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    • 24. 发明申请
    • IMPROVED SYSTEMS AND METHODS FOR CHIRAL DETECTION AND ANALYSIS
    • 改进的系统和手段检测和分析方法
    • WO2007002182A9
    • 2008-01-17
    • PCT/US2006024123
    • 2006-06-21
    • STHENO CORPGIBBS PHILLIP RWADE JOHN
    • GIBBS PHILLIP RWADE JOHN
    • G01N21/21G01J4/04G01M11/04G01N21/05
    • G01M11/04G01J1/44G01J1/46G01N21/0332G01N21/05G01N21/1717G01N21/21G01N2021/0346G01N2021/1727
    • Relating to chiral detection systems, various improvements are disclosed including an improved apparatus for detecting a chiral property of a sample. It has a rugged and stable optical rail that operates as a heat sink to the systems' elements and comprises a captive guide structure (300) of heat conductive material having an elevated top platform (302) and a dove tailed lip (305) on the sides. The elevated top platform (302) has a substantial width in comparison to a height of the elevated top platform (302). The apparatus further includes a wide base portion (304) of heat conductive material supportive of the captive guide structure (300). The base (304) has a width that is at least twice the width of the elevated top platform (302) and a substantial thickness relative to the captive guide structure (300). Multiple system elements can be securely mounted on the captive guide structure (300) with some elements being in thermal contact with the elevated top platform (302).
    • 关于手性检测系统,公开了各种改进,包括用于检测样品的手性性质的改进的装置。 它具有坚固且稳定的光学导轨,其作为系统元件的散热器而工作,并且包括导热材料的捕获引导结构(300),其具有升高的顶部平台(302)和在其上的鸽子尾部唇缘(305) 两侧。 升高的顶部平台(302)与升高的顶部平台(302)的高度相比具有相当大的宽度。 所述设备还包括支撑所述捕获引导结构(300)的导热材料的宽基部(304)。 基座(304)的宽度至少是升高的顶部平台(302)的宽度的两倍,并且相对于捕获引导结构(300)具有相当大的厚度。 多个系统元件可以牢固地安装在固定引导结构(300)上,其中一些元件与升高的顶部平台(302)热接触。
    • 30. 发明申请
    • LOW THERMAL MASS FLUOROMETER
    • 低热质量FLUOROMETER
    • WO2006085911A2
    • 2006-08-17
    • PCT/US2005019584
    • 2005-06-03
    • UNIV SOUTH FLORIDAFARMER ANDREWFRIES DAVID PFLANERY BILL
    • FARMER ANDREWFRIES DAVID PFLANERY BILL
    • G01J1/58G01N21/03G01N21/64
    • G01N21/645G01N21/0332G01N2201/0221
    • The present invention provides core technologies necessary for a portable, low cost, thermal- regulating LED-based handheld fluorometer. The regulated fluorometer is based on al low thermal mass infrared heater, and an orthogonal geometry LED based filter fluorometer. Power is supplied through an external power supply and data is collected in real-time through standard serial interfaces of personal computers or personal digital assistants. Thermal regulation is automatically maintained using temperature sensor feedback control. Optical excitation relies on LED light source(s) and optical detection is through an adjustable integrating photodetector. Such a handheld system can allow applications requiring temperature sensitive photometric measurements for real time analyte detection to be performed in the field.
    • 本发明提供了便携式,低成本,热调节LED手持式荧光计所需的核心技术。 受控的荧光计基于低热质红外线加热器和基于正交几何结构的基于LED的过滤荧光计。 电源通过外部电源供电,数据通过个人电脑或个人数字助理的标准串行接口实时采集。 温度传感器反馈控制自动保持温度调节。 光学激励依赖于LED光源,而光学检测则通过可调整的积分光电探测器。 这种手持式系统可以允许在现场进行实时分析物检测的需要温度敏感的光度测量的应用。