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Meeting ReportCardiovascular Sciences

The application of compressed sensing reconstruction for myocardial perfusion image shortens the acquisition time: a simulation study

Mitsuha Fukami, Norikazu Matsutomo, Hashimoto Takeyuki, Tomoaki Yamamoto and Masayuki Sasaki
Journal of Nuclear Medicine August 2022, 63 (supplement 2) 4097;
Mitsuha Fukami
1Department of Medical Radiological Technology Faculty of Health Sciences, Kyorin
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Norikazu Matsutomo
1Department of Medical Radiological Technology Faculty of Health Sciences, Kyorin
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Hashimoto Takeyuki
1Department of Medical Radiological Technology Faculty of Health Sciences, Kyorin
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Tomoaki Yamamoto
1Department of Medical Radiological Technology Faculty of Health Sciences, Kyorin
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Masayuki Sasaki
1Department of Medical Radiological Technology Faculty of Health Sciences, Kyorin
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Article Information

vol. 63 no. supplement 2 4097

Published By 
Society of Nuclear Medicine
Print ISSN 
0161-5505
Online ISSN 
2159-662X
History 
  • Published online August 22, 2022.

Copyright & Usage 
© 2022

Author Information

  1. Mitsuha Fukami,
  2. Norikazu Matsutomo,
  3. Hashimoto Takeyuki,
  4. Tomoaki Yamamoto and
  5. Masayuki Sasaki
  1. 1Department of Medical Radiological Technology Faculty of Health Sciences, Kyorin

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Journal of Nuclear Medicine
Vol. 63, Issue supplement 2
August 1, 2022
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The application of compressed sensing reconstruction for myocardial perfusion image shortens the acquisition time: a simulation study
Mitsuha Fukami, Norikazu Matsutomo, Hashimoto Takeyuki, Tomoaki Yamamoto, Masayuki Sasaki
Journal of Nuclear Medicine Aug 2022, 63 (supplement 2) 4097;

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The application of compressed sensing reconstruction for myocardial perfusion image shortens the acquisition time: a simulation study
Mitsuha Fukami, Norikazu Matsutomo, Hashimoto Takeyuki, Tomoaki Yamamoto, Masayuki Sasaki
Journal of Nuclear Medicine Aug 2022, 63 (supplement 2) 4097;
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The application of compressed sensing reconstruction for myocardial perfusion image shortens the acquisition time: a simulation study

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  • Synthesis and Clinical Release Characterization of 99mTc-Labeled Peptide p5+14 – A Novel Radiotracer for SPECT/CT Imaging of Cardio-Pulmonary Amyloidosis
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