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The application of modern radio-frequency excitation theory in nonhomogeneous fi eld magnetic resonance imaging

Zhang Bi-Da Song Xiao-Yu Zu Dong-Lin Lü Hong-Yu Bao Shang-Lian Wang Wei-Dong

The application of modern radio-frequency excitation theory in nonhomogeneous fi eld magnetic resonance imaging

Zhang Bi-Da, Song Xiao-Yu, Zu Dong-Lin, Lü Hong-Yu, Bao Shang-Lian, Wang Wei-Dong
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  • Abstract views:  3731
  • PDF Downloads:  1103
  • Cited By: 0
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  • Received Date:  19 July 2002
  • Accepted Date:  27 August 2002
  • Published Online:  20 May 2003

The application of modern radio-frequency excitation theory in nonhomogeneous fi eld magnetic resonance imaging

  • 1. (1)北京大学重离子物理研究所,北京市医学物理和工程重点实验室,北京 100871; (2)北京大学重离子物理研究所,北京市医学物理和工程重点实验室,北京 100871;解放军总医院,北京 100853

Abstract: In the problem of nonhomogeneous field magnetic resonance imaging (MRI),echo peaks decay quickly due to traditional design of radio frequency (RF) pulse.In this article,using inverse scattering transform (IST) of the nonlinear dynamics and Shinnar-Le Roux selective excitation pulse design algorithm (SLR Algorithm),we have designed the RF pulse for the nonhomogeneous field MRI.Simulation has been made to test the signal loss induced by the excitation of different types of RF pulses.Simulation results show that the RF pulse sequence optimized by IST and SLR algorithm can improve the signal to noise ratio of MRI considerably

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