (SEM). Histomorphometric analysis demonstrated that MCL crimps have a smaller base length versus other tendons. SEM observations demonstrated that collagen fibres showing few crimps were composed of fibrils intertwining and crossing one another in the outer region. Confocal laser analyses excluded a helical array of collagen fibres. By contrast, in the core portion, densely packed straight collagen fibres ran parallel to the main axis of the ligament being interrupted both by planar crimps, similar to tendon crimps, and by newly described right-handed twisted crimps. It is concluded that planar crimps could oppose or respond exclusively to tensional forces parallel to the main ligament axis, whereas the right-handed twisted crimps could better resist/respond to a complex of tensional/rotational forces within the ligament thus opposing to an external rotation of tibia.
机译:韧带已被描述为胶原纤维彼此交叉连接或笔直和平行延伸的多束结构,在关节运动过程中还表现出起减震/回卷作用的起伏或卷曲模式。不同韧带中特定的胶原蛋白阵列和卷曲方式可能反映出不同的生物力学作用和特性。该研究的目的是将内侧副韧带(MCL)卷曲模式中的3D胶原蛋白排列与其功能作用相关联。 MCL是体育活动中受伤最严重的韧带之一,也是了解韧带愈合速度,质量和组成的实验模型。对胶原纤维阵列的结构-功能关系的深入了解将改善康复方案的制定,并为恢复功能活动提供更适当的锻炼。通过偏光显微镜,共聚焦激光显微镜和扫描电子显微镜(SEM)分析大鼠MCL。组织形态分析表明,MCL压接的基部长度比其他肌腱小。 SEM观察表明,显示出很少卷曲的胶原纤维由在外部区域中缠绕并彼此交叉的原纤维组成。共聚焦激光分析排除了螺旋状的胶原纤维阵列。相反,在核心部分,密集堆积的直胶原蛋白纤维平行于韧带的主轴,被类似于肌腱卷曲的平面卷曲和新近描述的右旋扭曲卷曲中断。结论是,平面压接可以抵抗或专门响应平行于主韧带轴线的拉力,而右旋扭曲压接可以更好地抵抗/响应韧带内部的多种拉力/旋转力,从而抵抗外部旋转胫骨

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