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    • 1. 发明申请
    • LUMINESCENCE SENSOR OPERATING IN REFLECTION MODE
    • 在反射模式下操作的发光传感器
    • WO2007072415A3
    • 2007-10-11
    • PCT/IB2006054940
    • 2006-12-19
    • KONINKL PHILIPS ELECTRONICS NVVAN HERPEN MAARTEN M J WKLUNDER DERK J WSTAPERT HENDRIK R
    • VAN HERPEN MAARTEN M J WKLUNDER DERK J WSTAPERT HENDRIK R
    • G01N21/63
    • G01N21/648G01N21/6428
    • The present invention relates to a luminescence sensor (10), such as a luminescence biosensor or a luminescence chemical sensor, comprising at least one aperture (1) having a first lateral dimension larger than the diffraction limit of excitation radiation (3) in a medium the at least one aperture (1) is filled with and a second lateral dimension below the diffraction limit of excitation radiation (3) in a medium the at least one aperture (1) is filled with. The invention furthermore relates to a method for the detection of luminescence radiation (5), e.g. fluorescence radiation, generated by at least one optically variable molecule (2), e.g. fluorophore, in the at least one aperture (1). The excitation radiation (3) is preferably polarised to suppress the excitation radiation (3) in the apertures (1). The luminescence sensor (10) according to the present invention is able to detect relatively low concentrations of optically variable molecules (2), e.g. fluorophores.
    • 本发明涉及一种发光传感器(10),例如发光生物传感器或发光化学传感器,其包括至少一个孔(1),其具有比介质中的激发辐射(3)的衍射极限大的第一横向尺寸 所述至少一个孔(1)在所述至少一个孔(1)填充的介质中填充有低于激发辐射(3)的衍射极限的第二横向尺寸。 本发明还涉及用于检测发光辐射(5)的方法,例如, 由至少一个光学可变分子(2)产生的荧光辐射,例如。 在所述至少一个孔(1)中的荧光团。 激发辐射(3)优选地被极化以抑制孔(1)中的激发辐射(3)。 根据本发明的发光传感器(10)能够检测相对低浓度的光学可变分子(2),例如, 荧光团。
    • 5. 发明申请
    • METHODS AND SYSTEMS FOR DETECTION WITH FRONT IRRADIATION
    • 用于检测前辐照的方法和系统
    • WO2008041190A3
    • 2008-07-03
    • PCT/IB2007054022
    • 2007-10-03
    • KONINKL PHILIPS ELECTRONICS NVJOHNSON MARK TPONJEE MARC W GBALISTRERI MARCELLO L MVAN HERPEN MAARTEN M J WKLUNDER DERK J W
    • JOHNSON MARK TPONJEE MARC W GBALISTRERI MARCELLO L MVAN HERPEN MAARTEN M J WKLUNDER DERK J W
    • G01N21/64B01L3/00
    • G01N21/6428B01L3/5027G01N21/6454
    • A radiation detection system (100) is described comprising a measurement region (104) in a measurement chamber adapted for receiving at least one sample (108) to be examined and adapted for receiving excitation radiation for impingement on the at least one sample (108) and for generating sample radiation. The radiation detection system (100) furthermore comprises at least one detector element (106) for detection of the generated sample radiation. The radiation detection system thereby is a front irradiation system, i.e. the excitation radiation is incident on a first side of the measurement region (104) in a measurement chamber and the at least one detector element (106) is positioned at a second side of the measurement region (104) in a measurement chamber, the second side being opposite to the first side with respect to the measurement region (104) in a measurement chamber, such that detection occurs at the side facing the first side. The detection system (100) also comprises optical means (112) adapted for guiding said excitation radiation aside the at least one detector element (106).
    • 描述了包括测量室中的测量区域(104)的辐射检测系统(100),所述测量室适于接收待检查的至少一个样本(108)并且适于接收用于撞击所述至​​少一个样本(108)的激发辐射, 并用于产生样品辐射。 辐射探测系统(100)还包括用于探测所产生的样本辐射的至少一个探测器元件(106)。 由此辐射检测系统是前照射系统,即激发辐射入射到测量室中的测量区域(104)的第一侧上,并且至少一个检测器元件(106)定位在测量室的第二侧 测量室中的测量区域(104),第二侧相对于测量室中的测量区域(104)与第一侧相对,使得检测发生在面向第一侧的一侧。 检测系统(100)还包括适于将所述激发辐射引导到所述至少一个检测器元件(106)旁边的光学装置(112)。