已知振幅的多个重叠带的检测,并应用于DNA指纹

D. Fuhrmann
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引用次数: 1

摘要

DNA定位的技术之一是电泳凝胶的制备,电泳凝胶在染色和电子成像时包含许多漫射的矩形物体,称为“带”,面积为几个像素,必须被检测和定位。这篇论文描述了一种算法,它是这种凝胶自动分析的核心,是一个大型软件产品的一部分,现在用于几个基因组学实验室的测绘项目。所解决的问题是检测已知形状和振幅的多个重叠脉冲。基本算法是一种合成分析,将脉冲一个接一个地添加到正演合成模型中,在每个新脉冲添加后重新访问所有脉冲。因为振幅是已知的,所以不存在用额外的模型项显着过拟合数据的风险。所使用的代价函数是加权最小二乘函数,它对测试信号的形状给予了更多的权重,而对其总体幅度给予了较少的权重。讨论了该算法在DNA指纹识别大背景下的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Detection of multiple overlapping bands of known amplitude, with application to DNA fingerprinting
One of the technologies in DNA mapping is the preparation of electrophoretic gels, which when stained and imaged electronically contain a number of diffuse rectangular objects, called "bands", several pixels in area, which must be detected and localized. This paper describes an algorithm which is central to the automated analysis of such gels, part of a large software product now in use for mapping projects at several genomics laboratories. The problem addressed is that of detecting multiple overlapping pulses of known shape and amplitude. The basic algorithm is one of analysis-by-synthesis, where pulses are added one by one to a forward synthesis model, with revisit to all pulses after each new pulse is added. Because the amplitudes are known there is no risk of significantly overfitting the data with additional model terms. The cost function utilized is a weighted least-squares function, which gives more weight to the shape of the test signal and less to its overall amplitude. Application of this algorithm in the larger context of DNA fingerprinting is discussed.
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