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    • 1. 发明申请
    • METHOD OF CHARACTERIZING
    • 表征方法
    • US20130241553A1
    • 2013-09-19
    • US13882293
    • 2011-10-26
    • Johan Van Den BrinkIngmar GraesslinSascha KruegerSteffen WeissPeter Vernickel
    • Johan Van Den BrinkIngmar GraesslinSascha KruegerSteffen WeissPeter Vernickel
    • G01R33/36G01R33/44
    • G01R33/36G01R33/246G01R33/44G01R33/5612G01R33/583
    • 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.
    • 本发明涉及一种使用本地发射/接收线圈系统(204; 210)来表征磁共振成像扫描仪(1)的RF发射链的方法,该系统包括第一局部NMR探针和第一局部磁共振线圈, 空间上位于第一线圈周围的第一NMR探针,包括第二局部NMR探针和第二局部磁共振线圈的局部接收线圈系统(206; 208),所述第二NMR探针在空间上位于紧邻附近 所述第二线圈,其中所述发射链包括外部MR线圈(9; 11; 12; 13),所述方法包括:利用所述第一磁共振线圈确定由MR产生的所述本地RF发射场的第一MR信号相位演变 通过在所述激发时测量第一探针的RF响应,使用第一磁共振线圈激发第一探针,用第二磁共振线圈确定第二MR信号相位ev 使用外部MR线圈(9; 9)对第二探针的MR激发产生的局部RF发射场的清零。 11; 12; 13)通过在所述激励时测量第二探针的RF响应,计算第一和第二MR信号相位演变之间的相位偏移。
    • 2. 发明授权
    • Method of characterizing
    • 表征方法
    • US09575146B2
    • 2017-02-21
    • US13882293
    • 2011-10-26
    • Johan Van Den BrinkIngmar GraesslinSascha KruegerSteffen WeissPeter Vernickel
    • Johan Van Den BrinkIngmar GraesslinSascha KruegerSteffen WeissPeter Vernickel
    • G01R33/36G01R33/24G01R33/44G01R33/561G01R33/58
    • G01R33/36G01R33/246G01R33/44G01R33/5612G01R33/583
    • 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.
    • 本发明涉及一种使用本地发射/接收线圈系统(204; 210)来表征磁共振成像扫描仪(1)的RF发射链的方法,该系统包括第一局部NMR探针和第一局部磁共振线圈, 空间上位于第一线圈周围的第一NMR探针,包括第二局部NMR探针和第二局部磁共振线圈的局部接收线圈系统(206; 208),所述第二NMR探针在空间上位于紧邻附近 所述第二线圈,其中所述发射链包括外部MR线圈(9; 11; 12; 13),所述方法包括:利用所述第一磁共振线圈确定由MR产生的所述本地RF发射场的第一MR信号相位演变 通过在所述激发时测量第一探针的RF响应,使用第一磁共振线圈激发第一探针,用第二磁共振线圈确定第二MR信号相位ev 使用外部MR线圈(9; 9)对第二探针的MR激发产生的局部RF发射场的清零。 11; 12; 13)通过在所述激励时测量第二探针的RF响应,计算第一和第二MR信号相位演变之间的相位偏移。
    • 4. 发明申请
    • MAGNETIC RESONANCE SYSTEM AND METHOD FOR COMPREHENSIVE IMPLANTABLE DEVICE SAFETY TESTS AND PATIENT SAFETY MONITORING
    • 磁共振系统及全面可植入装置安全测试方法及患者安全监察
    • US20120086449A1
    • 2012-04-12
    • US13260918
    • 2010-03-31
    • Ingmar GraesslinSascha Krueger
    • Ingmar GraesslinSascha Krueger
    • G01R33/44G01R33/32
    • G01R33/285G01R33/288
    • A magnetic resonance method comprises: performing (C1) a magnetic resonance procedure on a calibration subject including an implant device; detecting (C2) a pick-up coil (PUC) signal at least during a radio frequency transmit phase of operation (C1); performing (C3) three dimensional temperature mapping of the calibration subject using a magnetic resonance sequence configured to detect any temperature change induced in any part of the implant device by operation (C1); generating (C4) an unsafe condition criterion (30) for the detected PUC signal based on correlating a PUC signal characteristic detected by operation (C2) with a temperature change detected by operation (C3); performing (M5) the magnetic resonance procedure on a subject containing an implant device; detecting (M6) a PUC signal at least during a radio frequency transmit phase of operation (M5); and monitoring (M7) for an unsafe condition indicated by the PUC signal detected in operation (M6) satisfying the unsafe condition criterion (30).
    • 磁共振方法包括:对包括植入装置的校准对象执行(C1)磁共振程序; 至少在射频发射阶段(C1)期间检测(C2)拾波线圈(PUC)信号; 使用构造成通过操作(C1)检测在植入装置的任何部分中诱导的任何温度变化的磁共振序列来执行(C3)校准对象的三维温度映射; 基于通过操作(C2)检测到的PUC信号特性与由操作(C3)检测到的温度变化相关联,生成(C4)用于检测到的PUC信号的不安全条件标准(30)。 对包含植入装置的受试者执行(M5)磁共振程序; 至少在射频发射阶段(M5)期间检测(M6)PUC信号; 以及对满足不安全条件标准(30)的在操作中检测到​​的PUC信号(M6)指示的不安全状态进行监视(M7)。
    • 7. 发明申请
    • Active Decoupling of Transmitters in Mri
    • 发射机在Mri中的主动去耦
    • US20080258728A1
    • 2008-10-23
    • US12091308
    • 2006-10-03
    • Peter VernickelIngmar Graesslin
    • Peter VernickelIngmar Graesslin
    • G01R33/36
    • G01R33/365
    • A magnetic resonance imaging system includes a coupling compensation processor (70) for compensating induced magnetic coupling between n individual coil segments (38) of a coil arrangement (36). An adjusted signal determining device (74) determines an adjusted input signal for each of the n individual coil segments of the coil arrangement (36). A transmitting system (54) creates RF pulses in accordance with the determined adjusted input signals and transmits the RF pulses to corresponding coil segments such that the transmitted RF pulses compensate for coupling between the coil segments (38) in the digital domain.
    • 磁共振成像系统包括用于补偿线圈装置(36)的n个单独线圈段(38)之间的感应磁耦合的耦合补偿处理器(70)。 调整信号确定装置(74)确定线圈装置(36)的n个单独线圈段中的每一个的经调整的输入信号。 发射系统(54)根据确定的调整的输入信号产生RF脉冲,并将RF脉冲发送到相应的线圈段,使得发送的RF脉冲补偿数字域中的线圈段(38)之间的耦合。
    • 8. 发明授权
    • Active decoupling of transmitters in MRI
    • MRI中发射机的主动去耦
    • US07642782B2
    • 2010-01-05
    • US12091308
    • 2006-10-03
    • Peter VernickelIngmar Graesslin
    • Peter VernickelIngmar Graesslin
    • G01V3/00
    • G01R33/365
    • A magnetic resonance imaging system includes a coupling compensation processor (70) for compensating induced magnetic coupling between n individual coil segments (38) of a coil arrangement (36). An adjusted signal determining device (74) determines an adjusted input signal for each of the n individual coil segments of the coil arrangement (36). A transmitting system (54) creates RF pulses in accordance with the determined adjusted input signals and transmits the RF pulses to corresponding coil segments such that the transmitted RF pulses compensate for coupling between the coil segments (38) in the digital domain.
    • 磁共振成像系统包括用于补偿线圈装置(36)的n个单独线圈段(38)之间的感应磁耦合的耦合补偿处理器(70)。 调整信号确定装置(74)确定线圈装置(36)的n个单独线圈段中的每一个的经调整的输入信号。 发射系统(54)根据确定的调整的输入信号产生RF脉冲,并将RF脉冲发送到相应的线圈段,使得发送的RF脉冲补偿数字域中的线圈段(38)之间的耦合。