Magnetic resonance apparatus

Electricity: measuring and testing – Particle precession resonance – Using a nuclear resonance spectrometer system

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36441313, G01R 3320

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active

049596101

ABSTRACT:
A magnetic resonance apparatus acquires a magnetic resonance signal matrix as follows. While a gradient field is applied to an object to be examined, a plurality of selective inversion pulses having different frequencies as high-frequency fields are sequentially applied to the object. Thereafter, a non-selective excitation pulse as a high-frequency field is applied to the object without application of a gradient field. In addition, a magnetic resonance signal generated upon application of the non-selective excitation pulse is acquired. Such a series of sequences are repeated a plurality of times, while the frequencies of the selective inversion pulses are sequentially selected to cause a magnetization vector of a nuclear spin of an area corresponding to either of "-1" and "1" an Hadamard matrix to be inverted by each selective inversion pulse. Chemical shift information is obtained by transforming a magnetic resonance signal matrix thus acquired in an aligning direction of the magnetic resonance signal matrix by an inverse Hadamard transform, and transforming the transformed matrix in a time base direction by an inverse Fourier transform.

REFERENCES:
patent: 4609872 (1986-09-01), O'Donnell
patent: 4689567 (1987-08-01), Maudsley
Journal of Magnetic Resonance 80, 162-167, (1988), Bolinger et al., Oct. 15, 1988.
Journal of Magnetic Resonance 66, 283-294; R. J. Ordidge et al., Feb. 1, 1986.
Journal of Magnetic Resonance 76, 155-161, S. Muller et al., Jan. 1988.

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