This paper presents a desktop virtual reality system featuring head-coupled movement parallax on three orthogonal screens. Virtual objects are displayed in front of the screens and are thus accessible to the user's hand. As the three-dimensional impression is based on movement parallax rather than stereo, very little headware is required. Although currently limited to visualization, the system allows the possibility to implement direct instrumental manipulation rather than manipulation through conventional pointing devices such as a mouse or a trackball. The benefits of a united display and manipulation space are discussed. A technical description of the set-up is given
International audienceThis paper presents a novel interaction system, aimed at hands-on manipulation...
Abstract. The object oriented Visualization Toolkit (VTK) is widely used for scientific visualizatio...
The paper describes the results of a research activity on the design of a positioning system which i...
This paper presents a desktop virtual reality system featuring head-coupled movement parallax on thr...
For hand-eye coordination and intuitive interaction with virtual-reality displays, the projected ima...
In this paper, we demonstrate a new interactive 3D desktop metaphor based on two-handed 3D direct ma...
Many virtual-reality displays augment the useris view of the real world but do not completely mask i...
We have developed a combined 2D/3D workstation for desktop Mixed Reality applications which consists...
The object oriented Visualization Toolkit (VTK) is widely used for scientific visualization. VTK is ...
We propose a system that displays a three-dimensional (3D) scene on a 3D display device, consisting ...
International audienceThe selection and manipulation of 3D content in desktop virtual environments i...
The object-oriented visualization Toolkit (VTK) is widely used for scientific visualization. VTK is ...
There are a number of 3D applications that have shown the benefits of using visualization techniques...
With the emerging technologies of Virtual and Augmented Reality (VR/AR) and the increasing performan...
In this paper we discuss the design and implementation of a desktop virtual reality system that offe...
International audienceThis paper presents a novel interaction system, aimed at hands-on manipulation...
Abstract. The object oriented Visualization Toolkit (VTK) is widely used for scientific visualizatio...
The paper describes the results of a research activity on the design of a positioning system which i...
This paper presents a desktop virtual reality system featuring head-coupled movement parallax on thr...
For hand-eye coordination and intuitive interaction with virtual-reality displays, the projected ima...
In this paper, we demonstrate a new interactive 3D desktop metaphor based on two-handed 3D direct ma...
Many virtual-reality displays augment the useris view of the real world but do not completely mask i...
We have developed a combined 2D/3D workstation for desktop Mixed Reality applications which consists...
The object oriented Visualization Toolkit (VTK) is widely used for scientific visualization. VTK is ...
We propose a system that displays a three-dimensional (3D) scene on a 3D display device, consisting ...
International audienceThe selection and manipulation of 3D content in desktop virtual environments i...
The object-oriented visualization Toolkit (VTK) is widely used for scientific visualization. VTK is ...
There are a number of 3D applications that have shown the benefits of using visualization techniques...
With the emerging technologies of Virtual and Augmented Reality (VR/AR) and the increasing performan...
In this paper we discuss the design and implementation of a desktop virtual reality system that offe...
International audienceThis paper presents a novel interaction system, aimed at hands-on manipulation...
Abstract. The object oriented Visualization Toolkit (VTK) is widely used for scientific visualizatio...
The paper describes the results of a research activity on the design of a positioning system which i...