Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA.
Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA; Immersive Science LLC, Newcastle, WA 98056, USA.
J Mol Biol. 2018 Oct 19;430(21):4028-4035. doi: 10.1016/j.jmb.2018.06.035. Epub 2018 Jun 24.
ConfocalVR is a virtual reality (VR) application created to improve the ability of researchers to study the complexity of cell architecture. Confocal microscopes take pictures of fluorescently labeled proteins or molecules at different focal planes to create a stack of two-dimensional images throughout the specimen. Current software applications reconstruct the three-dimensional (3D) image and render it as a two-dimensional projection onto a computer screen where users need to rotate the image to expose the full 3D structure. This process is mentally taxing, breaks down if you stop the rotation, and does not take advantage of the eye's full field of view. ConfocalVR exploits consumer-grade VR systems to fully immerse the user in the 3D cellular image. In this virtual environment, the user can (1) adjust image viewing parameters without leaving the virtual space, (2) reach out and grab the image to quickly rotate and scale the image to focus on key features, and (3) interact with other users in a shared virtual space enabling real-time collaborative exploration and discussion. We found that immersive VR technology allows the user to rapidly understand cellular architecture and protein or molecule distribution. We note that it is impossible to understand the value of immersive visualization without experiencing it first hand, so we encourage readers to get access to a VR system, download this software, and evaluate it for yourself. The ConfocalVR software is available for download at http://www.confocalvr.com, and is free for nonprofits.
ConfocalVR 是一款虚拟现实 (VR) 应用程序,旨在提高研究人员研究细胞结构复杂性的能力。共聚焦显微镜通过对不同焦平面上荧光标记的蛋白质或分子进行拍照,从而在整个样本中创建一系列二维图像。当前的软件应用程序会重建三维 (3D) 图像,并将其渲染为计算机屏幕上的二维投影,用户需要在该投影上旋转图像以展示完整的 3D 结构。这个过程很费脑力,如果停止旋转,就会中断,而且也无法充分利用眼睛的全视野。ConfocalVR 利用消费级 VR 系统,让用户完全沉浸在 3D 细胞图像中。在这个虚拟环境中,用户可以 (1) 在不离开虚拟空间的情况下调整图像查看参数,(2) 伸出手抓取图像,快速旋转和缩放图像以聚焦关键特征,以及 (3) 在共享虚拟空间中与其他用户进行交互,从而实现实时协作探索和讨论。我们发现,沉浸式 VR 技术可以让用户快速了解细胞结构和蛋白质或分子的分布。我们注意到,如果不亲自体验,就不可能理解沉浸式可视化的价值,因此我们鼓励读者获得 VR 系统,下载这款软件,并亲自评估。ConfocalVR 软件可在 http://www.confocalvr.com 下载,非盈利组织可免费使用。