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Registration of Confocal Scanning Laser Microscopy and Quantitative Backscattered Electron Images for the Temporospatial Quantification of Mineralization Density in 18-Month Old Thoroughbred Racehorse Articular Calcified Cartilage

机译:配准共聚焦扫描激光显微镜和定量背向散射电子图像,用于18个月龄纯种赛马关节钙化软骨矿化密度的颞Den定量

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摘要

Combined backscattered electron scanning electron microscopy (BSE SEM) and confocal scanning laser microscopy (CSLM) have been used to put tissue mineralization data into the context of soft tissue histology and fluorescent label information. Mineralization density (D_m) and linear accretion rate (LAR) are quantifiable parameters associated with mineralizing fronts within calcified tissues. Quantitative BSE (qBSE) may be used to determine D_m, while CSLM may be used to detect label fluorescence from which LAR is calculated. Eighteen-month old Thoroughbred horses received single calcein injections 19 and 8 days prior to euthanasia, labeling sites of active mineralization with fluorescent bands. Confocal scanning laser microscopy images of articular calcified cartilage (ACC) from distal third metacarpal condyles were registered to qBSE images of the same sites using an in-house program. ImageJ and Sync Windows enabled the simultaneous collection of LAR and D_m data. The repeatability of the registration and measurement protocols was determined. D_m profiles between calcein labels were explored for an association with time. D_m was 119.7 ± 24.5 (mean ± standard deviation) gray levels (where 0 = backscattering from monobrominated and 255 from monoiodinated dimetha-crylate standards, respectively), while modal and maximum LAR were 0.45 and 3.45 μm/day, respectively. Coefficients of variation (CV) for D_m were 0.70 and 0.77% with and without repeat registration, respectively; CVs for LAR were 1.90 and 2.26% with and without repeat registration, respectively. No relationship was identified between D_m and time in the 11-day interlabel interval. Registration of CSLM to qBSE images is sufficiently repeatable for quantitative studies of equine ACC.
机译:结合使用背散射电子扫描电子显微镜(BSE SEM)和共聚焦扫描激光显微镜(CSLM)将组织矿化数据纳入软组织组织学和荧光标记信息的范围内。矿化密度(D_m)和线性吸积率(LAR)是与钙化组织内的矿化前沿相关的可量化参数。定量BSE(qBSE)可用于确定D_m,而CSLM可用于检测计算LAR的标记荧光。在安乐死前19和8天,对18个月大的纯种马进行了一次钙黄绿素注射,用荧光带标记了活跃矿化的部位。使用内部程序将来自远端第三掌骨con突的关节钙化软骨(ACC)的共聚焦扫描激光显微镜图像记录到相同部位的qBSE图像中。 ImageJ和Sync Windows启用了同时收集LAR和D_m数据的功能。确定了注册和测量方案的可重复性。探索钙黄绿素标记之间的D_m谱与时间的关系。 D_m为119.7±24.5(均值±标准偏差)灰度级(其中0 =单溴化二甲基丙烯酸标准物的反向散射和255)。 D_m的变异系数(CV)分别为0.70和0.77%。 LAR的CV分别为1.90和2.26%(有和没有重复注册)。在11天标签间间隔内,D_m与时间之间没有关系。 CSLM向qBSE图像的配准足以重复进行马ACC的定量研究。

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