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    • 4. 发明申请
    • Spectral calibration method and system for multiple instruments
    • 多种仪器的光谱校准方法和系统
    • US20060138344A1
    • 2006-06-29
    • US11286071
    • 2005-11-23
    • Stephen GunstreamMark Oldham
    • Stephen GunstreamMark Oldham
    • G01N21/64
    • G01J1/58G01N21/278G01N21/6452Y10T436/10Y10T436/11Y10T436/112499Y10T436/113332
    • Implementations of the present invention describe an apparatus for generating calibration factors for a spectral detector instrument. The calibration factors are derived from a calibration plate containing one or more spectral species in each well of the calibration plate. Each well is then exposed to an excitation source that causes the one or more spectral species in each of the wells to fluoresce. The signal response is measured and associated with each spectral species at each different well position in the calibration plate. Next, the measured signal response from each spectral species at each well position in the calibration plate is compared with a predetermined signal response for each spectral species. The results of this comparison can be used to determine a calibration factor for each well and spectral species to compensate for the difference between the measured signal response and the predetermined signal response.
    • 本发明的实施方式描述了一种用于产生光谱检测器仪器的校准因子的装置。 校准因子来源于校准板的每个孔中含有一个或多个光谱种​​类的校准板。 然后将每个孔暴露于激发源,使得每个孔中的一个或多个光谱物质发荧光。 测量信号响应并与校准板中每个不同孔位置处的每个光谱种类相关联。 接下来,将来自校准板中每个孔位置处的每个光谱种类的测量信号响应与每个光谱种类的预定信号响应进行比较。 该比较的结果可用于确定每个孔和光谱种类的校准因子,以补偿测量的信号响应与预定信号响应之间的差异。
    • 8. 发明申请
    • Method of extracting intensity data from digitized image
    • 从数字化图像中提取强度数据的方法
    • US20060291706A1
    • 2006-12-28
    • US11166957
    • 2005-06-23
    • Stephen GunstreamPatrick Kinney
    • Stephen GunstreamPatrick Kinney
    • G06K9/00G06K9/40
    • G06T5/003G01N21/253G01N21/6452G01N21/6456G06T2207/20224G06T2207/30072
    • A method for reducing optical crosstalk in an optical array detector is provided. In various embodiments, the method can include measuring optical emission within a first region of interest (ROI) using a first plurality of pixels of the optical array detector, wherein each of the first plurality of pixels provides a value for optical signal intensity within the first ROI. An ROI sum signal can then be calculated by summing the values for optical signal intensity measured by the first plurality of pixels. An optical emission within a second ROI can be measured using a second plurality of pixels of the optical array detector, wherein each of the second plurality of pixels provides a value for optical signal intensity within the second ROI. The values for optical signal intensity provided by the second plurality of pixels can be algebraically manipulated to determine an optical crosstalk signal. A corrected ROI optical signal intensity can then be determined by multiplying the optical crosstalk signal by a number of pixels of the first plurality of pixels and subtracting the multiplied optical crosstalk signal from the ROI sum signal.
    • 提供了一种用于减少光学阵列检测器中的光学串扰的方法。 在各种实施例中,该方法可以包括使用光学阵列检测器的第一多个像素测量第一感兴趣区域(ROI)内的光发射,其中第一多个像素中的每一个为第一多个像素内的光信号强度提供值 投资回报率 然后可以通过对由第一多个像素测量的光信号强度的值相加来计算ROI和信号。 可以使用光学阵列检测器的第二多个像素来测量第二ROI内的光发射,其中第二多个像素中的每一个为第二ROI内的光信号强度提供一个值。 可以代数地操作由第二多个像素提供的光信号强度的值以确定光串扰信号。 然后可以通过将光学串扰信号乘以第一多个像素的像素数量并从ROI和信号中减去相乘的光学串扰信号来确定校正的ROI光信号强度。