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    • 71. 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。
    • 73. 发明授权
    • Generator device for generating a magnetic resonance excitation signal
    • 用于产生磁共振激励信号的发生器装置
    • US07119543B2
    • 2006-10-10
    • US10909794
    • 2004-07-30
    • Adam AlbrechtHorst KröckelWilfried SchnellMarkus Vester
    • Adam AlbrechtHorst KröckelWilfried SchnellMarkus Vester
    • G01V3/00
    • G01R33/3607G01R33/3614
    • A generator device for a magnetic resonance excitation signal has a signal divider that divides an input signal supplied to it via an input element into at least two sub-signals and supplies them to amplification stages. The amplification stages amplify the respective sub-signals to produce amplified signals and supply the amplified signals to a signal combiner that combines them to form an aggregate signal, which is made externally available via an output element. Sensor devices that precede the signal divider and the signal combiner, acquire a reference signal that corresponds to the input signal and actual signals that correspond to the amplified signals and supply them to a control device. The control device acts on at least one of the amplification stages to cause the amplified signals to exhibit a predetermined amplitude ratio and a predetermined phase relation relative to one another.
    • 用于磁共振激励信号的发生器装置具有信号分配器,其将经由输入元件提供给其的输入信号分成至少两个子信号并将其提供给放大级。 放大级放大相应的子信号以产生放大的信号,并将放大的信号提供给组合它们的信号组合器,以形成聚合信号,该信号通过输出元件在外部可用。 在信号分频器和信号组合器之前的传感器装置,获取对应于输入信号的参考信号和对应于放大信号的实际信号并将其提供给控制装置。 控制装置作用于至少一个放大级,以使放大的信号相对于彼此呈现预定的幅度比和预定的相位关系。
    • 75. 发明申请
    • Generation device for a magnetic resonance excitation signal
    • 用于磁共振激励信号的发生装置
    • US20050046476A1
    • 2005-03-03
    • US10909794
    • 2004-07-30
    • Adam AlbrechtHorst KrockelWilfried SchnellMarkus Vester
    • Adam AlbrechtHorst KrockelWilfried SchnellMarkus Vester
    • G01R33/20A61B5/055G01R33/36H03F3/68
    • G01R33/3607G01R33/3614
    • A generation device for a magnetic resonance excitation signal has a signal divider that divides an input signal supplied to it via an input element into at least two sub-signals and supplies them to amplification stages. The amplification stages amplify the respective sub-signals to produce signals and supply the amplified signals to a signal combiner that combines them to form an aggregate signal, which is made externally available via an output element. Sensor devices that precede the signal divider and the signal combiner, acquire a reference signal that corresponds to the input signal and actual signals that correspond to the amplified signals and supply them to a control device. The control device acts on at least one of the amplification stages to cause the amplified signals to exhibit a predetermined amplitude ratio and a predetermined phase relation relative to one another.
    • 用于磁共振激励信号的发生装置具有信号分配器,其将经由输入元件提供给其的输入信号分成至少两个子信号,并将其提供给放大级。 放大级放大相应的子信号以产生信号,并将放大的信号提供给组合它们的信号组合器,以形成聚合信号,该信号通过输出元件在外部可用。 在信号分频器和信号组合器之前的传感器装置,获取对应于输入信号的参考信号和对应于放大信号的实际信号并将其提供给控制装置。 控制装置作用于至少一个放大级,以使放大的信号相对于彼此呈现预定的幅度比和预定的相位关系。
    • 77. 发明授权
    • Dynamics compressor for an analog signal to be compressed
    • 用于要压缩的模拟信号的动力压缩器
    • US06714093B2
    • 2004-03-30
    • US10262329
    • 2002-10-01
    • Ralph OppeltMarkus Vester
    • Ralph OppeltMarkus Vester
    • H04B164
    • H04B1/64
    • In a dynamics compressor, an analog signal to be compressed is supplied to a first amplifier stage as an input signal, and the output signal thereof is supplied to the next amplifier stage as an input signal, and so on for a number of successive amplifier stages. Each amplifier stage amplifies its input signal with a stage amplification until it reaches a stage limit level. The analog signal and the respective output signals of the amplifier stages are summed in a summation stage to form a sum signal. Above a minimal level, the magnitude of the curve of the sum signalroughly corresponds to an exponent characteristic of the magnitude of the analog signal.
    • 在动态压缩器中,要被压缩的模拟信号作为输入信号被提供给第一放大器级,并且其输出信号作为输入信号提供给下一个放大器级,并且等于多个连续的放大器级 。 每个放大器级用级放大放大其输入信号,直到达到级限。 放大器级的模拟信号和各个输出信号在求和级相加以形成和信号。 高于最小电平,总和信号的曲线的大小对应于模拟信号幅度的指数特性。