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分子动画制作策略。

Strategies for the Production of Molecular Animations.

作者信息

Werner Erik

机构信息

RNS Berlin, Berlin, Germany.

出版信息

Front Bioinform. 2022 May 16;2:793914. doi: 10.3389/fbinf.2022.793914. eCollection 2022.

Abstract

Molecular animations play an increasing role in scientific visualisation and science communication. They engage viewers through non-fictional, documentary type storytelling and aim at advancing the audience. Every scene of a molecular animation is to be designed to secure clarity. To achieve this, knowledge on design principles from various design fields is essential. The relevant principles help to draw attention, guide the eye, establish relationships, convey dynamics and/or trigger a reaction. The tools of general graphic design are used to compose a signature frame, those of cinematic storytelling and user interface design to choreograph the relative movement of characters and cameras. Clarity in a scientific visualisation is reached by simplification and abstraction where the choice of the adequate representation is of great importance. A large set of illustration styles is available to chose the appropriate detail level but they are constrained by the availability of experimental data. For a high-quality molecular animation, data from different sources can be integrated, even filling the structural gaps to show a complete picture of the native biological situation. For maintaining scientific authenticity it is good practice to mark use of artistic licence which ensures transparency and accountability. The design of motion requires knowledge from molecule kinetics and kinematics. With biological macromolecules, four types of motion are most relevant: thermal motion, small and large conformational changes and Brownian motion. The principles of dynamic realism should be respected as well as the circumstances given in the crowded cellular environment. Ultimately, consistent complexity is proposed as overarching principle for the production of molecular animations and should be achieved between communication objective and abstraction/simplification, audience expertise and scientific complexity, experiment and representation, characters and environment as well as structure and motion representation.

摘要

分子动画在科学可视化和科学传播中发挥着越来越重要的作用。它们通过非虚构的纪录片式叙事吸引观众,旨在提升观众的认知。分子动画的每个场景都应设计得清晰明了。要做到这一点,了解各个设计领域的设计原则至关重要。这些相关原则有助于吸引注意力、引导视线、建立联系、传达动态效果和/或引发反应。通用平面设计工具用于构图标志性画面,电影叙事和用户界面设计工具用于编排角色和摄像机的相对运动。科学可视化中的清晰度是通过简化和抽象来实现的,其中选择合适的表现形式非常重要。有大量的插图风格可供选择以确定适当的细节级别,但它们受到实验数据可用性的限制。对于高质量的分子动画,可以整合来自不同来源的数据,甚至填补结构上的空白以展示天然生物状态的全貌。为保持科学真实性,标明使用艺术许可的做法是很好的,这确保了透明度和可追溯性。运动设计需要分子动力学和运动学方面的知识。对于生物大分子,四种类型的运动最为相关:热运动、小的和大的构象变化以及布朗运动。应尊重动态现实主义原则以及拥挤细胞环境中的实际情况。最终,提出一致性复杂性作为分子动画制作的总体原则,应在传播目标与抽象/简化、观众专业知识与科学复杂性、实验与表现、角色与环境以及结构与运动表现之间实现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15da/9580893/2ed0a66ad996/fbinf-02-793914-g001.jpg

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