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    • 86. 发明授权
    • Animal barrier for vehicles
    • 车辆动物屏障
    • US08534734B2
    • 2013-09-17
    • US13384665
    • 2010-07-21
    • Michael ReedMartyn Philip Oxby
    • Michael ReedMartyn Philip Oxby
    • B60R21/02
    • B60R21/026A01K1/0272
    • An animal barrier for use in a vehicle is formed by a frame having an opening therein, and partition members mounted to the frame. First and second partition members are spaced apart to define the opening therebetween and are moveable relative to the frame so as to vary the width of the barrier and the width of the opening. A third partition member is slidably mounted to the frame so as to be moveable between a closed position in which it overlies the opening so as to substantially close the opening, and an open position in which is removed from the opening. In the open position, the third partition member may be located to one side of the opening, overlapping one of the first and second partition members or may be located above or below the opening, away from the first and second partition members.
    • 用于车辆的动物屏障由其中具有开口的框架和安装到框架上的分隔构件形成。 第一和第二分隔构件间隔开以限定它们之间的开口,并且可相对于框架移动,以便改变屏障的宽度和开口的宽度。 第三分隔构件可滑动地安装到框架上,以便能够在关闭位置之间移动,在该关闭位置,其位于开口之间,以便基本上封闭开口,以及从开口移除的打开位置。 在打开位置,第三分隔构件可以位于开口的一侧,与第一和第二分隔构件中的一个重叠,或者可以位于开口的上方或下方,远离第一和第二分隔构件。
    • 88. 发明授权
    • Method for loading nanoporous layers with therapeutic agent
    • 用治疗剂负载纳米多孔层的方法
    • US08124166B2
    • 2012-02-28
    • US12660282
    • 2010-02-23
    • Gary OwensBrian WamhoffMatthew S. HudsonWhye-Kei LyeJoshua SpradlinMichael ReedKareen Looi
    • Gary OwensBrian WamhoffMatthew S. HudsonWhye-Kei LyeJoshua SpradlinMichael ReedKareen Looi
    • A61L33/00
    • A61L31/022A61F2/07A61F2/91A61F2/915A61F2002/91541A61F2210/0076A61F2250/0067A61L31/10A61L31/146A61L31/16A61L31/18A61L2300/606A61L2400/12A61N1/05
    • The present invention relates generally to medical devices with therapy eluting components and methods for making same. More specifically, the invention relates to implantable medical devices having at least one porous layer, and methods for making such devices, and loading such devices with therapeutic agents. A mixture or alloy is placed on the surface of a medical device, then one component of the mixture or alloy is generally removed without generally removing the other components of the mixture or alloy. In some embodiments, a porous layer is adapted for bonding non-metallic coating, including drug eluting polymeric coatings. A porous layer may have a random pore structure or an oriented or directional grain porous structure. One embodiment of the invention relates to medical devices, including vascular stents, having at least one porous layer adapted to resist stenosis or cellular proliferation without requiring elution of therapeutic agents. The invention also includes methods, devices, and specifications for loading of drugs and other therapeutic agents into nanoporous coatings.
    • 本发明一般涉及具有治疗洗脱组分的医疗装置及其制备方法。 更具体地,本发明涉及具有至少一个多孔层的可植入医疗装置,以及用于制造这种装置的方法,以及用治疗剂加载这些装置。 将混合物或合金放置在医疗装置的表面上,然后通常除去混合物或合金的一种组分,而不会通常除去混合物或合金的其它组分。 在一些实施例中,多孔层适于粘合非金属涂层,包括药物洗脱的聚合物涂层。 多孔层可以具有无规孔结构或定向或定向颗粒多孔结构。 本发明的一个实施方案涉及包括血管支架的医疗装置,其具有适于抵抗狭窄或细胞增殖的至少一个多孔层,而不需要洗脱治疗剂。 本发明还包括将药物和其它治疗剂装载到纳米多孔涂层中的方法,装置和规格。
    • 90. 发明申请
    • APPARATUS AND SYSTEM FOR AUTOMATED PIPELINE TESTING
    • 自动管道测试装置和系统
    • US20110238347A1
    • 2011-09-29
    • US13053970
    • 2011-03-22
    • Karl Bernhard GemperliJames Rutledge HillearyMichael Reed
    • Karl Bernhard GemperliJames Rutledge HillearyMichael Reed
    • G06F19/00
    • C23F13/04C23F13/22C23F2213/32
    • A cathodic protection system comprising remote test units for measuring various voltages and currents at remote locations on a cathodically-protected pipeline. The remote test units may comprise a processor configured to store measurements taken with the voltmeter and a wireless transceiver for communicating with other test units and/or a Web server or host computer in a daisy-chain or mesh radio configuration. The remote test units may comprise an instant-off switch which electrically connects the pipeline with a buried protected coupon of the same material as the pipeline, and a voltmeter configured to measure the instant-off potential of the protected coupon when the switch is opened. The test units may also comprise a millivoltmeter configured to measure a voltage across a critical bond current shunt resistor and an ammeter configured to measure AC and DC current flowing between the pipeline and the protected coupon with the instant-off switch is closed.
    • 一种阴极保护系统,包括用于测量阴极保护管线上远程位置的各种电压和电流的远程测试单元。 远程测试单元可以包括处理器,其被配置为存储使用电压表进行的测量,以及无线收发器,用于以菊花链或网状无线电配置与其他测试单元和/或Web服务器或主计算机进行通信。 远程测试单元可以包括瞬时切换开关,其将管道电连接到与管道相同材料的埋入的受保护的优惠券;以及电压表,被配置为当开关打开时测量受保护优惠券的瞬时电势。 测试单元还可以包括毫伏表,其被配置为测量临界键合电流分流电阻器两端的电压,以及被配置为测量在瞬时断开开关闭合时在流水线和被保护的优惠券之间流动的AC和DC电流的电流表。