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Adaptation of video game UVW mapping to 3D visualization of gene expression patterns

机译:视频游戏UVW映射对基因表达模式3D可视化的适应

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Analysis of gene expression patterns within an organism plays a critical role in associating genes with biological processes in both health and disease. During embryonic development the analysis and comparison of different gene expression patterns allows biologists to identify candidate genes that may regulate the formation of normal tissues and organs and to search for genes associated with congenital diseases. No two individual embryos, or organs, are exactly the same shape or size so comparing spatial gene expression in one embryo to that in another is difficult. We will present our efforts in comparing gene expression data collected using both volumetric and projection approaches. Volumetric data is highly accurate but difficult to process and compare. Projection methods use UV mapping to align texture maps to standardized spatial frameworks. This approach is less accurate but is very rapid and requires very little processing. We have built a database of over 180 3D models depicting gene expression patterns mapped onto the surface of spline based embryo models. Gene expression data in different models can easily be compared to determine common regions of activity. Visualization software, both Java and OpenGL optimized for viewing 3D gene expression data will also be demonstrated.
机译:生物体内基因表达模式的分析在将基因与生物过程中的生物过程中的基因中发挥着关键作用。在胚胎发育过程中,不同基因表达模式的分析和比较允许生物学家识别可能调节正常组织和器官的形成并搜索与先天性疾病相关的基因的候选基因。没有两种单独的胚胎或器官是完全相同的形状或尺寸,从而将空间基因表达与另一个胚胎中的相同的形状或尺寸完全相同。我们将在使用两种体积和投影方法收集的基因表达数据来展示我们的努力。体积数据非常准确,但难以处理和比较。投影方法使用UV映射将纹理映射对齐至标准化的空间框架。这种方法不太准确,但非常迅速,加工很少。我们已经建立了一个超过180个3D模型的数据库,描绘了映射到条状的胚胎模型表面上的基因表达模式。可以很容易地比较不同模型中的基因表达数据以确定常见的活动区域。可视化软件,还将对查看3D基因表达数据进行优化的Java和OpenGL。

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