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Interactive Molecular Graphics for Augmented Reality Using HoloLens

机译:使用HoloLens增强现实的交互式分子图形

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摘要

Immersive 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.
机译:诸如立体渲染,虚拟现实或增强现实(AR)等沉浸式技术通常用于分子可视化领域。像Microsoft的HoloLens这样的现代,轻巧且价格适中的AR头戴式耳机为分子可视化中的沉浸式分析开辟了新的可能性。全面分析AR中分子数据的关键因素是绘制速度。但是,由于诸如电池寿命,无风扇冷却和重量之类的要求,HoloLens的硬件功能有限。因此,对于强大的台式机硬件,最佳实践的见解可能无法转移。因此,我们针对分子可视化中常用的空间填充模型评估了HoloLens硬件对于现代,支持GPU的高质量渲染方法的功能。我们还评估了大分子数据集的可伸缩性。基于结果,我们讨论了沉浸式分子分析的想法和可能性。除了更明显的好处(如设备提供的立体渲染)外,这还特别包括使用物理导航而不是传统虚拟导航的自然用户界面。此外,我们考虑这种沉浸式系统的不同方案,从教育用途到协作方案。

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