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Maximum-likelihood estimation of restriction-fragment mobilities from 1-D electrophoretic agarose gels

机译:1-D电泳琼脂糖凝胶中限制性碎片迁移率的最大似然估计

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We have developed a technique for finding maximum-likelihood estimates of DNA restriction-fragment mobilities from images of fluorescently stained electrophoretic gels. Gel images are acquired directly using a CCD camera. The likelihood model incorporates the Poisson nature of the photon counts and models the fluorescence intensity as the superposition of Gaussian functions (corresponding to the fragment bands) of varying magnitude and width. An expectation-maximization algorithm is used to find maximum-likelihood estimates of the number of fragments, fragment mobilities, widths of the bands, background contributions, and DNA concentration. This approach has several advantages. Closely spaced and overlapping fragments are accurately resolved into their components. No a priori knowledge of the number or positions of fragments is required. Fragment lengths estimated by the maximum-likelihood method from experimental data were compared to the known lengths of fragments generated from three different restriction digests of bacteriophage $lambda DNA. Preliminary results using the maximum- likelihood method indicate residual sizing errors on the order of 1%.
机译:我们开发了一种从荧光染色的电泳凝胶图像中寻找DNA限制性片段迁移率的最大似然估计的技术。使用CCD相机直接获取凝胶图像。可能性模型包括光子计数的泊松性质,并将荧光强度模拟为高斯函数的叠加(对应于变化的片段带)不同的幅度和宽度。期望最大化算法用于找到片段数量,片段迁移率,频带宽度,背景贡献和DNA浓度的最大似然估计。这种方法有几个优点。紧密间隔和重叠的碎片被准确地分解为它们的组件。不需要先验的碎片的数量或位置的知识。将来自实验数据的最大似然方法估计的片段长度与从噬菌体$ Lambda DNA的三种不同限制性消化产生的已知长度的片段进行比较。使用最大似然方法的初步结果表示大约1%的剩余尺寸误差。

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