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Biomechanical, biochemical, and near infrared spectral data of bovine knee ligaments and patellar tendon

机译:牛膝韧带和髌骨腱的生物力学,生化和近红外光谱数据

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Knee joint ligaments and patellar tendon are rope-like tissues that enable the proper function of the knee by connecting the bones that form the joint. A better understanding of ligament structure-function relationships is needed to develop objective and reliable diagnostic methods for ligaments. Recently, arthroscopic near infrared spectroscopy (NIR) has shown the potential to quantitatively evaluate the health of the cartilages and menisci of the knee. In this dataset, we present a unique combination of NIR spectral data, biomechanical properties, and biochemical composition of bovine primary knee ligaments and patellar tendon (10 knees, 50 tissue samples). NIR spectral data were measured at 5 locations in each sample, biomechanical properties were obtained with tensile testing, and biochemical composition was quantified using colorimetric biochemical methods. The data can be reused for investigations of structure-function relationships of knee ligaments and patellar tendon, for the development of NIR spectroscopic methods to quantify the health of these tissues, and to develop new computational models to describe ligament and tendon biomechanics.
机译:膝关节韧带和髌骨肌腱是绳索状组织,通过连接形成关节的骨骼来实现膝盖的适当功能。需要更好地理解韧带结构功能关系,以开发目的和可靠的韧带诊断方法。最近,关节镜近红外光谱(NIR)已经显示出定量评估膝关节的软骨和半月斑的健康的可能性。在该数据集中,我们呈现了牛母膝盖韧带和髌腱(10个膝关节)的牛谱数据,生物力学性质和生物化学组成的独特组合。在每个样品中的5个位置测量NIR光谱数据,用拉伸试验获得生物力学性质,并使用比色生化方法定量生物化学组合物。可以重复使用膝关节韧带和髌腱的结构功能关系的调查,以便如何发展纳尔光谱方法,以量化这些组织的健康,并开发新的计算模型来描述韧带和肌腱生物力学。

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