首页> 美国卫生研究院文献>Journal of Biomechanical Engineering >Examining Differences in Local Collagen Fiber Crimp Frequency Throughout Mechanical Testing in a Developmental Mouse Supraspinatus Tendon Model
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Examining Differences in Local Collagen Fiber Crimp Frequency Throughout Mechanical Testing in a Developmental Mouse Supraspinatus Tendon Model

机译:在发育性小鼠Supraspinatus肌腱模型的整个机械测试中检查局部胶原纤维卷曲频率的差异

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摘要

Crimp morphology is believed to be related to tendon mechanical behavior. While crimp has been extensively studied at slack or nondescript load conditions in tendon, few studies have examined crimp at specific, quantifiable loading conditions. Additionally, the effect of the number of cycles of preconditioning on collagen fiber crimp behavior has not been examined. Further, the dependence of collagen fiber crimp behavior on location and developmental age has not been examined in the supraspinatus tendon. Local collagen fiber crimp frequency is quantified throughout tensile mechanical testing using a flash freezing method immediately following the designated loading protocol. Samples are analyzed quantitatively using custom software and semi-quantitatively using a previously established method to validate the quantitative software. Local collagen fiber crimp frequency values are compared throughout the mechanical test to determine where collagen fiber frequency changed. Additionally, the effect of the number of preconditioning cycles is examined compared to the preload and toe-region frequencies to determine if increasing the number of preconditioning cycles affects crimp behavior. Changes in crimp frequency with age and location are also examined. Decreases in collagen fiber crimp frequency were found at the toe-region at all ages. Significant differences in collagen fiber crimp frequency were found between the preload and after preconditioning points at 28 days. No changes in collagen fiber crimp frequency were found between locations or between 10 and 28 days old. Local collagen fiber crimp frequency throughout mechanical testing in a postnatal developmental mouse SST model was measured. Results confirmed that the uncrimping of collagen fibers occurs primarily in the toe-region and may contribute to the tendon’s nonlinear behavior. Additionally, results identified changes in collagen fiber crimp frequency with an increasing number of preconditioning cycles at 28 days, which may have implications on the measurement of mechanical properties and identifying a proper reference configuration.
机译:卷曲的形态被认为与肌腱的力学行为有关。尽管在松弛或无描述的肌腱载荷条件下对压接进行了广泛研究,但很少有研究在特定的,可量化的载荷条件下检查压接。另外,还没有检查过预处理次数对胶原纤维卷曲行为的影响。此外,在棘上肌腱中尚未检查胶原纤维卷曲行为对位置和发育年龄的依赖性。紧接指定的加载方案后,使用快速冷冻方法在整个拉伸机械测试中量化局部胶原纤维的卷曲频率。使用定制软件对样品进行定量分析,并使用先前建立的方法对样品进行半定量以验证定量软件。在整个机械测试中,将比较本地胶原纤维卷曲频率值,以确定胶原纤维频率在何处变化。另外,将预调节循环次数的影响与预载和脚趾区域的频率进行比较,以确定是否增加预调节循环次数是否会影响压接行为。还检查了压接频率随年龄和位置的变化。在所有年龄段的脚趾区域均发现胶原纤维的卷曲频率降低。在28天的预紧力和预处理之间,发现胶原纤维的卷曲频率存在显着差异。在位置之间或10至28天之间,未发现胶原纤维卷曲频率的变化。在产后发育的小鼠SST模型中,通过机械测试对局部胶原纤维的卷曲频率进行了测量。结果证实,胶原纤维的解卷主要发生在脚趾区域,可能有助于肌腱的非线性行为。此外,结果发现胶原纤维卷曲频率随28天预处理次数的增加而变化,这可能对机械性能的测量和确定合适的参考构型有影响。

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