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    • 75. 发明申请
    • Antenna Apparatus for Receiving Magnetic Resonance Signals
    • 用于接收磁共振信号的天线装置
    • US20150048823A1
    • 2015-02-19
    • US14340990
    • 2014-07-25
    • Andreas FackelmeierSebastian MartiusMarkus Vester
    • Andreas FackelmeierSebastian MartiusMarkus Vester
    • G01R33/34
    • G01R33/34G01R33/341G01R33/3415G01R33/3642G01R33/3685
    • An antenna apparatus is described, for receiving magnetic resonance signals from an examination object during magnetic resonance imaging using a magnetic resonance device. The antenna apparatus includes a resonator with a plurality of electrically conductive conductor loops, which are each interrupted by a number of electrically insulating slits. The antenna apparatus further includes a carrier substrate for holding the conductor loops and a cable connection apparatus having a number of shielding apparatuses. At least one of the number of shielding apparatuses provides a conductive coupling to a virtual ground of at least one conductor loop. Moreover, an antenna array apparatus, a magnetic resonance system and a method for receiving magnetic resonance signals from an examination object during magnetic resonance imaging using a magnetic resonance device are described.
    • 描述了一种用于在使用磁共振装置的磁共振成像期间从检查对象接收磁共振信号的天线装置。 天线装置包括具有多个导电导体环的谐振器,每个导电导体环被多个电绝缘狭缝间断。 天线装置还包括用于保持导体环的载体基板和具有多个屏蔽装置的电缆连接装置。 多个屏蔽装置中的至少一个提供与至少一个导体环路的虚拟接地的导电耦合。 此外,描述了使用磁共振装置的磁共振成像期间的天线阵列装置,磁共振系统和从检查对象接收磁共振信号的方法。
    • 78. 发明授权
    • SAR calculation for multichannel MR transmission systems
    • 多通道MR传输系统的SAR计算
    • US08547097B2
    • 2013-10-01
    • US12823177
    • 2010-06-25
    • Matthias GebhardtMarkus Vester
    • Matthias GebhardtMarkus Vester
    • G01V3/00G01R33/48
    • G01R33/288G01R33/3415G01R33/5612
    • In a device and a method to determine SAR for a magnetic resonance tomography transmission system with multiple antenna elements, a single-column cross-correlation matrix of an antenna element matrix of antenna element values of multiple antenna elements of the magnetic resonance tomography transmission system is determined for each of multiple points in time or time periods. These single-column cross-correlation matrices are added into a sum cross-correlation matrix over a summation time period and the sum cross-correlation matrix is multiplied with a hotspot sensitivity matrix. The hotspot sensitivity matrix represents the sensitivities in at least one direction at a number of hotspot points in a subject located in the magnetic resonance tomography transmission system. The product of the sum cross-correlation matrix and the hotspot sensitivity matrix is multiplied with a value representing the dielectricity at least one hotspot point in order to determine a respective SAR value for hotspot points. If at least one SAR value exceeds a predetermined upper limit, the voltage applied to at least one antenna element or the current flowing in at least one antenna element is reduced or deactivated.
    • 在用于确定具有多个天线元件的磁共振断层摄影传输系统的SAR的装置和方法中,磁共振断层摄影传输系统的多个天线元件的天线元素值的天线元素矩阵的单列互相关矩阵是 确定在时间或时间段的多个点的每个。 这些单列互相关矩阵通过求和时间周期加到和互相关矩阵中,并且和互相关矩阵乘以热点灵敏度矩阵。 热点灵敏度矩阵表示在位于磁共振断层摄影传输系统中的被摄体的多个热点处的至少一个方向上的灵敏度。 将和互相关矩阵和热点灵敏度矩阵的乘积乘以表示至少一个热点的电介质的值,以便确定热点的相应SAR值。 如果至少一个SAR值超过预定的上限,则施加到至少一个天线元件的电压或者在至少一个天线元件中流动的电流被减少或去激活。