Wallace H. Coulter Department of Biomedical Engineering, Georgia Institute of Technology and Emory University, Atlanta, GA, USA.
Interdisciplinary Bioengineering Graduate Program, Georgia Institute of Technology, Atlanta, GA, USA.
Cell Rep Med. 2021 Jul 21;2(7):100348. doi: 10.1016/j.xcrm.2021.100348. eCollection 2021 Jul 20.
3D visualization technologies such as virtual reality (VR), augmented reality (AR), and mixed reality (MR) have gained popularity in the recent decade. Digital extended reality (XR) technologies have been adopted in various domains ranging from entertainment to education because of their accessibility and affordability. XR modalities create an immersive experience, enabling 3D visualization of the content without a conventional 2D display constraint. Here, we provide a perspective on XR in current biomedical applications and demonstrate case studies using cell biology concepts, multiplexed proteomics images, surgical data for heart operations, and cardiac 3D models. Emerging challenges associated with XR technologies in the context of adverse health effects and a cost comparison of distinct platforms are discussed. The presented XR platforms will be useful for biomedical education, medical training, surgical guidance, and molecular data visualization to enhance trainees' and students' learning, medical operation accuracy, and the comprehensibility of complex biological systems.
在过去的十年中,虚拟现实 (VR)、增强现实 (AR) 和混合现实 (MR) 等 3D 可视化技术变得流行起来。由于其可及性和可负担性,数字扩展现实 (XR) 技术已在从娱乐到教育等各个领域得到采用。XR 模式创造了身临其境的体验,能够在没有传统 2D 显示限制的情况下对内容进行 3D 可视化。在这里,我们提供了当前生物医学应用中 XR 的视角,并展示了使用细胞生物学概念、多重蛋白质组学图像、心脏手术数据和心脏 3D 模型的案例研究。讨论了与 XR 技术相关的新兴挑战,包括对健康的不良影响以及不同平台成本的比较。所呈现的 XR 平台将有助于生物医学教育、医学培训、手术指导和分子数据可视化,以提高学员和学生的学习、医疗操作的准确性以及复杂生物系统的可理解性。