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    • 2. 发明授权
    • Ex vivo antimicrobial devices and methods
    • 离体抗菌装置及方法
    • US08609036B2
    • 2013-12-17
    • US12005649
    • 2007-12-27
    • Thomas A. FullerRichard A. WyskWayne J. SebastianelliPaul H. CohenRobert C. Voigt
    • Thomas A. FullerRichard A. WyskWayne J. SebastianelliPaul H. CohenRobert C. Voigt
    • A61L2/00
    • A61L2/03A61L2/14A61L2/238E05B1/0069H01J27/022H01J27/22H01J27/26
    • A method and device for destroying and inhibiting exposure to microbes and infection includes a first element and a second element, and a power source. At least one of the elements includes antimicrobial metal, which, when energized by the power source, produces ions that are lethal to microbes. The device can be incorporated into virtually any useful object. During normal use of the object, electrical communication is established between the two elements, causing current supplied from the power source to flow through the antimicrobial metal. The two elements are configured and arranged to ensure that ions flowing from the antimicrobial metal flow through the region in which it is desired to kill microbes. The antimicrobial metal can be on the surface of the element, incorporated into the material making up the element, or provided in any other way that allows the antimicrobial effect to be achieved.
    • 用于破坏和抑制暴露于微生物和感染的方法和装置包括第一元件和第二元件以及电源。 至少一个元件包括抗微生物金属,当被电源激励时,其产生对微生物致死的离子。 该装置可以并入实际上任何有用的对象。 在物体的正常使用期间,在两个元件之间建立电连通,导致从电源供应的电流流过抗微生物金属。 两个元件被配置和布置成确保从抗微生物金属流出的离子流过希望杀死微生物的区域。 抗微生物金属可以在元件的表面上,并入构成元件的材料中,或以允许实现抗微生物效果的任何其它方式提供。