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首页> 外文期刊>Biomechanics and modeling in mechanobiology >Image-based radiodensity profilometry measures early remodeling at the bone-callus interface in sheep
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Image-based radiodensity profilometry measures early remodeling at the bone-callus interface in sheep

机译:基于图像的放射密度轮廓测量法测量绵羊骨-愈伤组织界面的早期重塑

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摘要

Bone healing has been traditionally described as a four-phase process: inflammatory response, soft callus formation, hard callus development, and remodeling. The remodeling phase has been largely neglected in most numerical mechanoregulation models of fracture repair in favor of capturing early healing using a pre-defined callus domain. However, in vivo evidence suggests that remodeling occurs concurrently with repair and causes changes in cortical bone adjacent to callus that are typically neglected in numerical models of bone healing. The objective of this study was to use image processing techniques to quantify this early-stage remodeling in ovine osteotomies. To accomplish this, we developed a numerical method for radiodensity profilometry with optimization-based curve fitting to mathematically model the bone density gradients in the radial direction across the cortical wall and callus. After assessing data from 26 sheep, we defined a dimensionless density fitting function that revealed significant remodeling occurring in the cortical wall adjacent to callus during early healing, a 23 average reduction in density compared to intact. This fitting function is robust for modeling radial density gradients in both intact bone and fracture repair scenarios and can capture a wide variety of the healing responses. The fitting function can also be scaled easily for comparison to numerical model predictions and may be useful for validating future mechanoregulatory models of coupled fracture repair and remodeling.
机译:骨愈合传统上被描述为一个四个阶段的过程:炎症反应、软愈伤组织形成、硬愈伤组织发育和重塑。在大多数骨折修复的数值机械调节模型中,重塑阶段在很大程度上被忽略了,而倾向于使用预定义的愈伤组织域来捕捉早期愈合。然而,体内证据表明,重塑与修复同时发生,并导致与愈伤组织相邻的皮质骨发生变化,这在骨愈合的数值模型中通常被忽视。本研究的目的是使用图像处理技术来量化绵羊截骨术中的这种早期重塑。为了实现这一点,我们开发了一种放射密度轮廓测量的数值方法,该方法具有基于优化的曲线拟合,以数学方式模拟穿过皮质壁和愈伤组织的径向骨密度梯度。在评估了 26 只绵羊的数据后,我们定义了一个无量纲密度拟合函数,该函数揭示了在早期愈合期间愈伤组织附近皮质壁发生的显着重塑,与完整相比,密度平均降低了 23%。该拟合函数对于在完整骨骼和骨折修复场景中模拟径向密度梯度非常可靠,并且可以捕获各种愈合响应。拟合函数也可以很容易地缩放,以便与数值模型预测进行比较,并且可能有助于验证未来耦合断裂修复和重塑的力学调控模型。

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