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首页> 外文期刊>Cellular Oncology: Analytical Cellular Pathology >Confocal 3D DNA Cytometry: Assessment of Required Coefficient of Variation by Computer Simulation
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Confocal 3D DNA Cytometry: Assessment of Required Coefficient of Variation by Computer Simulation

机译:共聚焦3D DNA细胞计数法:通过计算机仿真评估所需的变异系数

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Background: Confocal Laser Scanning Microscopy (CLSM) provides the opportunity to perform 3D DNA content measurements on intact cells in thick histological sections. So far, sample size has been limited by the time consuming nature of the technology. Since the power of DNA histograms to resolve different stemlines depends on both the sample size and the coefficient of variation (CV) of histogram peaks, interpretation of 3D CLSM DNA histograms might be hampered by both a small sample size and a large CV. The aim of this study was to analyze the required CV for 3D CLSM DNA histograms given a realistic sample size.Methods: By computer simulation, virtual histograms were composed for sample sizes of 20000, 10000, 5000, 1000, and 273 cells and CVs of 30, 25, 20, 15, 10 and 5%. By visual inspection, the histogram quality with respect to resolution of G0/1 and G2/M peaks of a diploid stemline was assessed.Results: As expected, the interpretability of DNA histograms deteriorated with decreasing sample sizes and higher CVs. For CVs of 15% and lower, a clearly bimodal peak pattern with well distinguishable G0/1 and G2/M peaks were still seen at a sample size of 273 cells, which is our current average sample size with 3D CLSM DNA cytometry.Conclusions: For unambiguous interpretation of DNA histograms obtained using 3D CLSM, a CV of at most 15% is tolerable at currently achievable sample sizes. To resolve smaller near diploid stemlines, a CV of 10% or better should be aimed at. With currently available 3D imaging technology, this CV is achievable.
机译:背景:共聚焦激光扫描显微镜(CLSM)提供了对厚组织学切片中完整细胞进行3D DNA含量测量的机会。到目前为止,样本数量受到该技术耗时性质的限制。由于DNA直方图解析不同干线的能力取决于样本大小和直方图峰的变异系​​数(CV),因此小样本量和大CV可能会妨碍3D CLSM DNA直方图的解释。本研究的目的是在给定实际样本量的情况下分析3D CLSM DNA直方图所需的CV。方法:通过计算机模拟,对20000、10000、5000、1000和273个细胞的样本量组成虚拟直方图和CV 30、25、20、15、10和5%。通过目视检查,评估了二倍体干线的相对于G0 / 1和G2 / M峰的分辨率的直方图质量。结果:正如预期的那样,DNA直方图的可解释性随着样本量的减小和CV的提高而变差。对于15%或更低的CV,在273个细胞的样本量下仍然可以看到清晰可见的双峰峰图案,具有清晰可辨的G0 / 1和G2 / M峰,这是我们目前使用3D CLSM DNA细胞计数法得出的平均样本量。为了清楚地解释使用3D CLSM获得的DNA直方图,在当前可实现的样本量下,CV最多可容忍15%。为了分辨较小的近二倍体干线,应将CV设置为10%或更高。使用当前可用的3D成像技术,此CV是可以实现的。

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