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首页> 外文期刊>Journal of Microscopy >3D visualization and quantification of rat cortical bone porosity using a desktop micro-CT system: a case study in the tibia.
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3D visualization and quantification of rat cortical bone porosity using a desktop micro-CT system: a case study in the tibia.

机译:使用台式微型CT系统对大鼠皮质骨孔隙进行3D可视化和量化:以胫骨为例。

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摘要

Although micro-computed tomography (micro-CT) has become the gold standard for assessing the 3D structure of trabecular bone, its extension to cortical bone microstructure has been relatively limited. Desktop micro-CT has been employed to assess cortical bone porosity of humans, whereas that of smaller animals, such as mice and rats, has thus far only been imaged using synchrotron-based micro-CT. The goal of this study was to determine if it is possible to visualize and quantify rat cortical porosity using desktop micro-CT. Tibiae (n = 10) from 30-week-old female Sprague-Dawley rats were imaged with micro-CT (3 mum nominal resolution) and sequential ground sections were then prepared. Bland-Altman plots were constructed to compare per cent porosity and mean canal diameter from micro-CT (3D) versus histology (2D). The mean difference or bias (histology - micro-CT; +/-95% confidence interval) for per cent porosity was found to be -0.15% (+/-2.57%), which was not significantly different from zero (P= 0.720). Canal diameter had a bias (+/-95% confidence interval) of -5.73 mum (+/-4.02 mum) which was found to be significantly different from zero (P < 0.001). The results indicated that cortical porosity in rat bone can indeed be visualized by desktop micro-CT. Quantitative assessment of per cent porosity provided unbiased results, whereas direct analysis of mean canal diameter was overestimated by micro-CT. Thus, although higher resolution, such as that available from synchrotron micro-CT, may ultimately be required for precise geometric measurements, desktop micro-CT - which is far more accessible - is capable of yielding comparable measures of porosity and holds great promise for assessment of the 3D arrangement of cortical porosity in the rat.
机译:尽管微计算机断层扫描(micro-CT)已成为评估小梁骨3D结构的金标准,但其扩展到皮质骨微结构的方法仍然相对有限。台式微型CT已被用于评估人类的皮质骨孔隙度,而迄今为止,较小的动物(如小鼠和大鼠)的皮质骨孔隙度仅使用基于同步加速器的微型CT成像。这项研究的目的是确定是否有可能使用台式微型CT可视化和量化大鼠皮质孔隙度。用micro-CT(3毫米标称分辨率)对30周龄雌性Sprague-Dawley大鼠的胫骨(n = 10)进行成像,然后准备连续的地面切片。构造了Bland-Altman图,以比较Micro-CT(3D)与组织学(2D)的孔隙率百分比和平均管径。孔隙率百分比的平均差异或偏差(组织学-micro-CT; +/- 95%置信区间)为-0.15%(+/- 2.57%),与零无显着差异(P = 0.720) )。根管直径的偏差(+/- 95%置信区间)为-5.73微米(+/- 4.02微米),与零显着不同(P <0.001)。结果表明,可以通过台式微型CT可视化大鼠骨骼中的皮质孔隙。孔隙度百分比的定量评估提供了无偏见的结果,而平均CT直径的直接分析却被微型CT高估了。因此,尽管对于精确的几何测量最终可能需要更高的分辨率,例如同步加速器微型CT所提供的分辨率,但台式微型CT(更容易获得)能够产生可比的孔隙度测量值,并具有很大的评估前景大鼠皮质孔隙的3D排列方式。

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