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Micro-Computed tomography (CT) based assessment of dental regenerative therapy in the canine mandible model

机译:基于微型计算机断层扫描(CT)的犬下颌骨模型中牙齿再生治疗的评估

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High-resolution 3D bone-tissue structure measurements may provide information critical to the understanding of the bone regeneration processes and to the bone strength assessment. Tissue engineering studies rely on such nondestructive measurements to monitor bone graft regeneration area. In this study, we measured bone yield, fractal dimension and trabecular thickness through micro-CT slices for different grafts and controls. Eight canines underwent surgery to remove a bone volume (defect) in the canine's jaw at a total of 44 different locations. We kept 11 defects empty for control and filled the remaining ones with three regenerative materials; NanoGen (NG), a FDA-approved material (n=11), a novel NanoCalcium Sulfate (NCS) material (n=11) and NCS alginate (NCS+alg) material (n=11). After a minimum of four and eight weeks, the canines were sacrificed and the jaw samples were extracted. We used a custom-built micro-CT system to acquire the data volume and developed software to measure the bone yield, fractal dimension and trabecular thickness. The software used a segmentation algorithm based on histograms derived from volumes of interest indicated by the operator. Using bone yield and fractal dimension as indices we are able to differentiate between the control and regenerative material (p<0.005). Regenerative material NCS showed an average 63.15% bone yield improvement over the control sample, NCS+alg showed 55.55% and NanoGen showed 37.5%. The bone regeneration process and quality of bone were dependent upon the position of defect and time period of healing. This study presents one of the first quantitative comparisons using non-destructive Micro-CT analysis for bone regenerative material in a large animal with a critical defect model. Our results indicate that Micro-CT measurement could be used to monitor in-vivo bone regeneration studies for greater regenerative process understanding.
机译:高分辨率3D骨组织结构测量结果可能会提供对于了解骨骼再生过程和骨骼强度评估至关重要的信息。组织工程研究依靠这种非破坏性测量来监测骨移植物的再生面积。在这项研究中,我们通过micro-CT切片测量了不同移植物和对照的骨产量,分形维数和小梁厚度。八个犬进行了手术,以去除犬颌骨中总共44个不同位置的骨量(缺损)。我们将11个缺陷留空以进行控制,并用三种再生材料填充其余缺陷。 NanoGen(NG),一种FDA批准的材料(n = 11),一种新型的NanoSulfate硫酸盐(NCS)材料(n = 11)和NCS海藻酸盐(NCS + alg)材料(n = 11)。至少四,八周后,将犬只处死并提取颌骨样品。我们使用定制的微型CT系统来获取数据量,并开发了用于测量骨屈服,分形维数和小梁厚度的软件。该软件使用了基于直方图的分割算法,该直方图是从操作员指示的感兴趣体积中得出的。使用骨屈服和分形维数作为指标,我们可以区分对照材料和再生材料(p <0.005)。再生材料NCS显示平均比对照样品的骨产量提高63.15%,NCS + alg显示55.55%,NanoGen显示37.5%。骨骼的再生过程和骨骼的质量取决于缺损的位置和愈合的时间。这项研究提出了使用非破坏性Micro-CT分析对具有严重缺陷模型的大型动物的骨再生材料进行的第一个定量比较。我们的结果表明,Micro-CT测量可用于监测体内骨再生研究,以更好地了解再生过程。

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