Department of Informatics, University of Bergen, Bergen, Norway.
J Integr Bioinform. 2022 Jun 22;19(2):20220016. doi: 10.1515/jib-2022-0016.
Biomedical illustration and visualization techniques provide a window into complex molecular worlds that are difficult to capture through experimental means alone. Biomedical illustrators frequently employ color to help tell a molecular story, e.g., to identify key molecules in a signaling pathway. Currently, color use for molecules is largely arbitrary and often chosen based on the client, cultural factors, or personal taste. The study of molecular dynamics is relatively young, and some stakeholders argue that color use guidelines would throttle the growth of the field. Instead, content authors have ample creative freedom to choose an aesthetic that, e.g., supports the story they want to tell. However, such creative freedom comes at a price. The color design process is challenging, particularly for those without a background in color theory. The result is a semantically inconsistent color space that reduces the interpretability and effectiveness of molecular visualizations as a whole. Our contribution in this paper is threefold. We first discuss some of the factors that contribute to this array of color palettes. Second, we provide a brief sampling of color palettes used in both industry and research sectors. Lastly, we suggest considerations for developing best practices around color palettes applied to molecular visualization.
生物医学插图和可视化技术为我们提供了一个窗口,可以深入了解仅凭实验手段难以捕捉的复杂分子世界。生物医学插画家经常使用颜色来帮助讲述分子故事,例如,识别信号通路中的关键分子。目前,分子的颜色使用在很大程度上是任意的,通常是根据客户、文化因素或个人喜好来选择的。分子动力学的研究相对较年轻,一些利益相关者认为颜色使用指南会限制该领域的发展。相反,内容作者有足够的创作自由来选择一种美学风格,例如,支持他们想要讲述的故事。然而,这种创作自由是有代价的。颜色设计过程具有挑战性,特别是对于那些没有颜色理论背景的人来说。其结果是一个语义上不一致的颜色空间,降低了分子可视化作为一个整体的可解释性和有效性。我们在本文中的贡献有三点。首先,我们讨论了导致这种调色板的一些因素。其次,我们提供了一些在工业和研究领域中使用的调色板的简要示例。最后,我们建议在应用于分子可视化的调色板方面制定最佳实践时应考虑的因素。