Hybrid Parallel Extraction of Isosurface Components from 3D Rectilinear Volume Data

Citations

WEB OF SCIENCE

1
Citations

SCOPUS

1

초록

We describe an efficient algorithm that extracts a connected component of an isosurface, or a contour, from a 3D rectilinear volume data. The efficiency of the algorithm is achieved by three factors: (i) directly working with rectilinear grids, (ii) parallel utilization of a multi-core CPU for extracting active cells, the cells containing the contour, and (iii) parallel utilization of a many-core CPU for computing the geometries of a contour surface in each active cell using CUDA. Experimental results show that our hybrid parallel implementation achieved up to 20x speedup over existing methods on an ordinary PC. Our work coupled with the Contour Tree framework is useful for quickly segmenting, displaying, and analyzing a feature of interest in 3D rectilinear volume data without being distracted by other features.

키워드

isosurface; contour tree; contour propagation; multi-core
제목
Hybrid Parallel Extraction of Isosurface Components from 3D Rectilinear Volume Data
저자
Sohn, Bong-Soo
DOI
10.1587/transinf.E94.D.2553
발행일
2011-12
유형
Article
저널명
IEICE TRANSACTIONS ON INFORMATION AND SYSTEMS
권
E94D
호
12
페이지
2553 ~ 2556