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Human-PnP: Ergonomic AR Interaction Paradigm for Manual Placement of Rigid Bodies

机译:Human-PnP:手动放置刚体的人体工程学AR交互范例

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摘要

The human perception of the three-dimensional world is influenced by the mutual integration of physiological and psychological depth cues, whose complexity is still an unresolved issue per se. Even more so if we wish to mimic the perceptive efficiency of the human visual system within augmented reality (AR) based surgical navigation systems. In this work we present a novel and ergonomic AR interaction paradigm that aids the manual placement of a non-tracked rigid body in space by manually minimizing the reprojection residuals between a set of corresponding virtual and real feature points. Our paradigm draws its inspiration from the general problem of estimating camera pose from a set of n-correspondences, i.e. perspective-n-point problem. In a recent work, positive results were achieved in terms of geometric error by applying the proposed strategy on the validation of a wearable AR system to aid manual maxillary repositioning.
机译:人类对三维世界的感知受到生理和心理深度线索相互融合的影响,其复杂性本身仍然是一个未解决的问题。如果我们希望在基于增强现实(AR)的手术导航系统中模拟人类视觉系统的感知效率,那就更是如此。在这项工作中,我们提出了一种新颖的,符合人体工程学的AR交互范例,通过手动最小化一组对应的虚拟和真实特征点之间的重投影残差来帮助在空间中手动放置未跟踪的刚体。我们的范式从一组n对应关系估计相机姿势的一般问题(即视角-n点问题)中汲取了灵感。在最近的工作中,通过将所提出的策略应用于可穿戴AR系统的验证以帮助手动上颌骨重新定位,在几何误差方面取得了积极的成果。

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