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Assessment of collagen fibril spacing in relation to selected region of interest (ROI) on electron micrographs-application to the mammalian corneal stroma

机译:在电子显微镜下评估与所选感兴趣区域(ROI)相关的胶原纤维间距,将其应用于哺乳动物角膜基质

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AIMS: To evaluate measurements of collagen fibril spacing using different shaped regions of interest (ROI) on transmission electron micrograph (TEM) images of rabbit corneal stroma. METHODS: Following glutaraldehyde fixation and phosphotungstic acid staining, TEM images of collagen fibrils in cross section were projected at a final magnification close to 250,000 × to obtain overlays. Interfibril distances (IFDs; center-to-center spacing) were measured within different ROIs of the same nominal area (0.25 μm ~2) but different shape (with the length to width, L:W, ratio from 1:1 to 6:1). The IFD distribution was analyzed, and the 2D organization assessed using a radial distribution analysis. RESULTS: The fibrils had an average diameter of 35.3 ± 3.8 (SD) nm, packing density of 393 ± 4 fibrils / μm ~2 and a fibril volume fraction of 0.39 ± 0.02. IFDs ranged from 29 to 1400 nm depending on the shape of the ROI, with average values ranging from 263 to 443 nm. By artificially selecting IFD data only to a radial distance of 250 nm, the average IFDs were just 145-157 nm. The radial distributions, to 250 nm, all showed a nearest neighbors first peak which shifted slightly from predominantly at 45-54 nm with more rectangular ROIs. The radial distribution profiles could be shown to be statistically different if the ROI L:W ratio was 2:1 or greater. CONCLUSION: Selection of an ROI for assessment of packing density and interfibril distances should be standardized for comparative assessments of TEMs of collagen fibrils.
机译:目的:在兔角膜基质的透射电子显微照片(TEM)图像上,使用不同形状的目标区域(ROI)评估胶原纤维间距的测量。方法:在戊二醛固定和磷钨酸染色后,将横截面的胶原原纤维的TEM图像投影到最终放大倍数接近250,000×的情况下,以获得覆盖图。在相同标称面积(0.25μm〜2)但形状不同(长宽比L:W,比率为1:1至6:6)的不同ROI中测量纤维间距离(IFDs;中心距)。 1)。分析了IFD分布,并使用径向分布分析评估了2D组织。结果:原纤维平均直径为35.3±3.8(SD)nm,堆积密度为393±4原纤维/μm〜2,原纤维体积分数为0.39±0.02。根据ROI的形状,IFD的范围为29至1400 nm,平均值范围为263至443 nm。通过仅在250 nm的径向距离上人工选择IFD数据,平均IFD仅为145-157 nm。到250 nm的径向分布都显示了最近的第一个峰,该峰从主要在45-54 nm处略有偏移,具有更大的矩形ROI。如果ROI L:W比为2:1或更大,则径向分布轮廓可能显示为统计上不同。结论:应选择用于评估堆积密度和原纤维间距离的ROI,以比较评估胶原原纤维的TEM。

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