How a mRNA COVID-19 Vaccine works inside a Cell: A Virtual Reality Serious Game

C. Berry, Kok Wai Wong, Guanjin Wang, Shri M. Rai, M. F. Shiratuddin
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Abstract

Vaccine hesitancy and uptake have been important issues in controlling the current COVID-19 pandemic in many regions around the globe, but the increase in vaccination rates has been slow or even halted in some countries. Therefore, people who have hesitated in getting the vaccine need to be addressed. One driver influencing vaccination uptake is closing the knowledge gap among the public by equipping them with a deeper understanding of how a vaccine works inside our cells to activate the immune system and develop immunity. Viral immunology is highly conceptual and requires an appreciation of molecular biology in the cell. To give individuals an intuitive awareness of the operation of a mRNA-type virus vaccine for COVID-19, we designed and developed a Virtual Reality (VR) based serious game called ‘Cell Traveler’. Through this innovative VR serious game, the player can control and interact with a sequence of critical real-life events inside a cell triggered by the injected mRNA COVID-19 vaccine. In this paper, we describe the prototype of the ‘Cell Traveler’. We utilize the concepts of serious game to create an experience to encourage students and the public to develop deeper mRNA vaccine knowledge through a memorable and fun experience.
mRNA COVID-19疫苗如何在细胞内工作:虚拟现实严肃游戏
在全球许多地区,疫苗犹豫和接种一直是控制当前COVID-19大流行的重要问题,但在一些国家,疫苗接种率的增长缓慢甚至停止。因此,需要解决那些对接种疫苗犹豫不决的人。影响疫苗接种的一个驱动因素是通过使公众更深入地了解疫苗如何在我们的细胞内激活免疫系统并产生免疫力,从而缩小公众之间的知识差距。病毒免疫学是高度概念性的,需要对细胞中的分子生物学有一定的了解。为了让个人直观地了解COVID-19 mrna型病毒疫苗的操作,我们设计并开发了一款基于虚拟现实(VR)的严肃游戏,名为“细胞旅行者”。通过这款创新的VR严肃游戏,玩家可以控制由注射的mRNA COVID-19疫苗触发的细胞内一系列关键的现实事件并与之互动。在本文中,我们描述了“细胞旅行者”的原型。我们利用严肃游戏的概念来创造一种体验,鼓励学生和公众通过难忘和有趣的体验来发展更深层次的mRNA疫苗知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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