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Magnetic resonance imaging with combined back projection and fourier transformation method

  • US 5,557,203 A
  • Filed: 12/08/1994
  • Issued: 09/17/1996
  • Est. Priority Date: 12/16/1993
  • Status: Expired due to Term
First Claim
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1. A magnetic resonance method for imaging at object comprising the steps of:

  • a) locating the object in a homogeneous base magnetic field;

    b) applying a gradient magnetic field having a predetermined direction φ and

    strength Gφ

    for acquiring a single projection;

    c) irradiating a high frequency excitation pulse into the object;

    d) waiting a time tw ;

    e) measuring, at a predetermined sampling rate, j>

    >

    1 measuring points Sj which are sequential in time of a nuclear resonance signal from the object, the signal dephasing under the influence of the gradient magnetic field, the measuring points corresponding to i points in k-space lying along a vector extending from a k-space origin in a direction determined by the direction φ

    of the gradient magnetic field, whereby separation of each of the i points in k-space from the k-space origin is given by a product of the Strength of the gradient magnetic field and a time interval between the excitation pulse and the jth measuring point Sj ;

    f) changing the strength and the direction of the gradient magnetic field;

    g) carrying out the steps c) through f) an additional n- times for acquiring n projections with n>

    >

    1;

    h) assigning new points in k-space from the n*i points in k-space,i) constructing an image from the new points in k-space using one of a 2d and a 3d Fourier transformation algorithm.

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