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    • 1. 发明申请
    • MERCURY UV LAMP WITH IMPROVED ACTINIC SPECTRUM
    • MERCURY紫外灯具有改进的ACTINIC SPECTRUM
    • US20120319011A1
    • 2012-12-20
    • US13525533
    • 2012-06-18
    • Dale E. BrabhamHolger ClausPhilip Snapp
    • Dale E. BrabhamHolger ClausPhilip Snapp
    • C02F1/32H01J61/44
    • C02F1/325C02F2101/38C02F2201/3227C09K11/7777H01J61/44
    • A low-pressure mercury or amalgam lamp with praseodymium (Pr) doped particles of lanthanum phosphate converts 185 nm radiation to UV-C (186 nm-280 nm). For water purification, a plurality of low-pressure mercury or amalgam lamps with phosphor that convert 185 nm radiation to UV-C (186 nm-280 nm) may be used. A method for photolysis of nitroso dimethyl amine (NDMA) may include passing electrical current through a low pressure mercury or amalgam lamp, radiating 254 nm radiation through the lamp envelope into water containing the NDMA, converting 185 nm radiation within the lamp into 230 nm-240 nm radiation within the lamp via a phosphor within the lamp, and radiating the 230-240 nm radiation through the lamp envelope and into the water containing the NDMA, with the radiation from the lamp photolysizing the NDMA.
    • 具有镨(Pr)掺杂磷酸镧颗粒的低压汞或汞齐灯将185nm辐射转化为UV-C(186nm-280nm)。 对于水净化,可以使用具有将185nm辐射转换成UV-C(186nm-280nm)的荧光体的多个低压汞或汞齐灯。 亚硝基二甲胺(NDMA)的光解方法可能包括使电流通过低压汞或汞齐灯,将254纳米的辐射通过灯泡辐射到含有NDMA的水中,将灯内的185纳米的辐射转化为230纳米, 通过灯内的磷光体在灯内240nm的辐射,并且通过灯壳辐射230-240nm的辐射并进入含有NDMA的水中,来自灯的辐射使NDMA光泽化。
    • 9. 发明授权
    • Medical tracking system with universal interface
    • 具有通用接口的医疗跟踪系统
    • US07993353B2
    • 2011-08-09
    • US10447458
    • 2003-05-29
    • Holger-Claus RoβnerFrank ReimoldRobert SchmidtRainer Birkenbach
    • Holger-Claus RoβnerFrank ReimoldRobert SchmidtRainer Birkenbach
    • A61B19/00A61F2/38
    • A61B90/39A61B90/50A61B2017/00455A61B2090/3983A61B2090/571G06F19/00
    • An improved marker system, components and method for use with a medical navigation system, wherein the marker system includes interchangeable tracking marker holders and fastener bases for attaching the marker holders to instruments or body parts that are to be tracked during a medical procedure. A reference star (the marker holder and tracking marker(s)) and fastener base are removably attached to one another. This enables different reference stars to be interchangeably attached to a given fastener base, or vice versa, thereby to provide the best combination of reference star and fastener base for a given application. This preferably is accomplished by a standard interface between the fastener base and the holder for the tracking markers, e.g., reflective markers. In addition, surgical instruments may have integrally formed therein the standard interface, thereby eliminating the need for a fastener base.
    • 一种改进的标记系统,用于医疗导航系统的组件和方法,其中所述标记系统包括可互换的跟踪标记保持器和用于将标记器支架附接到在医疗过程期间被跟踪的器械或身体部位的紧固件基座。 参考星(标记支架和跟踪标记)和紧固件基座可拆卸地相互连接。 这使得不同的参考星可以互换地连接到给定的紧固件基座,反之亦然,从而为给定的应用提供参考星和紧固件基座的最佳组合。 这优选地通过用于跟踪标记的紧固件基座和保持器之间的标准界面来实现,例如反射标记。 此外,手术器械可以在其中一体形成标准界面,从而消除对紧固件基座的需要。