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    • 8. 发明申请
    • METHOD FOR THE QUANTITATIVE MEASUREMENT OF BIOMOLECULAR TARGETS DEPOSITED ON A BIOCHIP, AND DEVICE FOR IMPLEMENTING IT
    • 生物分子量目标定量测定方法,以及生物分子实验装置
    • US20100022400A1
    • 2010-01-28
    • US12441225
    • 2007-09-14
    • Nicolas UgolinDenis MenutJulien Le MeurPascal WodlingSylvie Chevillard
    • Nicolas UgolinDenis MenutJulien Le MeurPascal WodlingSylvie Chevillard
    • C40B30/00C40B60/12
    • G01N21/718B33Y80/00
    • The present invention relates in particular to a method for the quantitative measurement of biomolecular targets that have been deposited on a biochip (1) of the type with a matrix of probes hybridized by the targets, the matrix comprising a multitude of measurement points (2) each comprising a plurality of probes, characterized in that it comprises the following steps: a) at least one laser beam (18) is focused onto each measurement point, in order to extract therefrom a hot confined plasma comprising a chemical element to be quantified that is present in the targets and optionally in the probes; b) the light emission lines from the plasma are detected and analysed for each measurement point, by measuring the respective intensities of these lines; and then c) the concentration in each measurement point of the element or of a group incorporating it within the targets is determined via a prior calibration of the lines establishing a correlation between the intensities of the lines specific to the element to be quantified and given concentrations of this element.
    • 本发明特别涉及一种用于定量测量生物分子靶标的方法,该方法已经沉积在具有由靶标杂交的探针基质的类型的生物芯片(1)上,该基质包含多个测量点(2) 每个包括多个探针,其特征在于,其包括以下步骤:a)至少一个激光束(18)聚焦到每个测量点上,以便从其中提取包含要量化的化学元素的热限制等离子体, 存在于目标物中,任选地存在于探针中; b)通过测量这些线的相应强度,对每个测量点检测和分析来自等离子体的发光线; 然后c)通过先前校准线确定要量化的元素和给定浓度的特异性线之间的相关性来确定元件或其中包含在靶中的组的每个测量点中的浓度 的元素。
    • 10. 发明授权
    • Method and device for high speed quantitative measurement of biomolecular targets on or in biological analysis medium
    • 在生物分析培养基中或生物分析培养基中高速定量测定生物分子靶标的方法和装置
    • US08675192B2
    • 2014-03-18
    • US12933350
    • 2009-03-20
    • Nicolas UgolinDenis MenutJulien Le MeurNadine CoulonSylvie ChevillardEmilie BoscJean-Marc Joseph Desaulniers
    • Nicolas UgolinDenis MenutJulien Le MeurNadine CoulonSylvie ChevillardEmilie BoscJean-Marc Joseph Desaulniers
    • G01J3/30
    • G01N21/718G01N21/6452
    • The present invention relates to a device and method for the high speed quantitative measurement of biomolecular targets on the surface or in the body of a planar medium for biological analysis. The method, according to the invention, includes the following, steps: a) at least two laser beams (F″) are focused and overlaid on each measuring point of said medium by the simultaneous intersection of these beams to extract a contained hot plasma (P), including a measured chemical element present in the targets and another chemical element exogenous to the targets and present in a known quantity on this medium; b) luminous emission rays for each plasma, corresponding to the quantified element and exogenous element, are detected and analyzed for each measuring point while measuring the brightness of these rays; then c) the concentration in each measuring point of the quantified element is determined through prior calibration of the rays of the qualified element to determine a correlation between the brightness of the rays, specific to said element, and the concentrations of the latter in mixtures of the quantified element and exogenous element in known proportions.
    • 本发明涉及用于生物分析的平面介质的表面或体内的生物分子靶的高速定量测定的装置和方法。 根据本发明的方法包括以下步骤:a)至少两个激光束(F“)通过这些光束的同时交叉来聚焦并重叠在所述介质的每个测量点上以提取所含的热等离子体 (P),包括目标中存在的测量化学元素和另外一种对目标外源的化学元素,并以该已知量存在于该介质上; b)在测量这些光线的亮度的同时,对每个测量点检测并分析对应于量化元素和外源元素的每个等离子体的发光射线; 然后c)通过先前校准合格元素的射线来确定量化元件的每个测量点中的浓度,以确定特定于所述元素的射线的亮度与后者的亮度之间的相关性, 已知比例的量化元素和外源元素。