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Advanced quantitative imaging and biomechanical analyses of periosteal fibers in accelerated bone growth

机译:骨膜纤维促进骨生长的高级定量成像和生物力学分析

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Purpose: The accepted mechanism explaining the accelerated growth following periosteal resection is that the periosteum serves as a mechanical restraint to restrict physeal growth. To test the veracity of this mechanism we first utilized Second Harmonic Generation (SHG) imaging to measure differences of periosteal fiber alignment at various strains. Additionally, we measured changes in periosteal growth factor transcription. Next we utilized SHG imaging to assess the alignment of the periosteal fibers on the bone both before and after periosteal resection. Based on the currently accepted mechanism, we hypothesized that the periosteal fibers adjacent to the physis should be more aligned (under tension) during growth and become less aligned (more relaxed) following metaphyseal periosteal resection. In addition, we measured the changes in periosteal micro- and macro-scale mechanics.
机译:目的:解释骨膜切除术后加速生长的公认机制是骨膜作为限制骨赘生长的机械约束。为了测试这种机制的准确性,我们首先利用第二谐波生成(SHG)成像来测量各种应变下的骨膜纤维排列的差异。此外,我们测量了骨膜生长因子转录的变化。接下来,我们利用SHG成像评估骨膜切除术前后骨膜上骨膜纤维的排列。基于目前公认的机制,我们假设在生长过程中,邻近于物理层的骨膜纤维应更加对齐(处于张紧状态),而在干peri端骨膜切除后应减少对齐(更加松弛)。此外,我们测量了骨膜微观和宏观力学的变化。

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