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Active compensation for field distorting components in a magnetic resonance imaging system with a gantry

  • US 10,324,148 B2
  • Filed: 01/16/2014
  • Issued: 06/18/2019
  • Est. Priority Date: 02/06/2013
  • Status: Active Grant
First Claim
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1. A medical apparatus comprising:

  • a magnetic resonance imaging system for acquiring magnetic resonance data from an imaging zone, wherein the magnetic resonance imaging system comprises a magnet for generating a magnetic field within the imaging zone;

    magnetic compensation coils for compensating for magnetic inhomogeneities in the magnetic field within the imaging zone;

    a gantry operable for rotating about the imaging zone, wherein the gantry is configured to rotate about a rotational axis;

    a position sensor for measuring position data, the position data comprising an angular position of the gantry and an angular velocity of the gantry;

    at least one magnetic field distorting component, wherein the gantry is further operable to rotate the at least one magnetic field distorting component about the rotational axis;

    a memory for storing machine executable instructions and field correction data, wherein the field correction data is descriptive of the magnetic field within the imaging zone as a function of the angular position and the angular velocity;

    a processor for controlling the medical apparatus, wherein execution of the instructions cause the processor to;

    receive the position data from the position sensor;

    determine coil control commands for controlling the magnetic compensation coils using the field correction data and the position data;

    control the magnetic compensation coils to compensate for magnetic inhomogeneities within the imaging zone caused by the at least one magnetic field distorting component using the coil control commands; and

    acquire the magnetic resonance data using the magnetic resonance imaging system.

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