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    • 2. 发明授权
    • Apparatus and probe head for determining a quantitative property of a sample substance by means of magnetic resonance
    • 用于通过磁共振确定样品物质的定量性质的装置和探针头
    • US07397247B2
    • 2008-07-08
    • US11346613
    • 2006-02-02
    • Marian KlozaDieter SchmalbeinDiether Maier
    • Marian KlozaDieter SchmalbeinDiether Maier
    • G01V3/00
    • G01N24/08G01R33/30
    • An apparatus for determining a quantitative property of a sample substance by means of magnetic resonance is disclosed. The apparatus comprises a conveyor for conveying sample containers containing the sample substance through a measuring station. The measuring station comprises a magnet system for generating a constant magnetic field of high homogeneity. The measuring station, further, comprises a probe head adapted for letting sample containers be conveyed therethrough and for generating a high frequency magnetic field. A magnetic resonance measuring unit determines the quantitative property of the sample substance contained in the probe head. The probe head excites and detects, resp., the magnetic resonance essentially only within that section of the sample container which contains the sample substance. The probe head comprises a split-ring resonator which, as seen in a conveying direction of the conveyor, has a passage cross-section for letting run the sample containers therethrough. The high frequency magnetic field is generated essentially only in an area of the passage cross-section through which the sample containers run during conveying.
    • 公开了一种用于通过磁共振确定样品物质的定量性质的装置。 该装置包括用于通过测量站传送包含样品物质的样品容器的输送机。 测量站包括用于产生高均匀性的恒定磁场的磁体系统。 此外,测量站还包括探头,其适于使样品容器通过其传送并产生高频磁场。 磁共振测量单元确定包含在探头中的样品物质的定量性质。 探针头基本上仅在包含样品物质的样品容器的该部分内激发和检测磁共振。 探头包括开环谐振器,从输送机的输送方向看,该环形谐振器具有用于使样品容器通过的通道横截面。 高频磁场基本上仅在样品容器在传送过程中运行的通道横截面的区域中产生。
    • 3. 发明申请
    • Apparatus and probe head for determining a quantitative property of a sample substance by means of magnetic resonance
    • 用于通过磁共振确定样品物质的定量性质的装置和探针头
    • US20060192557A1
    • 2006-08-31
    • US11346613
    • 2006-02-02
    • Marian KlozaDieter SchmalbeinDiether Maier
    • Marian KlozaDieter SchmalbeinDiether Maier
    • G01V3/00
    • G01N24/08G01R33/30
    • An apparatus for determining a quantitative property of a sample substance by means of magnetic resonance is disclosed. The apparatus comprises a conveyor for conveying sample containers containing the sample substance through a measuring station. The measuring station comprises a magnet system for generating a constant magnetic field of high homogeneity. The measuring station, further, comprises a probe head adapted for letting sample containers be conveyed therethrough and for generating a high frequency magnetic field. A magnetic resonance measuring unit determines the quantitative property of the sample substance contained in the probe head. The probe head excites and detects, resp., the magnetic resonance essentially only within that section of the sample container which contains the sample substance. The probe head comprises a split-ring resonator which, as seen in a conveying direction of the conveyor, has a passage cross-section for letting run the sample containers therethrough. The high frequency magnetic field is generated essentially only in an area of the passage cross-section through which the sample containers run during conveying.
    • 公开了一种用于通过磁共振确定样品物质的定量性质的装置。 该装置包括用于通过测量站传送包含样品物质的样品容器的输送机。 测量站包括用于产生高均匀性的恒定磁场的磁体系统。 此外,测量站还包括探头,其适于使样品容器通过其传送并产生高频磁场。 磁共振测量单元确定包含在探头中的样品物质的定量性质。 探针头基本上仅在包含样品物质的样品容器的该部分内激发和检测磁共振。 探头包括开环谐振器,从输送机的输送方向看,该环形谐振器具有用于使样品容器通过的通道横截面。 高频磁场基本上仅在样品容器在传送过程中运行的通道横截面的区域中产生。
    • 4. 发明授权
    • Magnetic resonance resonator assembly
    • 磁共振谐振器组件
    • US07919963B2
    • 2011-04-05
    • US12370045
    • 2009-02-12
    • Alexander KrahnPeter HoeferMarian KlozaFrank Engelke
    • Alexander KrahnPeter HoeferMarian KlozaFrank Engelke
    • G01V3/00
    • G01R33/345G01R33/30G01R33/34046G01R33/34053G01R33/3453G01R33/3635G01R33/4808G01R33/60G01R33/62
    • A resonator assembly for executing measurements on a sample within a constant magnetic field B0 by means of magnetic resonance is disclosed. It comprises a resonator portion defining a longitudinal axis and an axial direction. The resonator portion has, along the axial direction, a hollow cavity for exciting electron resonance within the sample. A coupling portion is provided adjacent the resonator portion and has, along the longitudinal axis, a stepped through being electrically conductive at its inner surface. A first, middle section of the stepped through configures the hollow cavity. A second and a third, lateral section adjacent axially opposed sides of the hollow cavity are each dimensioned such that a basic mode being resonant within the hollow cavity is unable to propagate within the second and the third section. A coil is wound around the resonator portion for additionally exciting a nuclear resonance within the sample. The resonator portion comprises a toroidal body made from an electrically conductive material within which there is provided the stepped through. The toroidal body is provided with at least one axial slit.
    • 公开了一种用于通过磁共振在恒定磁场B0内对样本进行测量的谐振器组件。 它包括限定纵向轴线和轴向方向的谐振器部分。 谐振器部分沿着轴向具有用于在样品内激发电子共振的中空腔。 耦合部分设置在谐振器部分附近,并且沿着纵向轴线具有在其内表面处导电的台阶状。 阶梯式通道的第一,中间部分构成空腔。 与中空腔的轴向相对侧相邻的第二和第三侧横截面的每个尺寸设计成使得在中空腔内共振的基本模式不能在第二和第三部分内传播。 线圈绕在谐振器部分周围,用于另外激发样品内的核共振。 谐振器部分包括由导电材料制成的环形体,在该环形体内设置有阶梯状。 环形体设置有至少一个轴向狭缝。
    • 5. 发明申请
    • MAGNETIC RESONANCE RESONATOR ASSEMBLY
    • 磁共振谐振器总成
    • US20090230963A1
    • 2009-09-17
    • US12370045
    • 2009-02-12
    • Alexander KrahnPeter HoeferMarian KlozaFrank Engelke
    • Alexander KrahnPeter HoeferMarian KlozaFrank Engelke
    • G01R33/34
    • G01R33/345G01R33/30G01R33/34046G01R33/34053G01R33/3453G01R33/3635G01R33/4808G01R33/60G01R33/62
    • A resonator assembly for executing measurements on a sample within a constant magnetic field B0 by means of magnetic resonance is disclosed. It comprises a resonator portion defining a longitudinal axis and an axial direction. The resonator portion has, along the axial direction, a hollow cavity for exciting electron resonance within the sample. A coupling portion is provided adjacent the resonator portion and has, along the longitudinal axis, a stepped through being electrically conductive at its inner surface. A first, middle section of the stepped through configures the hollow cavity. A second and a third, lateral section adjacent axially opposed sides of the hollow cavity are each dimensioned such that a basic mode being resonant within the hollow cavity is unable to propagate within the second and the third section. A coil is wound around the resonator portion for additionally exciting a nuclear resonance within the sample. The resonator portion comprises a toroidal body made from an electrically conductive material within which there is provided the stepped through. The toroidal body is provided with at least one axial slit.
    • 公开了一种用于通过磁共振在恒定磁场B0内对样本进行测量的谐振器组件。 它包括限定纵向轴线和轴向方向的谐振器部分。 谐振器部分沿着轴向具有用于在样品内激发电子共振的中空腔。 耦合部分设置在谐振器部分附近,并且沿着纵向轴线具有在其内表面处导电的台阶状。 阶梯式通道的第一,中间部分构成空腔。 与中空腔的轴向相对侧相邻的第二和第三侧横截面的每个尺寸设计成使得在中空腔内共振的基本模式不能在第二和第三部分内传播。 线圈绕在谐振器部分周围,用于另外激发样品内的核共振。 谐振器部分包括由导电材料制成的环形体,在该环形体内设置有阶梯状。 环形体设置有至少一个轴向狭缝。