Fast implementation of area integral model SART algorithm based on look-up table

被引:0
|
作者
Shunli Zhang
Guohua Geng
Zhan Li
Yuhe Zhang
机构
[1] Northwest University,School of Information Science and Technology
来源
Cluster Computing | 2019年 / 22卷
关键词
Computed tomography; Image reconstruction; Simultaneous algebraic reconstruction technique (SART); Look-up table (LUT); Multi-core;
D O I
暂无
中图分类号
学科分类号
摘要
Forward projection and back-projection are two computationally intense operations in simultaneous algebraic reconstruction technique (SART), especially for area integral model (AIM). We have proposed a fast forward projection algorithm for AIM-based algebraic reconstruction technique, which can be used to accelerate the forward projection operation of area integral model SART. However, the back-projection operation is extremely time-consuming due to its complexity. In this paper, we propose a fast approach to improve the reconstruction speed of AIM-based SART algorithm. To avoid repeated computation of the intersection between rays and pixels, we construct three look up tables (LUTs) to store the number of rays that intersecting with a given pixel, and the corresponding ray indices and weighting factors, respectively, which can be done during the forward projection operation. In the back-projection operation, we update pixels value using these LUTs. On this basis, we utilize the multi-threading technique to implement the forward projection and back-projection operations on a multi-core platform. Experimental results show that the proposed LUT-based approach with multi-core acceleration achieves a speedup of 36.5 times over the conventional approach, and preserves accuracy of the results.
引用
收藏
页码:15195 / 15203
页数:8
相关论文
共 50 条
  • [1] Fast implementation of area integral model SART algorithm based on look-up table
    Zhang, Shunli
    Geng, Guohua
    Li, Zhan
    Zhang, Yuhe
    [J]. CLUSTER COMPUTING-THE JOURNAL OF NETWORKS SOFTWARE TOOLS AND APPLICATIONS, 2019, 22 (Suppl 6): : 15195 - 15203
  • [2] Fast image matching algorithm based on character sequence, look-up table
    Yue-Ping, Han
    Yan, Han
    [J]. ISTM/2007: 7TH INTERNATIONAL SYMPOSIUM ON TEST AND MEASUREMENT, VOLS 1-7, CONFERENCE PROCEEDINGS, 2007, : 1664 - 1666
  • [3] Simple and fast calculation algorithm for computer-generated hologram based on integral imaging using look-up table
    Wang, Zi
    Lv, Guoqiang
    Feng, Qinbin
    Wang, Anting
    Ming, Hai
    [J]. OPTICS EXPRESS, 2018, 26 (10): : 13322 - 13330
  • [4] A Look-up Table based Binary GCD for Fast Modular Inversion
    Ishida, Tsutomu
    Nagase, Tomoyuki
    Yoshioka, Yoshio
    [J]. INFORMATION-AN INTERNATIONAL INTERDISCIPLINARY JOURNAL, 2011, 14 (08): : 2901 - 2910
  • [5] Iterative pruning algorithm for efficient look-up table implementation of binary neural networks
    Ebrahimi, Amirali
    Pullu, Vineeth Narayan
    Langlois, J. M. Pierre
    David, Jean-Pierre
    [J]. 2023 21ST IEEE INTERREGIONAL NEWCAS CONFERENCE, NEWCAS, 2023,
  • [6] Elliptic curves cryptosystem implementation based on a look-up table sharing scheme
    Liu, Sining
    Bowen, Francis
    King, Brian
    Wang, Wei
    [J]. 2006 IEEE INTERNATIONAL SYMPOSIUM ON CIRCUITS AND SYSTEMS, VOLS 1-11, PROCEEDINGS, 2006, : 2921 - +
  • [7] TABLE LOOK-UP RULE
    HARALICK, RM
    [J]. COMMUNICATIONS IN STATISTICS PART A-THEORY AND METHODS, 1976, 5 (12): : 1163 - 1191
  • [8] A fast chaotic cryptographic scheme with dynamic look-up table
    Wong, KW
    [J]. PHYSICS LETTERS A, 2002, 298 (04) : 238 - 242
  • [9] Verilog-A Based Implementation for Coupled Model of Single Event Transients in Look-Up Table Technique
    Zhao Xueqian
    Zhao Zhenyu
    Zhang Minxuan
    Li Shaoqing
    [J]. 2009 IEEE 8TH INTERNATIONAL CONFERENCE ON ASIC, VOLS 1 AND 2, PROCEEDINGS, 2009, : 666 - 669
  • [10] Look-up Table Construction Based on 6S Model
    Rui Zhang
    Ting Jiang
    Hui Gong
    Yaoyao Yu
    [J]. MIPPR 2011: MULTISPECTRAL IMAGE ACQUISITION, PROCESSING, AND ANALYSIS, 2011, 8002