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    • 3. 发明申请
    • METHOD AND DEVICE FOR MEASURING PHOTOLUMINESCENCE, ABSORPTION AND DIFFRACTION OF MICROSCOPIC OBJECTS IN A FLUID
    • 用于测量流体中微观对象的光致发光,吸收和衍射的方法和装置
    • US20090059207A1
    • 2009-03-05
    • US12281906
    • 2007-03-02
    • Philippe NerinBenoit MerchezJean-Philippe GineysDidier Lefevre
    • Philippe NerinBenoit MerchezJean-Philippe GineysDidier Lefevre
    • G01N21/62
    • G01N15/1434G01N15/1427G01N15/1459G01N2015/1486
    • The invention relates to a device and to a method for measuring photoluminescence in a fluid present in a measurement vessel. According to the invention, the fluid in the measurement vessel simultaneously receives at least two excitation beams coming from two optical systems. The optical systems are positioned so that their axes form between them a non-zero obtuse angle other than 180° around the measurement vessel. A measurement of light emission is deduced according to the invention from coupling data obtained from emission beams picked up simultaneously by the pickup elements. The optical systems are also positioned in such a manner that there exists at least one partial overlap beam between the excitation beam from the source of a first optical system and the emission beam picked up by the pickup element of a second optical system. The device is also provided with at least one extinction pickup element in the vicinity of at least one of the sources for picking up light at the excitation wavelength in the partial overlap beam, a measurement of absorbance and/or diffraction being deduced from data obtained from the light picked up by the extinction pickup element.
    • 本发明涉及一种用于测量存在于测量容器中的流体中的光致发光的装置和方法。 根据本发明,测量容器中的流体同时接收来自两个光学系统的至少两个激发光束。 光学系统被定位成使得它们的轴线在它们之间形成围绕测量容器的180°以外的非零钝角。 根据本发明,从由拾取元件同时拾取的发射光束获得的耦合数据推导出发光测量。 光学系统也被定位成使得在来自第一光学系统的光源的激发光束和由第二光学系统的拾取元件拾取的发射光束之间存在至少一个部分重叠光束。 该装置还在至少一个源附近设置有至少一个消光拾取元件,用于拾取部分重叠光束中的激发波长的光,从根据以下方面获得的数据推导出吸光度和/或衍射的测量值: 被灭光元件拾取的光线。
    • 4. 发明授权
    • Device for the optical inspection of a fluid, especially for
hematological analyses
    • 用于光学检查流体的装置,特别是用于血液分析
    • US5730941A
    • 1998-03-24
    • US653325
    • 1996-05-24
    • Didier LefevreBernard Kress
    • Didier LefevreBernard Kress
    • G01N21/64G01N15/14G01N21/47G01N33/49
    • G01N15/14
    • It includes a measuring space (8) comprising a constrained passage (15) for the fluid, a monochromatic light source (31) delivering a beam (F1) to optical elements (6, 32, 34) including a first diffractive optical element (32) having a diffractive network (38) predetermined as a function, on the one hand, of the characteristics of the source and, on the other hand, of chosen geometrical and spectral characteristics for the illumination of the constrained passage, and suitable for inducing fluorescence of at least part of the fluid, and first (19-20), second (34-36) and third (40) optoelectronic elements intended to collect, respectively, a transmitted beam, fluorescence and a diffracted beam, and suitable for delivering to an analysis unit (24) signals relating to the contents of the beams. At least one of the beams emanates from a second diffractive optical element (42) having a second diffractive optical network which is predetermined as a function of a frequential and geometrical transfer function of at least one of the optoelectronic elements.
    • 它包括测量空间(8),其包括用于流体的约束通道(15),将光束(F1)传送到包括第一衍射光学元件(32,32)的光学元件(6,32,34)的单色光源(31) )具有作为功能的预定的衍射网络(38),一方面是源的特性,另一方面,对于受限通道的照明的选择的几何和光谱特性,并且适于诱导荧光 至少部分流体和第一(19-20),第二(34-36)和第三(40)光电子元件,分别收集透射束,荧光和衍射光束,并且适于传送到 分析单元(24)与波束的内容有关的信号。 至少一个光束从具有第二衍射光网络的第二衍射光学元件(42)发出,该第二衍射光学网络被预定为至少一个光电元件的频率和几何传递函数的函数。
    • 5. 发明授权
    • Device and method for multiparametric analysis of microscopic elements
    • 显微元件多参数分析的装置和方法
    • US07777869B2
    • 2010-08-17
    • US11912055
    • 2006-04-14
    • Philippe NerinDidier Lefevre
    • Philippe NerinDidier Lefevre
    • G01N33/48
    • G01N21/6428G01N15/1434G01N15/147G01N2015/1477G01N2015/1486G01N2015/149G01N2015/1493G01N2021/6419G01N2021/6421
    • The invention concerns a device (DA) for analyzing microscopic elements, comprising firstly a measuring space (CM) for microscopic elements to be analyzed, secondly at least one source (S) delivering conjugated rays at the measuring space (CM), having at least two different analyzing wavelengths and designed to interact with the microscopic elements in the measuring space (CM) to form interacting rays, thirdly coding means (M) for encoding the rays upstream of the measuring space (CM) with different codes, fourthly optical filtering means (FO) for selectively filtering the interacting rays of fluorescence and/or diffusion depending on their wavelength, fifthly detecting means (DE, DF) for transforming into electric signals part at least of the interacting rays from the measuring space (CM), and sixthly analyzing means (MA) including decoding means (DRE, DRF) for decoding the electric signals to enable data representing the analyzed microscopic elements to be determined.
    • 本发明涉及一种用于分析微观元素的装置(DA),其首先包括用于要分析的微观元素的测量空间(CM),其次,在测量空间(CM)处传送共轭射线的至少一个源(S),至少具有 两个不同的分析波长,并设计成与测量空间(CM)中的微观元件相互作用以形成相互作用的射线;第三编码装置(M),用于以不同的代码编码测量空间(CM)上游的光线;第四,光学滤波装置 (FO),用于根据其波长选择性地过滤荧光和/或扩散的相互作用的光线;第五检测装置(DE,DF),用于将来自测量空间(CM)的至少相互作用的光线部分转换成电信号;以及第六 分析装置(MA),包括用于解码电信号的解码装置(DRE,DRF),以使得能够确定表示所分析的微观元素的数据。