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公开(公告)号:US20200182952A1
公开(公告)日:2020-06-11
申请号:US16572254
申请日:2019-09-16
Inventor: Hyo-Bong HONG , Jae-Chan JEONG , Seung-Min CHOI , Jin-Sun KIM
IPC: G01R33/12 , G01R33/385
Abstract: Disclosed herein are a magnetic-field-generating coil system, an imaging system having the magnetic-field-generating coil system, and a method for operating the imaging system. The method for operating an imaging system includes generating multiple Linear Gradient Fields (LGFs) in respective axial directions by controlling coil currents, and acquiring MRI information or Magnetic Particle Imaging (MPI) information about an object while moving the multiple LGFs by varying the coil currents.
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公开(公告)号:US20210405134A1
公开(公告)日:2021-12-30
申请号:US17318753
申请日:2021-05-12
Inventor: Eul-Gyoon LIM , Jin-Sun KIM , Chang-Beom KIM , Jae-Chan JONG , Seung-Min CHOI , Hyo-Bong HONG
Abstract: Disclosed herein is a nano-magnetic-particle-imaging apparatus, including a measurement head including excitation and detection coils and accommodating a sample bed for a sample including nano magnetic particles; a gradient magnetic field generation unit for generating a magnetic field having a strength equal to or greater than that of the saturation magnetic field of the nano magnetic particles in a spacing area between identical magnetic poles facing each other and forming a field-free region in a portion thereof; a first driving unit for linearly moving the sample bed; a second driving unit for rotating the gradient magnetic field generation unit in a plane; a third driving unit for linearly reciprocating the gradient magnetic field generation unit; and a control unit for applying a signal to the excitation coil, controlling the driving units, and imaging 3D distribution of the nano magnetic particles based on a detection signal output from the detection coil.
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