We propose a new type of adiabatic pulses for uniform inversion of the magnetization in magnetic resonance imaging. We produced these pulses with an evolution strategy optimization, by which the search of the "best solution" has been made more efficient than by deterministic algorithms. The pulse pa
Evolution Strategy Optimization for Selective Pulses in NMR
β Scribed by E. Lunati; P. Cofrancesco; M. Villa; P. Marzola; F. Osculati
- Publisher
- Elsevier Science
- Year
- 1998
- Tongue
- English
- Weight
- 235 KB
- Volume
- 134
- Category
- Article
- ISSN
- 1090-7807
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β¦ Synopsis
We present a first set of improved selective pulses, obtained with a numerical technique similar to the one proposed by Geen and Freeman. The novelty is essentially a robust and efficient "evolution strategy" which consistently leads, in a matter of minutes, to "solutions" better than those published so far. The other two ingredients are a "cost function," which includes contributions from peak and average radiofrequency power, and some understanding of the peculiar requirements of each type of pulse. For example, good solutions for self-refocusing pulses and "negative phase excitation pulses" (which yield a maximum signal well after the end of the pulse) are found, as may have been predicted, among amplitude modulated pulses with 270Β°tip angles. Emphasis is given to the search for solutions with low RF power for selective excitation, saturation, and inversion pulses. Experimental verification of accuracy and power requirements of the pulses has been performed with a 4.7 T Sisco imager.
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This paper discusses the implementation and optimization bined to improve the performance of selective pulses in solidof selective-inversion pulses for deuteron powder patterns. state deuteron NMR. Efficient off-resonance selective inversion of While the theory appears analogous to liquid-state sele