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An adaptive multi-frame parallel iterative method for accelerating real-time magnetic particle imaging reconstruction

. Real-time reconstruction of magnetic particle imaging (MPI) shows promising clinical applications. However, prevalent reconstruction methods are mainly based on serial iteration, which causes large delay in real-time reconstruction. In order to achieve lower latency in real-time MPI reconstruction...

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Published in:Physics in medicine & biology 2023-12, Vol.68 (24), p.245016
Main Authors: Shen, Yusong, Zhang, Liwen, Shang, Yaxin, Jia, Guang, Yin, Lin, Zhang, Hui, Tian, Jie, Yang, Guanyu, Hui, Hui
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cited_by cdi_FETCH-LOGICAL-c369t-f4e1723068ece5d92aef7f0302830525b65c2f3926f1f22157304c533ceb31f73
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container_end_page
container_issue 24
container_start_page 245016
container_title Physics in medicine & biology
container_volume 68
creator Shen, Yusong
Zhang, Liwen
Shang, Yaxin
Jia, Guang
Yin, Lin
Zhang, Hui
Tian, Jie
Yang, Guanyu
Hui, Hui
description . Real-time reconstruction of magnetic particle imaging (MPI) shows promising clinical applications. However, prevalent reconstruction methods are mainly based on serial iteration, which causes large delay in real-time reconstruction. In order to achieve lower latency in real-time MPI reconstruction, we propose a parallel method for accelerating the speed of reconstruction methods. . The proposed method, named adaptive multi-frame parallel iterative method (AMPIM), enables the processing of multi-frame signals to multi-frame MPI images in parallel. To facilitate parallel computing, we further propose an acceleration strategy for parallel computation to improve the computational efficiency of our AMPIM. . OpenMPIData was used to evaluate our AMPIM, and the results show that our AMPIM improves the reconstruction frame rate per second of real-time MPI reconstruction by two orders of magnitude compared to prevalent iterative algorithms including the Kaczmarz algorithm, the conjugate gradient normal residual algorithm, and the alternating direction method of multipliers algorithm. The reconstructed image using AMPIM has high contrast-to-noise with reducing artifacts. . The AMPIM can parallelly optimize least squares problems with multiple right-hand sides by exploiting the dimension of the right-hand side. AMPIM has great potential for application in real-time MPI imaging with high imaging frame rate.
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subjects magnetic particle imaging
parallel computation
parallel iterative method
real-time reconstruction
title An adaptive multi-frame parallel iterative method for accelerating real-time magnetic particle imaging reconstruction
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