Treffer: Improving perception of molecular surface visualizations by incorporating translucency effects

Title:
Improving perception of molecular surface visualizations by incorporating translucency effects
Contributors:
Universitat Politècnica de Catalunya. Departament de Ciències de la Computació, Universitat Politècnica de Catalunya. ViRVIG - Grup de Recerca en Visualització, Realitat Virtual i Interacció Gràfica
Publisher Information:
European Association for Computer Graphics (Eurographics)
Publication Year:
2018
Collection:
Universitat Politècnica de Catalunya, BarcelonaTech: UPCommons - Global access to UPC knowledge
Document Type:
Konferenz conference object
File Description:
11 p.; application/pdf
Language:
English
Relation:
https://diglib.eg.org/handle/10.2312/vcbm20181244; info:eu-repo/grantAgreement/MINECO//TIN2014-52211-C2-1-R/ES/GENERACION, SIMULACION Y VISUALIZACION DE MODELOS 3D A PARTIR DE GRANDES CONJUNTOS DE DATOS. APLICACIONES EN LA MEJORA DE LA CALIDAD DE VIDA DE LAS PERSONAS Y SU ENTORNO/; info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2013-2016/TIN2017-88515-C2-1-R/ES/VISUALIZACION, MODELADO, SIMULACION E INTERACCION CON MODELOS 3D. APLICACIONES EN CIENCIAS DE LA VIDA Y ENTORNOS RURALES Y URBANOS/; https://hdl.handle.net/2117/121592
DOI:
10.2312/vcbm.20181244
Rights:
Open Access
Accession Number:
edsbas.62657CCE
Database:
BASE

Weitere Informationen

Molecular surfaces are a commonly used representation in the analysis of molecular structures as they provide a compact description of the space occupied by a molecule and its accessibility. However, due to the high abstraction of the atomic data, fine grain features are hard to identify. Moreover, these representations involve a high degree of occlusions, which prevents the identification of internal features and potentially impacts shape perception. In this paper, we present a set of techniques which are inspired by the properties of translucent materials, that have been developed to improve the perception of molecular surfaces: First, we introduce an interactive algorithm to simulate subsurface scattering for molecular surfaces, in order to improve the thickness perception of the molecule. Second, we present a technique to visualize structures just beneath the surface, by still conveying relevant depth information. And lastly, we introduce reflections and refractions into our visualization that improve the shape perception of molecular surfaces. We evaluate the benefits of these methods through crowd-sourced user studies as well as the feedback from several domain experts. ; Peer Reviewed ; Postprint (author's final draft)