Interactive Molecular Graphics for Augmented Reality Using HoloLens

Author:

Müller Christoph1,Krone Michael1,Huber Markus1,Biener Verena1,Herr Dominik23,Koch Steffen2,Reina Guido1,Weiskopf Daniel12,Ertl Thomas12

Affiliation:

1. Visualisation Research Centre (VISUS), University of Stuttgart, 70569 Stuttgart, Germany

2. Institute for Visualisation and Interactive Systems (VIS), University of Stuttgart, 70569 Stuttgart, Germany

3. Graduate School Advanced Manufacturing Engineering (GSaME), University of Stuttgart, 70569 Stuttgart, Germany

Abstract

AbstractImmersive technologies like stereo rendering, virtual reality, or augmented reality (AR) are often used in the field of molecular visualisation. Modern, comparably lightweight and affordable AR headsets like Microsoft’s HoloLens open up new possibilities for immersive analytics in molecular visualisation. A crucial factor for a comprehensive analysis of molecular data in AR is the rendering speed. HoloLens, however, has limited hardware capabilities due to requirements like battery life, fanless cooling and weight. Consequently, insights from best practises for powerful desktop hardware may not be transferable. Therefore, we evaluate the capabilities of the HoloLens hardware for modern, GPU-enabled, high-quality rendering methods for the space-filling model commonly used in molecular visualisation. We also assess the scalability for large molecular data sets. Based on the results, we discuss ideas and possibilities for immersive molecular analytics. Besides more obvious benefits like the stereoscopic rendering offered by the device, this specifically includes natural user interfaces that use physical navigation instead of the traditional virtual one. Furthermore, we consider different scenarios for such an immersive system, ranging from educational use to collaborative scenarios.

Publisher

Walter de Gruyter GmbH

Subject

General Medicine

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