DocumentCode
720240
Title
From molecular dynamics in virtual reality environments to fundamental questions about human-computer interaction
Author
Kouyoumdjian, Alexandre ; Ferey, Nicolas ; Bourdot, Patrick
Author_Institution
VENISE, Univ. Paris Sud, France
fYear
2015
fDate
24-24 March 2015
Firstpage
39
Lastpage
40
Abstract
By nature, the molecular systems that are of interest to structural biologists exhibit high spatial and temporal complexity, in part due to the sheer density of objects and their constant motion. Virtual reality is a very useful tool to manage this complexity and enable interactive simulations that would otherwise be impractical. However, current solutions provide no adequate way to select very small objects whose movements are fast and unpredictable, and theoretical tools such as Fitts´ law are of no help with unpredictable motion. To guide the design of appropriate selection techniques, notably with haptic assistance, we studied how subjects performed when attempting to select such objects in a simpler, 2D environment. We propose a new theoretical framework to model selection performance as a function of the predictability of the moving targets.
Keywords
biology computing; feature selection; haptic interfaces; human computer interaction; virtual reality; MD simulation; haptic assistance; human-computer interaction; interactive simulation; model selection; molecular dynamics; structural biology; virtual reality environment; Biological system modeling; Haptic interfaces; Heating; Predictive models; Solid modeling; Virtual reality;
fLanguage
English
Publisher
ieee
Conference_Titel
Virtual and Augmented Reality for Molecular Science (VARMS@IEEEVR), 2015 IEEE 1st International Workshop on
Conference_Location
Arles
Type
conf
DOI
10.1109/VARMS.2015.7151722
Filename
7151722
Link To Document