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    • 11. 发明授权
    • Sinusoidally resonant radio frequency volume coils for high field magnetic resonance applications
    • 用于高场磁共振应用的正弦共振射频体积线圈
    • US08421462B2
    • 2013-04-16
    • US12528536
    • 2008-01-30
    • Zhiyong ZhaiMichael A. MorichGordon D. Demeester
    • Zhiyong ZhaiMichael A. MorichGordon D. Demeester
    • G01V3/00
    • G01R33/34046G01R33/3635G01R33/422
    • A radio frequency coil assembly includes an annular conductor (20, 22, 120) configured to support a sinusoidal electrical current distribution at a magnetic resonance frequency, and a radio frequency shield (30, 32, 34, 52, 60, 61, 130) shielding the annular conductor in at least one direction, the radio frequency shield including at least one of (i) a cylindrical shield portion (30, 60, 61, 130) surrounding a perimeter of the annular conductor, and (ii) a planar shield portion (32, 34, 52) arranged generally parallel with the annular conductor. In a magnetic resonance scanner embodiment, a magnet (10) generates a static magnetic field (B0), a magnetic field gradient system (14) is configured to superimpose selected magnetic field gradients on the static magnetic field, and said radio frequency coil assembly is arranged with the annular conductor generally transverse to the static magnetic field (B0).
    • 射频线圈组件包括被配置为支持磁共振频率的正弦电流分布的环形导体(20,22,120)和射频屏蔽(30,32,34,52,60,61,130) 在至少一个方向上屏蔽环形导体,射频屏蔽包括以下至少一个:(i)围绕环形导体的周边的圆柱形屏蔽部分(30,60,61,130),和(ii)平面屏蔽 大体平行于环形导体布置的部分(32,34,52)。 在磁共振扫描器实施例中,磁体(10)产生静磁场(B0),磁场梯度系统(14)被配置为将选定的磁场梯度叠加在静磁场上,而所述射频线圈组件 与环形导体布置成大体横向于静磁场(B0)。
    • 12. 发明授权
    • Magnetic resonance with time sequential spin excitation
    • 磁共振随时间顺序旋转激发
    • US07852084B2
    • 2010-12-14
    • US12297652
    • 2007-04-03
    • Zhiyong ZhaiGordon D. DeMeesterMichael A. MorichPaul R. Harvey
    • Zhiyong ZhaiGordon D. DeMeesterMichael A. MorichPaul R. Harvey
    • G01V3/00
    • G01R33/5659G01R33/246G01R33/3415
    • In a magnetic resonance scanner, a main magnet (20, 22) generates a static magnetic field at least in an examination region. A magnetic field gradient system (30, 54) selectively superimposes magnetic field gradients on the static magnetic field at least in the examination region. A magnetic resonance excitation system (36, 36′) includes at least one radio frequency coil (30, 301, 302, 303) arranged to inject radio frequency B1 fields into the examination region and at least two radio frequency amplifiers (38, 40, 40′) coupled with different input ports of the at least one radio frequency coil. A controller (66, 70) controls the magnetic resonance excitation system to produce a time varying spatial B1 field distribution in a subject (16) in the examination region that time integrates to define a spatial tip angle distribution in the subject having reduced spatial non uniformity.
    • 在磁共振扫描器中,主磁体(20,22)至少在检查区域中产生静磁场。 磁场梯度系统(30,54)至少在检查区域中选择性地将磁场梯度叠加在静磁场上。 磁共振激励系统(36,36')包括至少一个射频线圈(30,301,302,303),其布置成将射频B1场注入检查区域,并且至少两个射频放大器(38,40,303) 40')耦合到所述至少一个射频线圈的不同输入端口。 控制器(66,70)控制磁共振激励系统以在检查区域中的对象(16)中产生时变空间B1场分布,该时间积分以限定被摄体中的具有降低的空间非均匀性的空间尖角分布 。
    • 14. 发明申请
    • SINUSOIDALLY RESONANT RADIO FREQUENCY VOLUME COILS FOR HIGH FIELD MAGNETIC RESONANCE APPLICATIONS
    • 用于高场磁共振应用的SINUSOIDALLY谐振无线电频率线圈
    • US20100117642A1
    • 2010-05-13
    • US12528536
    • 2008-01-30
    • Zhiyong ZhaiMichael A. MorichGordon D. Demeester
    • Zhiyong ZhaiMichael A. MorichGordon D. Demeester
    • G01R33/44
    • G01R33/34046G01R33/3635G01R33/422
    • A radio frequency coil assembly includes an annular conductor (20, 22, 120) configured to support a sinusoidal electrical current distribution at a magnetic resonance frequency, and a radio frequency shield (30, 32, 34, 52, 60, 61, 130) shielding the annular conductor in at least one direction, the radio frequency shield including at least one of (i) a cylindrical shield portion (30, 60, 61, 130) surrounding a perimeter of the annular conductor, and (ii) a planar shield portion (32, 34, 52) arranged generally parallel with the annular conductor. In a magnetic resonance scanner embodiment, a magnet (10) generates a static magnetic field (B0), a magnetic field gradient system (14) is configured to superimpose selected magnetic field gradients on the static magnetic field, and said radio frequency coil assembly is arranged with the annular conductor generally transverse to the static magnetic field (B0).
    • 射频线圈组件包括被配置为支持磁共振频率的正弦电流分布的环形导体(20,22,120)和射频屏蔽(30,32,34,52,60,61,130) 在至少一个方向上屏蔽环形导体,射频屏蔽包括以下至少一个:(i)围绕环形导体的周边的圆柱形屏蔽部分(30,60,61,130),和(ii)平面屏蔽 大体平行于环形导体布置的部分(32,34,52)。 在磁共振扫描器实施例中,磁体(10)产生静磁场(B0),磁场梯度系统(14)被配置为将选定的磁场梯度叠加在静磁场上,而所述射频线圈组件 与环形导体布置成大体横向于静磁场(B0)。
    • 15. 发明申请
    • MAGNETIC RESONANCE WITH TIME SEQUENTIAL SPIN EXCITATION
    • 具有时间顺序旋转激励的磁共振
    • US20090102483A1
    • 2009-04-23
    • US12297652
    • 2007-04-03
    • Zhiyong ZhaiGordon D. DeMeesterMichael A. MorichPaul R. Harvey
    • Zhiyong ZhaiGordon D. DeMeesterMichael A. MorichPaul R. Harvey
    • G01R33/32
    • G01R33/5659G01R33/246G01R33/3415
    • In a magnetic resonance scanner, a main magnet (20, 22) generates a static magnetic field at least in an examination region. A magnetic field gradient system (30, 54) selectively superimposes magnetic field gradients on the static magnetic field at least in the examination region. A magnetic resonance excitation system (36, 36′) includes at least one radio frequency coil (30, 301, 302, 303) arranged to inject radio frequency B1 fields into the examination region and at least two radio frequency amplifiers (38, 40, 40′) coupled with different input ports of the at least one radio frequency coil. A controller (66, 70) controls the magnetic resonance excitation system to produce a time varying spatial B1 field distribution in a subject (16) in the examination region that time integrates to define a spatial tip angle distribution in the subject having reduced spatial non uniformity.
    • 在磁共振扫描器中,主磁体(20,22)至少在检查区域中产生静磁场。 磁场梯度系统(30,54)至少在检查区域中选择性地将磁场梯度叠加在静磁场上。 磁共振激励系统(36,36')包括至少一个射频线圈(30,301,302,303),其布置成将射频B1场注入检查区域,并且至少两个射频放大器(38,40,303) 40')耦合到所述至少一个射频线圈的不同输入端口。 控制器(66,70)控制磁共振激励系统以在检查区域中的对象(16)中产生时变空间B1场分布,该时间积分以限定被摄体中的具有降低的空间非均匀性的空间尖角分布 。
    • 17. 发明授权
    • Transmit/receive coil for ultra-high field MRI
    • 用于超高场MRI的发射/接收线圈
    • US08441259B2
    • 2013-05-14
    • US12742976
    • 2008-12-12
    • Zhiyong ZhaiRobert GaussEddy Yu Ping WongMichael A. MorichKevin M. NiemanGordon D. DeMeester
    • Zhiyong ZhaiRobert GaussEddy Yu Ping WongMichael A. MorichKevin M. NiemanGordon D. DeMeester
    • G01V3/00
    • G01R33/3415G01R33/5659
    • A magnetic resonance coil comprises a first set of coil elements (54, 56, 80) operatively connectable with a transmit channel (66, 74) to couple with a transmit region of sensitivity for a selected load at a magnetic field strength greater than 3 Tesla, and a second set of coil elements (52, 54, 82) operatively connectable with a receive channel (66, 74) to couple with a receive region of sensitivity for the selected load at the magnetic field strength greater than 3 Tesla. The first set of coil elements is arranged proximate to but not surrounding the transmit region of sensitivity, and the second set of coil elements is arranged proximate to but not surrounding the receive region of sensitivity. The first set of coil elements and the second set of coil elements having at least one coil element (52, 56) not in common. The first and second sets of coil elements define transmit and receive regions of sensitivity for the selected load at the magnetic field strength greater than 3 Tesla that are substantially similar.
    • 磁共振线圈包括可操作地与发射通道(66,74)连接的第一组线圈元件(54,56,80),以在大于3特斯拉的磁场强度下与选定负载的灵敏度的发射区域耦合 以及第二组线圈元件(52,54,82),其可操作地与接收通道(66,74)连接,以在大于3特斯拉的磁场强度下与所选择的负载的接收灵敏度区域耦合。 第一组线圈元件布置成靠近但不围绕灵敏度的发射区域,并且第二组线圈元件布置成接近但不包围灵敏度的接收区域。 第一组线圈元件和第二组线圈元件具有不共同的至少一个线圈元件(52,56)。 第一组和第二组线圈元件在大于3特斯拉的大于3特斯拉的磁场强度下为所选择的载荷定义灵敏度的发射和接收区域。
    • 18. 发明授权
    • Doubly resonant high field radio frequency surface coils for magnetic resonance
    • 双谐振高频射频表面线圈用于磁共振
    • US08089281B2
    • 2012-01-03
    • US12528541
    • 2008-01-30
    • Zhiyong ZhaiMichael A. MorichGordon D. DeMeester
    • Zhiyong ZhaiMichael A. MorichGordon D. DeMeester
    • G01V3/00
    • G01R33/3635G01R33/34007G01R33/341G01R33/3678
    • A radio frequency coil comprises an annular conductor or parallel annular conductors (22, 22c, 22d) configured to support: (i) a uniform electrical current distribution generating a first B1 field (B1,uniform) at a first magnetic resonance frequency directed out of a plane of the annular conductor or conductors; and (ii) a sinusoidal electrical current distribution generating a second B1 field (B1,sine) at a second magnetic resonance frequency directed parallel with the plane of the annular conductor or conductors. A magnetic resonance scanner comprises: a magnet (10) generating a static magnetic field (B0); a magnetic field gradient system (14) configured to superimpose selected magnetic field gradients on the static magnetic field; and said radio frequency coil including said annular conductor or parallel annular conductors (22, 22c, 22d).
    • 射频线圈包括环形导体或平行环形导体(22,22c,22d),其被配置为支持:(i)均匀的电流分布,其以第一磁共振频率产生第一B1场(B1,均匀) 环形导体或导体的平面; 和(ii)以与环形导体或导体的平面平行的第二磁共振频率产生第二B1场(B1,正弦)的正弦电流分布。 磁共振扫描器包括:产生静磁场(B0)的磁体(10); 磁场梯度系统(14),被配置为将选定的磁场梯度叠加在静磁场上; 并且所述射频线圈包括所述环形导体或平行环形导体(22,22c,22d)。
    • 19. 发明授权
    • RF volume coil with selectable field of view
    • 具有可选视野的RF体积线圈
    • US07683623B2
    • 2010-03-23
    • US11917010
    • 2006-06-13
    • Zhiyong ZhaiMichael A. MorichGordon D. DeMeesterRobert C. Gauss
    • Zhiyong ZhaiMichael A. MorichGordon D. DeMeesterRobert C. Gauss
    • G01V3/00
    • G01R33/34046G01R33/3664
    • A radio frequency coil for magnetic resonance imaging or spectroscopy includes a plurality of generally parallel conductive members (70) surrounding a region of interest (14). One or more end members (72, 74) are disposed generally transverse to the plurality of parallel conductive members. A generally cylindrical radio frequency shield (32) surrounds the plurality of generally parallel conductive members. Switchable circuitry (80, 80′) selectably has: (i) a first switched configuration (90, 90′) in which the conductive members are operatively connected with the one or more end members; and (ii) a second switched configuration (92, 92′) in which the conductive members are operatively connected with the radio frequency shield. The radio frequency coil operates in a birdcage resonance mode in the first switched configuration and operates in a TEM resonance mode in the second switched configuration.
    • 用于磁共振成像或光谱的射频线圈包括围绕感兴趣区域(14)的多个大致平行的导电构件(70)。 一个或多个端部构件(72,74)大致横向于多个平行导电构件设置。 通常为圆柱形的射频屏蔽(32)围绕多个大致平行的导电构件。 可切换电路(80,80')可选择地具有:(i)第一开关构造(90,90'),其中导电构件与一个或多个端构件可操作地连接; 和(ii)其中导电构件与射频屏蔽可操作地连接的第二切换配置(92,92')。 射频线圈在第一切换配置中以鸟笼共振模式工作,并且在第二切换配置中以TEM共振模式操作。
    • 20. 发明申请
    • Electromagnetic Shielding For High Field Mri Coils
    • 高磁场线圈电磁屏蔽
    • US20080186026A1
    • 2008-08-07
    • US11913487
    • 2006-04-19
    • Christoph G. LeusslerKai-Michael LuedekeMichael A. MorichZhiyong ZhaiGordon D. DeMeester
    • Christoph G. LeusslerKai-Michael LuedekeMichael A. MorichZhiyong ZhaiGordon D. DeMeester
    • G01R33/422
    • G01R33/422G01R33/3628
    • A radio frequency coil for magnetic resonance imaging includes an active coil member (70, 701, 170, 270) that defines an imaging volume. The active coil member has a first open end (74) with a first cross-sectional dimension (dactive). A shield coil member (72, 721, 722, 723, 724, 725, 172, 1722, 272) substantially surrounds the active coil member. The shield coil member has a constricted open end (88) arranged proximate to the first open end of the active coil member with a constricted cross-sectional dimension (dconst) that is less than the cross-sectional dimension (dShieid) of the shield coil member In some embodiments, the radio frequency coil further includes an outer shield coil member (100) that is substantially larger than the shield coil member (72, 721, 722, 723, 724, 725, 172, 1722, 272), and surrounds both the active coil member and the shield coil member.
    • 用于磁共振成像的射频线圈包括限定成像体积的有源线圈构件(70,70A,170,270)。 有源线圈构件具有第一横截面尺寸(dactive)的第一开口端(74)。 屏蔽线圈构件(72,72,...,72,72,72,72,SUB) 大致围绕有源线圈构件。 屏蔽线圈构件具有靠近有源线圈构件的第一开口端布置的收缩的开口端(88),其缩小的横截面尺寸(dconst)小于屏蔽线圈的横截面尺寸(dShid) 在一些实施例中,射频线圈还包括外屏蔽线圈构件(100),该屏蔽线圈构件(100)基本上大于屏蔽线圈构件(72,72,...,72 < ,72个3,72个,72个,172个,172个,272个),并且包围两个 有源线圈构件和屏蔽线圈构件。