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Experimental determination of Drosophila embryonic coordinates by genetic algorithms, the simplex method, and their hybrid

机译:遗传算法,单纯克法及其杂种果蝇胚胎坐标的实验测定

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Modern large-scale "functional genomics" projects are inconceivable without the automated processing and computer-aided analysis of images. The project we are engaged in is aimed at the construction of heuristic models of segment determination in the fruit fly Drosophila melanogaster. The current emphasis in our work is the automated transformation of gene expression data in confocally scanned images into an electronic database of expression. We have developed and tested programs which use genetic algorithms for the elastic deformation of such images. In addition, genetic algorithms and the simplex method, both separately and in concert, were used for experimental determination of Drosophila embryonic curvilinear coordinates. Comparative tests demonstrate that the hybrid approach performs best. The intrinsic curvilinear coordinates of the embryo found by our optimization procedures appear to be well approximated by lines of isoconcentration of a known morphogen, Bicoid.
机译:现代大规模“功能基因组学”项目是不可想象的,无需自动化处理和计算机辅助分析。我们从事的项目旨在建造果蝇果蝇Melanogaster中的段测定的启发式模型。我们工作中的目前强调是将相互扫描的图像中的基因表达数据的自动转换为表达式电子数据库。我们已经开发和测试了使用遗传算法的程序来实现这些图像的弹性变形。另外,遗传算法和单独和协同作用的单纯氧化物方法用于实验测定果蝇胚胎曲线坐标。比较试验表明,混合方法表现最佳。通过我们的优化程序发现的胚胎的内在曲线坐标似乎是通过已知的形态学,白纤维的单一浓缩的线近似。

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