DocumentCode :
65322
Title :
ConformalALU: A Conformal Geometric Algebra Coprocessor for Medical Image Processing
Author :
Franchini, Silvia ; Gentile, Antonio ; Sorbello, Filippo ; Vassallo, Giorgio ; Vitabile, Salvatore
Author_Institution :
DICGIM Dept., Univ. of Palermo, Palermo, Italy
Volume :
64
Issue :
4
fYear :
2015
fDate :
April 1 2015
Firstpage :
955
Lastpage :
970
Abstract :
Medical imaging involves important computational geometric problems, such as image segmentation and analysis, shape approximation, three-dimensional (3D) modeling, and registration of volumetric data. In the last few years, Conformal Geometric Algebra (CGA), based on five-dimensional (5D) Clifford Algebra, is emerging as a new paradigm that offers simple and universal operators for the representation and solution of complex geometric problems. However, the widespread use of CGA has been so far hindered by its high dimensionality and computational complexity. This paper proposes a simplified formulation of the conformal geometric operations (reflections, rotations, translations, and uniform scaling) aimed at a parallel hardware implementation. A specialized coprocessing architecture (ConformalALU) that offers direct hardware support to the new CGA operators, is also presented. The ConformalALU has been prototyped as a complete System-on-Programmable-Chip (SoPC) on the Xilinx ML507 FPGA board, containing a Virtex-5 FPGA device. Experimental results show average speedups of one order of magnitude for CGA rotations, translations, and dilations with respect to the geometric algebra software library Gaigen running on the general-purpose PowerPC processor embedded in the target FPGA device. A suite of medical imaging applications, including segmentation, 3D modeling and registration of medical data, has been used as testbench to evaluate the coprocessor effectiveness.
Keywords :
algebra; approximation theory; computational complexity; computational geometry; coprocessors; field programmable gate arrays; image registration; image segmentation; mathematical operators; medical image processing; software libraries; solid modelling; system-on-chip; 3D modeling; 5D Clifford algebra; CGA dilations; CGA operators; CGA rotations; CGA translations; ConformalALU; Gaigen; SoPC; Virtex-5 FPGA device; Xilinx ML507 FPGA board; computational complexity; computational geometric problems; conformal geometric algebra coprocessor; direct hardware support; general-purpose PowerPC processor; geometric algebra software library; high dimensionality; image analysis; image segmentation; medical data registration; medical image processing; medical imaging; shape approximation; specialized coprocessing architecture; system-on-programmable-chip; translations; uniform scaling; volumetric data registration; Computer architecture; Coprocessors; Field programmable gate arrays; Hardware; Three-dimensional displays; Vectors; 3D modeling; Conformal geometric algebra; FPGA-based prototyping; Growing Neural Gas; Volume registration; computational geometry; embedded coprocessors; five-dimensional clifford algebra; iterative closest point (ICP); marching spheres; medical imaging; segmentation; systems-on-programmable-chip; thin-plate spline robust point matching (TPS-RPM);
fLanguage :
English
Journal_Title :
Computers, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9340
Type :
jour
DOI :
10.1109/TC.2014.2315652
Filename :
6783758
Link To Document :
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