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    • 1. 发明授权
    • Microarray characterization system and method
    • 微阵列表征系统及方法
    • US08686376B2
    • 2014-04-01
    • US12999639
    • 2009-06-23
    • Reinhold Wimberger-FriedlPeter DirksenMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • Reinhold Wimberger-FriedlPeter DirksenMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • F21V9/16
    • G01N21/6452B01L3/5027G02B21/0028
    • A system for detecting a plurality of analytes in a sample includes an aperture array and a lens array for generating and focusing a plurality of excitation sub-beams on different sub-regions of a substrate. These sub-regions can be provided with different binding sites for binding different analytes in the sample. By detecting the different luminescent responses in a detector, the presence or amount of different analytes can be determined simultaneously. Alternatively or in addition, collection of the luminescence radiation can be performed using the lens array for directly collecting the luminescence response and for guiding the collected luminescence response to corresponding apertures. The excitation sub-beams may be focused at the side of the substrate opposite of the lens array, and an immersion fluid is provided between the lens array and the substrate to increase the collection efficiency of the luminescence radiation.
    • 用于检测样品中多个分析物的系统包括孔径阵列和用于在衬底的不同子区域上产生和聚焦多个激发子束的透镜阵列。 这些子区域可以具有不同的结合位点,用于结合样品中的不同分析物。 通过检测检测器中的不同发光响应,可以同时测定不同分析物的存在或量。 或者或另外,可以使用透镜阵列来执行发光辐射的收集,用于直接收集发光响应并且用于将所收集的发光响应引导到相应的孔。 激发子光束可以聚焦在与透镜阵列相对的一侧的基板处,并且在透镜阵列和基板之间提供浸没流体以增加发光辐射的收集效率。
    • 2. 发明申请
    • MICROARRAY CHARACTERIZATION SYSTEM AND METHOD
    • 微阵列特征系统和方法
    • US20110101243A1
    • 2011-05-05
    • US12999639
    • 2009-06-23
    • Reinhold Wimberger-FriedlPeter DirksenMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • Reinhold Wimberger-FriedlPeter DirksenMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • G01N21/64
    • G01N21/6452B01L3/5027G02B21/0028
    • A system and method is described for detecting a plurality of analytes in a sample. The characterization system (100) comprises an aperture array (108) and a lens array (110) for generating and focusing a plurality of excitation sub-beams on different sub-regions of a substrate. These sub-regions can be provided with different binding sites for binding different analytes in the sample. By detecting the different luminescent responses in a detector, the presence or amount of different analytes can be determined simultaneously. Alternatively or in addition thereto collection of the luminescence radiation can be performed using the lens array for directly collecting the luminescence response and for guiding the collected luminescence response to corresponding apertures. In a preferred embodiment, the excitation sub-beams are focused at the side of the substrate opposite of the lens array and an immersion fluid is provided between the lens array and the substrate to increase the collection efficiency of the luminescence radiation.
    • 描述了用于检测样品中多个分析物的系统和方法。 表征系统(100)包括孔径阵列(108)和透镜阵列(110),用于在衬底的不同子区域上产生和聚焦多个激励子束。 这些子区域可以具有不同的结合位点,用于结合样品中的不同分析物。 通过检测检测器中的不同发光响应,可以同时测定不同分析物的存在或量。 或者或另外,可以使用透镜阵列来进行发光辐射的收集,用于直接收集发光响应并且用于将所收集的发光响应引导到相应的孔。 在优选实施例中,激发子光束在与透镜阵列相对的一侧聚焦,并且在透镜阵列和基板之间提供浸没流体,以增加发光辐射的收集效率。
    • 3. 发明授权
    • Detection system and method
    • 检测系统及方法
    • US08987684B2
    • 2015-03-24
    • US12747522
    • 2008-12-10
    • Reinhold Wimberger-FriedlMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • Reinhold Wimberger-FriedlMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • F21V9/16G01N21/64
    • G01N21/6456
    • A detection system, comprising: a radiation source (24) for providing input radiation; a radiation focusing arrangement (26) for providing the input radiation to an analysis region of a sample (20);—a radiation collection (26) arrangement for collecting output radiation from the analysis region of the sample resulting from interaction of the input radiation with the sample; a radiation detector (28) for detecting the collected output radiation; operating means (40,50,60) for operating the detection device in a first detection mode and a second detection mode, wherein in the first detection mode the analysis has a first size and/or shape and wherein in the second detection mode the analysis region has a second size and/or shape that is different from the first size and/or shape.
    • 一种检测系统,包括:用于提供输入辐射的辐射源(24); 用于将输入辐射提供给样品(20)的分析区域的辐射聚焦装置(26); - 辐射收集(26)装置,用于收集来自所述样品的分析区域的输出辐射,所述分析区域由所述输入辐射与 例子; 用于检测所收集的输出辐射的辐射检测器(28); 用于在第一检测模式和第二检测模式下操作所述检测装置的操作装置(40,50,60),其中在所述第一检测模式中,所述分析具有第一尺寸和/或形状,并且其中在所述第二检测模式中,所述分析 区域具有与第一尺寸和/或形状不同的第二尺寸和/或形状。
    • 4. 发明申请
    • MULTI-COLOR BIOSENSOR
    • 多色生物传感器
    • US20090309049A1
    • 2009-12-17
    • US12374006
    • 2007-07-05
    • Erik Martinus Hubertus Petrus Van DijkMarius Iosif BoamfaReinhold Wimberger-Friedl
    • Erik Martinus Hubertus Petrus Van DijkMarius Iosif BoamfaReinhold Wimberger-Friedl
    • G01J1/58G02B27/16
    • G01N21/6428G01J3/02G01J3/021G01J3/10G01J3/36G01J3/4406G01N21/645G01N2021/6419G01N2021/6421G01N2021/6441G01N2021/6463
    • A detection system is described (100) for detecting luminescence sites on a substrate (6). The detection system (100) typically comprises an irradiation unit (102) for generating at least one excitation irradiation beam for exciting luminescence sites on the substrate (6). The at least one excitation irradiation beam may be a plurality of excitation irradiation beams. The detection system (100) also comprises a first optical element, e.g. refractive element (25), adapted for receiving at least two irradiation beams of different wavelengths or wavelength ranges, the at least two irradiation beams being excitation irradiation beam(s) to be focused on a substrate and/or luminescence irradiation beam(s) to be collected from the excited luminescence sites on the substrate (6). The detection system (100) also comprises an optical compensator for adjusting at least one of the at least two irradiation beams of different wavelengths or wavelength ranges so as to reduce or compensate for optical aberrations. The present invention also relates to a corresponding method for detecting, a phase plate and a method for designing such a phase plate.
    • 描述了用于检测衬底(6)上的发光部位的检测系统(100)。 检测系统(100)通常包括用于产生用于激发衬底(6)上的发光位点的至少一个激发照射束的照射单元(102)。 所述至少一个激发照射光束可以是多个激发照射光束。 检测系统(100)还包括第一光学元件,例如, 折射元件(25),适于接收不同波长或波长范围的至少两个照射光束,所述至少两个照射光束是被聚焦在基底和/或发光照射光束上的激发照射光束 从基底(6)上的激发的发光部位收集。 检测系统(100)还包括用于调整不同波长或波长范围的至少两个照射束中的至少一个的光学补偿器,以便减少或补偿光学像差。 本发明还涉及用于检测相位板和相位板的设计方法的相应方法。
    • 5. 发明申请
    • DETECTION SYSTEM AND METHOD
    • 检测系统和方法
    • US20100270478A1
    • 2010-10-28
    • US12747522
    • 2008-12-10
    • Reinhold Wimberger-FriedlMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • Reinhold Wimberger-FriedlMarius Iosif BoamfaErik Martinus Hubertus Petrus Van Dijk
    • G01J1/58
    • G01N21/6456
    • A detection system, comprising: a radiation source (24) for providing input radiation; a radiation focusing arrangement (26) for providing the input radiation to an analysis region of a sample (20);—a radiation collection (26) arrangement for collecting output radiation from the analysis region of the sample resulting from interaction of the input radiation with the sample; a radiation detector (28) for detecting the collected output radiation; operating means (40,50,60) for operating the detection device in a first detection mode and a second detection mode, wherein in the first detection mode the analysis has a first size and/or shape and wherein in the second detection mode the analysis region has a second size and/or shape that is different from the first size and/or shape.
    • 一种检测系统,包括:用于提供输入辐射的辐射源(24); 用于将输入辐射提供给样品(20)的分析区域的辐射聚焦装置(26); - 辐射收集(26)装置,用于收集来自所述样品的分析区域的输出辐射,所述分析区域由所述输入辐射与 例子; 用于检测所收集的输出辐射的辐射检测器(28); 用于在第一检测模式和第二检测模式下操作所述检测装置的操作装置(40,50,60),其中在所述第一检测模式中,所述分析具有第一尺寸和/或形状,并且其中在所述第二检测模式中,所述分析 区域具有与第一尺寸和/或形状不同的第二尺寸和/或形状。
    • 10. 发明申请
    • APPARATUS AND METHODS FOR THE PRODUCTION OF ULTRASOUND CONTRAST AGENTS
    • 用于生产超声对比剂的装置和方法
    • US20090130025A1
    • 2009-05-21
    • US11577820
    • 2005-10-25
    • Marcel Rene BohmerReinhold Wimberger-Friedl
    • Marcel Rene BohmerReinhold Wimberger-Friedl
    • A61K49/22
    • B01F3/04439A61K49/223B01F5/0475B01F5/0476
    • Disclosed is a method of making gas bubbles in a liquid, the bubbles having substantially uniform size suitable for responding to ultrasound or other diagnostic tools. Gas (P2) is forced through one or more pores or nozzles, into the liquid (P1), the nozzles or pores being of substantially uniform diameter, the flow of the gas being controlled to thereby cause the formation of substantially monodisperse gas bubbles in the liquid. Moreover, an apparatus is disclosed for making a suspension of gas bubbles in a liquid of a size suitable for responding to ultrasound or other diagnostic tools. Said apparatus comprises means for forcing a gas through an array of nozzles or pores into the liquid, the nozzles or pores being of substantially uniform diameter, and first means for controlling; a flow parameter of the gas so that gas is suspended as substantially monodisperse gas bubbles in the liquid. Furthermore a kit for preparing a dispersion of gas bubbles of substantially uniform size suitable for ultrasound purposes, is disclosed.
    • 公开了一种在液体中制造气泡的方法,气泡具有适合于响应超声波或其它诊断工具的基本均匀的尺寸。 气体(P2)被迫通过一个或多个孔或喷嘴进入液体(P1),喷嘴或孔具有基本上均匀的直径,气体的流动受到控制,从而在该气体中形成基本上单分散的气泡 液体。 此外,公开了一种用于使气泡悬浮在适于响应于超声波或其它诊断工具的尺寸的液体中的装置。 所述设备包括用于迫使气体通过喷嘴或孔阵列进入液体的装置,喷嘴或孔具有基本均匀的直径,以及用于控制的第一装置; 气体的流动参数,使得气体作为基本上单分散的气泡悬浮在液体中。 此外,公开了一种用于制备适合于超声波目的基本均匀尺寸的气泡分散体的试剂盒。