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BETTER GENECHIP MICROARRAY LAYOUTS BY COMBINING PROBE PLACEMENT AND EMBEDDING

机译:通过结合探针放置和嵌入实现更好的基因芯片微阵列布局

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摘要

The microarray layout problem is a generalization of the border length minimization problem, and asks to distribute oligonucleotide probes on a microarray and to determine their embeddings in the deposition sequence in such a way that the overall quality of the resulting synthesized probes is maximized. Because of its inherent computational complexity, it is traditionally attacked in several phases: partitioning, placement, and re-embedding. We present the first algorithm, Greedy+, that combines placement and embedding and that results in improved layouts in terms of border length and conflict index (a more realistic measure of probe quality), both on arrays of random probes and on existing Affymetrix GeneChip? arrays. We also present a detailed study on the layouts of the latest GeneChip arrays, and show how Greedy+ can further improve layout quality by as much as 12% in terms of border length and 35% in terms of conflict index.
机译:微阵列布局问题是边界长度最小化问题的一般化,并要求以使所得合成探针的整体质量最大化的方式,将寡核苷酸探针分布在微阵列上并确定其在沉积序列中的嵌入。由于其固有的计算复杂性,传统上它会分几个阶段进行攻击:分区,放置和重新嵌入。我们提出了第一种算法Greedy +,该算法结合了放置和嵌入功能,可以在随机探针阵列和现有Affymetrix GeneChip上在边框长度和冲突指数(更真实地衡量探针质量)方面改善布局。数组。我们还对最新的GeneChip阵列的布局进行了详细研究,并展示了Greedy +如何进一步提高布局质量(就边界长度而言达到12%,就冲突指数而言达到35%)。

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