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ConfocalVR: Immersive Visualization for Confocal Microscopy
Authors:Caroline Stefani  Adam Lacy-Hulbert  Thomas Skillman
Affiliation:1. Benaroya Research Institute at Virginia Mason, Seattle, WA 98101, USA;2. Immersive Science LLC, Newcastle, WA 98056, USA
Abstract:
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.
Keywords:VR  virtual reality  NIfTI  Neuroimaging Informatics Technology Initiative  RGB  Red Green Blue  UI  user interface  UX  user experience  2D  two-dimensional  3D  three-dimensional  cellular visualization  confocal microscopy  ImageJ  virtual collaboration  virtual reality
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