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    • 4. 发明申请
    • OPTICAL DETECTOR FOR A PARTICLE SORTING SYSTEM
    • 用于颗粒分选系统的光学检测器
    • WO2005017969A2
    • 2005-02-24
    • PCT/US2004/026467
    • 2004-08-16
    • CYTONOME, INC.GILBERT, John, R.SINOFSKY, Ed.DESHPANDE, Manish
    • GILBERT, John, R.SINOFSKY, Ed.DESHPANDE, Manish
    • H01L
    • G01N15/1434G01N15/1459G01N15/1484G01N21/6452G01N2015/1081
    • An optical system for acquiring fast spectra from spatially channel arrays includes a light source for producing a light beam that passes through the microfluidic chip or the channel to be monitored, one or more lenses or optical fibers for capturing the light from the light source after interaction with the particles or chemicals in the microfluidic channels, and one or more detectors. The detectors, which may include light amplifying elements, detect each light signal and transducer the light signal into an electronic signal. The electronic signals, each representing the intensity of an optical signal, pass from each detector to an electronic data acquisition system for analysis. The light amplifying element or elements may comprise an array of phototubes, a multianode phototube, or a multichannel plate based image intensifier coupled to an array of photodiode detectors.
    • 用于从空间通道阵列获取快速光谱的光学系统包括用于产生穿过微流体芯片或待监测通道的光束的光源,用于在相互作用之后捕获来自光源的光的一个或多个透镜或光纤 微流体通道中的颗粒或化学物质,以及一个或多个检测器。 可以包括光放大元件的检测器检测每个光信号并将光信号转换成电子信号。 每个表示光信号强度的电子信号从每个检测器传递到电子数据采集系统进行分析。 光放大元件可以包括耦合到光电二极管检测器阵列的光管阵列,多子光电管或基于多通道板的图像增强器。
    • 10. 发明申请
    • MICROFLUIDIC CHIP FOR BIOMOLECULE CRYSTALLIZATION
    • 用于生物分子结晶的微流控芯片
    • WO2004023106A1
    • 2004-03-18
    • PCT/US2003/028513
    • 2003-09-09
    • CYTONOME, INC.
    • GILBERT, John, R.TRIKHA, Jaishree
    • G01N1/00
    • B01D61/243B01D61/28B01D63/087B01D63/088B01L3/06B01L3/5027B01L2300/0681C30B7/00C30B29/58
    • A system for crystallizing a protein and other biomolecules, the general scheme of which is represented in Figure 1, comprises a flow channel (12) for conveying a solution containing the biomolecule to be crystallized and one or more substations (40, 50, 60, 70) related to the crystallization process formed along the flow channel. The system operates by flowing a biomolecule solution through the flow channel (12), then performing dialysis on a micro-scale to set crystallization conditions. After dialysis, the concentration of the biomolecule solution is changed by removing water or solvent from the biomolecule solution to promote formation of crystals in a segment of the flow channel. Formed crystals may be observed and harvested from the flow channel.
    • 用于结晶蛋白质和其它生物分子的系统(其一般方案如图1所示)包括用于输送含有待结晶的生物分子的溶液的流动通道(12)和一个或多个变电站(40,50,60, 70)与沿着流动通道形成的结晶过程相关。 该系统通过使生物分子溶液流过流动通道(12),然后在微量级上进行透析以设定结晶条件来操作。 透析后,通过从生物分子溶液中除去水或溶剂来改变生物分子溶液的浓度,以促进在流动通道的段中形成晶体。 可以从流动通道观察并收获形成的晶体。