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    • 5. 发明申请
    • Magnetic resonance apparatus with an RF antenna unit and a gradient coil unit
    • 具有RF天线单元和梯度线圈单元的磁共振设备
    • US20060038566A1
    • 2006-02-23
    • US11208185
    • 2005-08-18
    • Ralph KimmlingenRazvan LazarJurgen NistlerWolfgang RenzMarkus Vester
    • Ralph KimmlingenRazvan LazarJurgen NistlerWolfgang RenzMarkus Vester
    • G01V3/00
    • G01R33/34046G01R33/385G01R33/422
    • A magnetic resonance apparatus has an RF antenna unit, a gradient coil unit and an RF shield, the conductor structures of which are independent of one another. The RF shield is arranged between the RF antenna unit and the gradient coil unit, a first RF field return volume is arranged between RF the antenna unit (1, 29, 55A, and the gradient coil unit, the RF field return volume closes RF magnetic field lines of the RF antenna unit and is bordered by the RF shield on the side of the gradient coil unit. The conductor structure of the gradient coil unit occupies a first region. A second conductor-free region is within the first region, on the side facing the RF antenna unit, between a primary gradient coil unit and a secondary shim gradient coil unit of the gradient coil unit. The second conductor-free region is at least partially surrounded by the conductor structure of the gradient coil unit and is fashioned as a second RF field return volume in connection with the first RF field return volume. The RF shield proceeds between the RF field return volumes and the conductor structure of the gradient coil unit. The RF antenna unit is closer to the data acquisition region of the magnetic resonance apparatus than the gradient coil unit.
    • 磁共振装置具有RF天线单元,梯度线圈单元和RF屏蔽,其导体结构彼此独立。 RF屏蔽设置在RF天线单元和梯度线圈单元之间,RF天线单元(1,29,55A和梯度线圈单元之间)之间布置第一RF场返回音量,RF场返回音量关闭RF RF天线单元的磁场线,并且由梯形线圈单元侧的RF屏蔽界定,梯度线圈单元的导体结构占据第一区域,第二无导体区域在第一区域内,在 面向RF天线单元的一侧,梯度线圈单元的主梯度线圈单元和次级斜面梯形线圈单元之间,第二无导体区域至少部分地被梯度线圈单元的导体结构包围,并被形成 作为与第一RF场返回体积相关的第二RF场返回体积,RF屏蔽在RF场返回体积和梯度线圈单元的导体结构之间进行,RF天线单元更靠近 e数据采集区域比梯形线圈单元。
    • 6. 发明授权
    • Local coil unit for a magnetic resonance apparatus
    • 用于磁共振设备的局部线圈单元
    • US07002347B2
    • 2006-02-21
    • US10953303
    • 2004-09-29
    • Thorsten FeiweierRazvan LazarWolfgang RenzLothar Schön
    • Thorsten FeiweierRazvan LazarWolfgang RenzLothar Schön
    • G01V3/00
    • G01R33/341
    • A local coil unit for a magnetic resonance apparatus, which radiates a radio-frequency field into an examination subject, has a housing and at least a part of the housing is formed of an insulating dielectric material that passively compensates for an inhomogeneity in the high-frequency field in the subject. The material has a relative dielectric value εr of greater than 50, preferably greater than 100, and a dielectric loss factor tan δ of less than 2.5×10−2, preferably less than 1×10−3. In the dielectric material displacement currents are generated which create an additional magnetic field that compensates for the minima in the B1 field as a result of the eddy currents arising in the patient due to the radio-frequency radiation.
    • 用于将射频场辐射到检查对象中的磁共振设备的局部线圈单元具有壳体,并且壳体的至少一部分由绝缘电介质材料形成,被动地补偿高频场中的不均匀性, 频率场。 该材料具有大于50,优选大于100的相对电介质值εL r以及低于2.5×10 -2的介电损耗因子tanδ,优​​选地较小 超过1×10 -3 -3。 在电介质材料中,产生位移电流,其产生额外的磁场,其由于射频辐射而在患者体内产生的涡流的结果来补偿B1场中的最小值。
    • 9. 发明授权
    • Magnetic resonance apparatus with an RF antenna unit and a gradient coil unit
    • 具有RF天线单元和梯度线圈单元的磁共振设备
    • US07230427B2
    • 2007-06-12
    • US11208185
    • 2005-08-18
    • Ralph KimmlingenRazvan LazarJürgen NistlerWolfgang RenzMarkus Vester
    • Ralph KimmlingenRazvan LazarJürgen NistlerWolfgang RenzMarkus Vester
    • G01V3/00
    • G01R33/34046G01R33/385G01R33/422
    • A magnetic resonance apparatus has an RF antenna unit, a gradient coil unit and an RF shield, the conductor structures of which are independent of one another. The RF shield is arranged between the RF antenna unit and the gradient coil unit, a first RF field return volume is arranged between RF the antenna unit (1, 29, 55A, and the gradient coil unit, the RF field return volume closes RF magnetic field lines of the RF antenna unit and is bordered by the RF shield on the side of the gradient coil unit. The conductor structure of the gradient coil unit occupies a first region. A second conductor-free region is within the first region, on the side facing the RF antenna unit, between a primary gradient coil unit and a secondary shim gradient coil unit of the gradient coil unit. The second conductor-free region is at least partially surrounded by the conductor structure of the gradient coil unit and is fashioned as a second RF field return volume in connection with the first RF field return volume. The RF shield proceeds between the RF field return volumes and the conductor structure of the gradient coil unit. The RF antenna unit is closer to the data acquisition region of the magnetic resonance apparatus than the gradient coil unit.
    • 磁共振装置具有RF天线单元,梯度线圈单元和RF屏蔽,其导体结构彼此独立。 RF屏蔽设置在RF天线单元和梯度线圈单元之间,RF天线单元(1,29,55A和梯度线圈单元之间)之间布置第一RF场返回音量,RF场返回音量关闭RF RF天线单元的磁场线,并且由梯形线圈单元侧的RF屏蔽界定,梯度线圈单元的导体结构占据第一区域,第二无导体区域在第一区域内,在 面向RF天线单元的一侧,梯度线圈单元的主梯度线圈单元和次级斜面梯形线圈单元之间,第二无导体区域至少部分地被梯度线圈单元的导体结构包围,并被形成 作为与第一RF场返回体积相关的第二RF场返回体积,RF屏蔽在RF场返回体积和梯度线圈单元的导体结构之间进行,RF天线单元更靠近 e数据采集区域比梯形线圈单元。
    • 10. 发明授权
    • Magnetic resonance system
    • 磁共振系统
    • US07053615B2
    • 2006-05-30
    • US10514388
    • 2003-05-06
    • Razvan LazarJürgen NistlerWolfgang RenzMarkus Vester
    • Razvan LazarJürgen NistlerWolfgang RenzMarkus Vester
    • G01V3/00
    • G01R33/3415G01R33/34046G01R33/3642G01R33/365G01R33/5659
    • A magnetic resonance system has a primary RF transmitting antenna and at least one secondary RF transmitting antenna. Both antennas generate RF excitation fields in an examination volume. At least one of the primary and secondary transmitting antennas has a control element connected thereto, which allows an amplitude ratio and/or a phase difference of the respective excitation currents in the antennas to be set by a control and evaluation device. The control and evaluation device causes the excitation current in the secondary transmitting antenna to have a smaller amplitude than the excitation current in the primary transmitting antenna, so that the excitation field generated by the secondary transmitting antenna has a smaller spatial extent in the examination volume than the excitation field generated by the primary transmitting antenna.
    • 磁共振系统具有主RF发射天线和至少一个次RF发射天线。 两个天线在检查体积中产生RF激励场。 主发射天线和次发射天线中的至少一个具有连接到其上的控制元件,这允许通过控制和评估装置设置天线中的相应激励电流的振幅比和/或相位差。 控制和评估装置使得次级发射天线中的激励电流具有比主发射天线中的激励电流更小的振幅,使得由次发射天线产生的激励场在检查体积中具有较小的空间范围, 由主发射天线产生的激励场。