A Comprehensive Survey of Isocontouring Methods: Applications, Limitations and Perspectives

Author:

Büscher Keno Jann1ORCID,Degel Jan Philipp2ORCID,Oellerich Jan1ORCID

Affiliation:

1. Institute for Material Handling and Logistics (IFL), Karlsruhe Institute of Technology (KIT), Kaiserstrasse 12, 76131 Karlsruhe, Germany

2. Department of Electrical Engineering, Medical Engineering and Computer Science (EMI), Offenburg University of Applied Sciences, Badstraße 24, 77652 Offenburg, Germany

Abstract

This paper provides a comprehensive overview of approaches to the determination of isocontours and isosurfaces from given data sets. Different algorithms are reported in the literature for this purpose, which originate from various application areas, such as computer graphics or medical imaging procedures. In all these applications, the challenge is to extract surfaces with a specific isovalue from a given characteristic, so called isosurfaces. These different application areas have given rise to solution approaches that all solve the problem of isocontouring in their own way. Based on the literature, the following four dominant methods can be identified: the marching cubes algorithms, the tessellation-based algorithms, the surface nets algorithms and the ray tracing algorithms. With regard to their application, it can be seen that the methods are mainly used in the fields of medical imaging, computer graphics and the visualization of simulation results. In our work, we provide a broad and compact overview of the common methods that are currently used in terms of isocontouring with respect to certain criteria and their individual limitations. In this context, we discuss the individual methods and identify possible future research directions in the field of isocontouring.

Publisher

MDPI AG

Reference84 articles.

1. A Near Optimal Isosurface Extraction Algorithm Using the Span Space;Livnat;IEEE Trans. Vis. Comput. Graph.,1996

2. Marching Cubes: A High Resolution 3D Surface Construction Algorithm;Lorensen;SIGGRAPH Comput. Graph.,1987

3. Real-Time Isocontouring and Texture Mapping Meet New Challenges in Interactive Molecular Graphics Applications;Henn;J. Struct. Biol.,1996

4. Shirley, P., and Tuchman, A. (1990, January 10–11). A Polygonal Approximation to Direct Scalar Volume Rendering. Proceedings of the 1990 Workshop on Volume Visualization, VVS ’90, San Diego, CA, USA.

5. Nielson, G., and Hamann, B. (1991, January 22–25). The Asymptotic Decider: Resolving the Ambiguity in Marching Cubes. Proceedings of the Visualization ’91, San Diego, CA, USA.

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