Title :
Calibration, Registration, and Synchronization for High Precision Augmented Reality Haptics
Author :
Harders, Matthias ; Bianchi, Gérald ; Knoerlein, Benjamin ; Székely, Gábor
Author_Institution :
Comput. Vision Lab., ETH Zurich, Zurich
Abstract :
In our current research we examine the application of visuo-haptic augmented reality setups in medical training. To this end, highly accurate calibration, system stability, and low latency are indispensable prerequisites. These are necessary to maintain user immersion and avoid breaks in presence which potentially diminish the training outcome. In this paper we describe the developed calibration methods for visuo-haptic integration, the hybrid tracking technique for stable alignment of the augmentation, and the distributed framework ensuring low latency and component synchronization. Finally, we outline an early prototype system based on the multimodal augmented reality framework. The latter allows colocated visuo-haptic interaction with real and virtual scene components in a simplified open surgery setting.
Keywords :
augmented reality; biomedical education; calibration; computer based training; medical computing; surgery; synchronisation; tracking; calibration methods; component synchronization; hybrid tracking technique; medical training; open surgery; user immersion; visuo-haptic augmented reality; Associate members; Augmented reality; Calibration; Delay; Haptic interfaces; Layout; Prototypes; Stability; Student members; Surgery; Augmented Reality; Haptics; Algorithms; Calibration; Computer Graphics; Computer Peripherals; Information Storage and Retrieval; Switzerland; Touch; User-Computer Interface;
Journal_Title :
Visualization and Computer Graphics, IEEE Transactions on
DOI :
10.1109/TVCG.2008.63