首页> 外文会议>ASME Bioengineering Conference >INJURY DURING EARLY NEONATAL DEVELOPMENT LEADS TO A FASTER REPAIR RESPONSE WHEN COMPARED TO LATER INJURY IN A MOUSE ACHILLES TENDON
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INJURY DURING EARLY NEONATAL DEVELOPMENT LEADS TO A FASTER REPAIR RESPONSE WHEN COMPARED TO LATER INJURY IN A MOUSE ACHILLES TENDON

机译:在鼠标腱腱的后期伤害相比,早期新生儿发育期间的伤害导致更快的修复响应

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During neonatal development, tendons undergo a well orchestrated process whereby extensive structural and compositional changes occur in synchrony to produce a normal tissue [1,2]. Similarly, during the repair response to injury, structural and compositional changes occur, but in this case, a mechanically inferior tendon is produced. As a result, the process of development has been postulated as a potential paradigm through which improved tissue healing may occur. By examining injury at distinctly different stages of development, we will obtain vital information into the structure-function relationships in tendon. Although the mouse is an intriguing model system due to the availability of assays and genetically altered animals, due to the small size and fragile nature of neonatal tendons, neonatal tendon injury has not been evaluated. Therefore, the objective of this study is to evaluate the differential healing response in neonatal tendon at two distinct stages of development. We hypothesized that when normalized, maximum stress and modulus will be significantly higher in early neonatal injury when compared to later neonatal injury. Also, when normalized, maximum stress, modulus and percent relaxation will be significantly increased over time in early neonatal injury but will remain low in later neonatal injury.
机译:在新生儿发育过程中,肌腱经过良好的策划过程,由此发生了广泛的结构和组成变化,以产生正常组织[1,2]。类似地,在对损伤的修复反应期间,发生结构和组成变化,但在这种情况下,产生机械较差的肌腱。结果,发育过程已经假定为潜在的范例,通过这种潜在范例可以发生改善的组织愈合。通过检查明显不同的发展阶段的伤害,我们将获得肌腱中结构功能关系的重要信息。虽然鼠标是一种有趣的模型系统,由于测定和遗传改变的动物的可用性,由于新生儿肌腱的小尺寸和脆弱性,但尚未评估新生儿肌腱损伤。因此,本研究的目的是在两个不同的发育阶段评估新生儿肌腱中的差异愈合应答。我们假设与后期新生儿损伤相比,当归一化时,在新生儿损伤中,最大应力和模量将显着更高。此外,在新生儿损伤早期的时间内随着时间的推移,在归一化,最大应力,模量和百分比下会显着增加,但在后期新生儿损伤中将保持低位。

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