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    • 1. 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. 发明申请
    • Field generating unit of a combined MR/PET system
    • 组合MR / PET系统的场产生单元
    • US20080088309A1
    • 2008-04-17
    • US11905250
    • 2007-09-28
    • Ludwig EberlerRazvan LazarJurgen NistlerWolfgang RenzNorbert Rietsch
    • Ludwig EberlerRazvan LazarJurgen NistlerWolfgang RenzNorbert Rietsch
    • G01R33/34
    • G01R33/3415G01R33/481
    • An RF antenna arrangement of a combined MR/PET system is disclosed. In at least one embodiment, the RF antenna arrangement includes a first part installed in the examination tunnel in a fashion fixed to the system such that it is arranged underneath the couch board when the latter is introduced, and a second part, which can be placed onto the couch board and be introduced into and withdrawn from the examination tunnel together with the couch board. In at least one embodiment, the second part is of dimensionally stable design and has a clear cross section that is adapted to the object to be examined. Consequently, the time outlay for applying the RF antenna is reduced, and the fixed position of the RF antenna enables a correction of the attenuation of gamma rays. Furthermore, a number of second parts having various diameters can be provided.
    • 公开了一种组合MR / PET系统的RF天线装置。 在至少一个实施例中,RF天线布置包括以固定到系统的方式安装在检查隧道中的第一部分,使得它被布置在沙发板的下方,当其被引入时,第二部分可以被放置 进入沙发板,并与沙发板一起引入和从检查隧道中取出。 在至少一个实施例中,第二部分是尺寸稳定的设计,并且具有适于被检查物体的清晰的横截面。 因此,减少了施加RF天线的时间费用,并且RF天线的固定位置能够校正伽马射线的衰减。 此外,可以提供多个具有各种直径的第二部分。
    • 7. 发明申请
    • Magnetic resonance antenna
    • 磁共振天线
    • US20050127914A1
    • 2005-06-16
    • US10810364
    • 2004-03-26
    • Ludwig EberlerRazvan LazarJurgen NistlerGunther Zebelein
    • Ludwig EberlerRazvan LazarJurgen NistlerGunther Zebelein
    • G01R33/34G01R33/36G01V3/00
    • G01R33/3657G01R33/34046
    • A magnetic resonance antenna has longitudinal antenna rods in a birdcage structure, and antenna ferrules connecting the longitudinal antenna rods at their ends in terms of radio-frequency. The magnetic resonance antenna has a number of radio-frequency switching elements that interrupt, in terms of radio-frequency, at least one part of the longitudinal antenna rod to detune the eigen-resonance frequency of the antenna with respect to an operating magnetic resonance frequency. For this purpose, the magnetic resonance antenna is provided with two switching lines, directed to the radio-frequency switching elements from outside of the birdcage structure, the switching lines having a ring line connected thereto running annularly on or in the birdcage structure and transverse to the longitudinal antenna rods.
    • 磁共振天线具有鸟笼结构中的纵向天线杆,以及在射频方面连接纵向天线杆的端部处的天线插芯。 磁共振天线具有多个射频切换元件,其以射频方式中断纵向天线杆的至少一部分,以相对于工作磁共振频率去除天线的本征谐振频率 。 为此,磁共振天线设置有从鸟笼结构的外部引向射频开关元件的两条开关线,开关线具有连接到其上的环形线环绕在鸟笼结构上或在鸟笼结构中并横向于 纵向天线杆。
    • 8. 发明申请
    • Magnetic resonance system with suppression of capacitive coupling between an RF source and the subject
    • 磁共振系统,抑制RF源与被摄体之间的电容耦合
    • US20060279283A1
    • 2006-12-14
    • US11389476
    • 2006-03-24
    • Jurgen NistlerMarkus Vester
    • Jurgen NistlerMarkus Vester
    • G01V3/00
    • G01R33/422G01R33/34007G01R33/34046G01R33/3657G01R33/385
    • An examination subject arranged in an examination volume of a magnetic resonance system can be excited to magnetic resonance by an RF transmission antenna. The RF transmission antenna is fashioned as a resonant structure that surrounds a central axis of the magnetic resonance system running within the examination volume. The resonance structure has inner edges proceeding around the central axis on its inner side facing the central axis, which inner edges form a capacitively-bridged annular gap extending parallel to the central axis. The RF transmission antenna is embedded into the gradient coil, such that the gradient coil at least radially outwardly and axially surrounds the RF transmission antenna), and the inner edges of the RF transmission antenna are connected in an electrically-conductive manner with inner sides of the gradient coil to the central axis. They are arranged radially inwardly (viewed from the annular gap) and axially completely cover the annular gap as well as axially at least partially cover the inner sides of the gradient coil.
    • 配置在磁共振系统的检查体积中的检查对象可以被RF发送天线激励到磁共振。 RF发射天线被形成为围绕在检查体积内运行的磁共振系统的中心轴线的谐振结构。 谐振结构具有内边缘围绕中心轴线在其面向中心轴线的内侧上延伸,该内边缘形成平行于中心轴线延伸的电容桥接环形间隙。 射频发射天线被嵌入到梯度线圈中,使得梯度线圈至少径向向外并且轴向地围绕RF发射天线),并且RF发射天线的内边缘以导电方式与 梯度线圈到中心轴线。 它们径向向内(从环形间隙看)并且轴向地完全覆盖环形间隙,并且轴向地至少部分地覆盖梯度线圈的内侧。