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The anisotropic compressive mechanical properties of the rabbit patellar tendon

机译:兔pa腱的各向异性压缩力学性能

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In this study, we examine the transverse and longitudinal compressive mechanical behavior of the rabbit patellar tendon. The anisotropic compressive properties are of interest, because compression occurs where the tendon attaches to bone and where the tendon wraps around bone leading to the development of fibro-cartilaginous matrices. We quantified the time dependent viscoelastic and anisotropic behavior of the tendon under compression. For both orientations, sections of patellar tendon were drawn from mature male white New Zealand rabbits in preparation for testing. The tendons were sequentially compressed to 40% strain at strain rates of 0.1, 1 and 10% strain(s) using a computer-controlled stepper motor driven device under physiological conditions. Following monotonic loading, the tendons were subjected to stress relaxation. The tendon equilibrium compressive modulus was quantified to be 19.49 ± 11.46 kPa for the transverse direction and 1.11 ± 0.57 kPa for the longitudinal direction. The compressive modulus at applied strain rates of 0.1, 1 and 10% strain(s) in the transverse orientation were 13.48 ± 2.31, 18.24 ± 4.58 and 20.90 ± 8.60 kPa, respectively. The compressive modulus at applied strain rates of 0.1, 1 and 10% strain/s in the longitudinal orientation were 0.19 ±0.11, 1.27 ± 1.38 and 3.26 ± 3.49 kPa, respectively. The modulus values were almost significantly different for the examination of the effect of orientation on the equilibrium modulus (p = 0.054). Monotonic loading of the tendon showed visual differences of the strain rate dependency; however, no significant difference was shown in the statistical analysis of the effect of strain rate on compressive modulus. The statistical analysis of the effect of orientation on compressive modulus showed a significant difference. The difference shown in the orientation analysis validated the anisotropic nature of the tendon.
机译:在这项研究中,我们检查了兔pa腱的横向和纵向压缩力学行为。各向异性压缩特性是令人关注的,因为压缩发生在肌腱附着于骨骼的位置以及肌腱缠绕在骨骼周围的位置,从而导致纤维-软骨基质的发展。我们量化了受压时腱的时间依赖性粘弹性和各向异性行为。对于这两种方向,均从成熟的雄性新西兰白兔身上摘取sections骨腱切片,以准备进行测试。在生理条件下,使用计算机控制的步进电机驱动的设备,以0.1、1、10%的应变率将肌腱依次压缩至40%的应变。单调加载后,肌腱承受应力松弛。肌腱平衡压缩模量在横向方向上为19.49±11.46 kPa,在纵向方向上为1.11±0.57 kPa。横向施加的应变率为0.1、1和10%应变时的压缩模量分别为13.48±2.31、18.24±4.58和20.90±8.60 kPa。纵向施加的应变率为0.1、1和10%应变/ s时的压缩模量分别为0.19±0.11、1.27±1.38和3.26±3.49 kPa。在检查取向对平衡模量的影响时,模量值几乎存在显着差异(p = 0.054)。肌腱的单调加载显示了应变率依赖性的视觉差异。然而,在应变率对压缩模量影响的统计分析中,没有显示出显着差异。取向对压缩模量影响的统计分析显示出显着差异。取向分析中显示的差异验证了腱的各向异性。

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