Invention Grant
- Patent Title: Method of characterizing
- Patent Title (中): 表征方法
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Application No.: US13882293Application Date: 2011-10-26
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Publication No.: US09575146B2Publication Date: 2017-02-21
- Inventor: Johan Van Den Brink , Ingmar Graesslin , Sascha Krueger , Steffen Weiss , Peter Vernickel
- Applicant: Johan Van Den Brink , Ingmar Graesslin , Sascha Krueger , Steffen Weiss , Peter Vernickel
- Applicant Address: NL Eindhoven
- Assignee: KONINKLIJKE PHILIPS ELECTRONICS N.V.
- Current Assignee: KONINKLIJKE PHILIPS ELECTRONICS N.V.
- Current Assignee Address: NL Eindhoven
- Priority: EP10189623 20101102
- International Application: PCT/IB2011/054771 WO 20111026
- International Announcement: WO2012/059845 WO 20120510
- Main IPC: G01R33/36
- IPC: G01R33/36 ; G01R33/24 ; G01R33/44 ; G01R33/561 ; G01R33/58

Abstract:
The invention relates to a method of characterizing the RF transmit chain of a magnetic resonance imaging scanner (1) using a local transmit/receive coil system (204; 210), comprising a first local NMR probe and a first local magnetic resonance coil, the first NMR probe being spatially located in immediate neighborhood to the first coil, a local receive coil system (206; 208), comprising a second local NMR probe and a second local magnetic resonance coil, the second NMR probe being spatially located in immediate neighborhood to the second coil, wherein the transmit chain comprises an external MR coil (9; 11; 12; 13), the method comprising: determining with the first magnetic resonance coil, a first MR signal phase evolution of the local RF transmit field generated by MR excitation of the first probe using the first magnetic resonance coil by measuring the RF response of the first probe upon said excitation, determining with the second magnetic resonance coil a second MR signal phase evolution of the local RF transmit field generated by MR excitation of the second probe using the external MR coil (9; 11; 12; 13) by measuring the RF response of the second probe upon said excitation, calculating a phase offset between the first and second MR signal phase evolution.
Public/Granted literature
- US20130241553A1 METHOD OF CHARACTERIZING Public/Granted day:2013-09-19
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