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Application of structural rigidity analysis to assess fidelity of healed fractures in rat femurs with critical defects.

机译:结构刚度分析在评估具有严重缺损的大鼠股骨愈合骨折的保真度中的应用。

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Approximately 6 million fractures occur each year in the United States, with an estimated medical and loss of productivity cost of Dollars 99 billion. As our population ages, it can only be expected that these numbers will continue to rise. While there have been recent advances in available treatments for fractures, assessment of the healing process remains a subjective process. This study aims to demonstrate the use of micro-computed tomography (microCT)-based structural rigidity analysis to accurately and quantitatively assess the progression of fracture healing over time in a rat model. The femora of rats with simulated lytic defects were injected with human BMP-2 cDNA at various time points postinjury (t = 0, 1, 5, 10 days) to accelerate fracture healing, harvested 56 days from time of injury, and subjected to microCT imaging to obtain cross-sectional data that were used to compute torsional rigidity. The specimens then underwent torsional testing to failure using a previously described pure torsional testing system. Strong correlations were found between measured torsional rigidity and computed torsional rigidity as calculated from both average (R2 = 0.63) and minimum (R2 = 0.81) structural rigidity data. While both methods were well correlated across the entire data range, minimum torsional rigidity was a better descriptor of bone strength, as seen by a higher Pearson coefficient and smaller y-intercept. These findings suggest considerable promise in the use of structural rigidity analysis of microCT data to accurately and quantitatively measure fracture-healing progression.
机译:在美国,每年大约发生600万个骨折,估计医疗和生产力损失达990亿美元。随着我们人口的老龄化,只能预期这些数字将继续上升。尽管在骨折的可用治疗方法方面已有新进展,但是对愈合过程的评估仍然是一个主观过程。这项研究旨在证明使用基于微计算机断层扫描(microCT)的结构刚度分析来准确定量地评估大鼠模型中骨折愈合的进展。在损伤后的不同时间点(t = 0、1、5、10天)向具有模拟溶解缺陷的大鼠的股骨注射人BMP-2 cDNA,以加速骨折愈合,从受伤时间起56天收获并进行microCT成像以获得用于计算抗扭刚度的横截面数据。然后,使用先前描述的纯扭力测试系统对样品进行扭力测试直至失效。根据平均(R2 = 0.63)和最小(R2 = 0.81)结构刚度数据计算得出的测得的扭转刚度与计算的扭转刚度之间存在很强的相关性。虽然这两种方法在整个数据范围内都具有良好的相关性,但从较高的皮尔森系数和较小的y轴截距可以看出,最小扭转刚度是更好的骨强度指标。这些发现表明,在使用microCT数据进行结构刚度分析以准确,定量地测量骨折愈合过程方面,具有很大的前景。

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