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    • 1. 发明申请
    • Biopsy Probe With Hypodermic Lumen
    • 活检探针与皮下注射液
    • US20090216151A1
    • 2009-08-27
    • US12038180
    • 2008-02-27
    • Trevor W. V. SpeegLee E. ReichelJessica P. LeimbachMichael Johnson
    • Trevor W. V. SpeegLee E. ReichelJessica P. LeimbachMichael Johnson
    • A61B10/02
    • A61B10/0275A61B17/3417A61M25/0026
    • A biopsy probe includes a body portion, a cannula, a tip, and a cutter. The cannula extends relative to the body portion. The cannula has a first lumen configured to receive a cutter and a transverse aperture configured to receive tissue. The cutter is disposed in the first lumen of the cannula, and is configured to translate relative to the cannula. The tip is located on the distal end of the cannula. An opening is formed through the tip. A second lumen extends through the cannula, and is in fluid communication with the opening formed in the tip. Substances or liquids such as medicine may be dispensed to a biopsy site or other location within the body of a patient via the second lumen and the opening in the tip. The second lumen may be fluidly isolated from the first lumen and any other lumen in the cannula.
    • 活检探针包括主体部分,套管,尖端和切割器。 套管相对于主体部分延伸。 插管具有构造成接收切割器的第一腔和被配置为接收组织的横向孔。 切割器设置在套管的第一内腔中,并且被配置为相对于插管平移。 尖端位于套管的远端。 通过尖端形成开口。 第二腔延伸穿过套管,并且与形成在尖端中的开口流体连通。 诸如药物的物质或液体可以经由第二腔和尖端中的开口分配到患者体内的活检部位或其他位置。 第二腔可以与第一腔和插管中的任何其它内腔流体隔离。
    • 6. 发明申请
    • FUNCTIONALLY GRADIENT COMPOSITE ARTICLE
    • 功能梯度复合材料
    • US20150065401A1
    • 2015-03-05
    • US14538427
    • 2014-11-11
    • Zhiyue XuMichael Johnson
    • Zhiyue XuMichael Johnson
    • C09K8/80
    • C09K8/805E21B41/00Y10T428/24942Y10T428/24992
    • A composite downhole article is disclosed. The article is selectively corrodible in a wellbore fluid. The article includes at least one corrodible core member comprising a metallic first material that is corrodible in a wellbore fluid at a first corrosion rate. The article also includes at least one outer member disposed on the core member and comprising a second material that is corrodible in the wellbore fluid at a second corrosion rate, wherein the corrodible core member has a composition gradient or a density gradient, or a combination thereof, and wherein the first corrosion rate is substantially greater than the second corrosion rate.
    • 公开了复合井下制品。 该物品在井眼流体中选择性腐蚀。 该制品包括至少一个可腐蚀的芯构件,其包括以第一腐蚀速率在井眼流体中被腐蚀的金属第一材料。 所述制品还包括设置在所述芯构件上的至少一个外部构件,并且包括在所述井眼流体中以第二腐蚀速率被腐蚀的第二材料,其中所述可腐蚀的芯构件具有组成梯度或密度梯度,或其组合 ,并且其中所述第一腐蚀速率基本上大于所述第二腐蚀速率。
    • 10. 发明申请
    • POLYMER NANOCOMPOSITE, PROCESS FOR MAKING AND USE OF SAME
    • 聚合物纳米复合物,其制备和使用的方法
    • US20140027116A1
    • 2014-01-30
    • US13561314
    • 2012-07-30
    • Radhika SureshMichael JohnsonSoma ChakrabortyDonald Horner
    • Radhika SureshMichael JohnsonSoma ChakrabortyDonald Horner
    • C09K8/56E21B33/13
    • C09K8/56C09K2208/10E21B33/13
    • A process for stabilizing particles includes disposing reactive nanoparticles in a borehole; contacting the reactive nanoparticles with a resin; introducing a curing agent; and curing the resin and reactive nanoparticles with the curing agent to form a nanocomposite, wherein, during curing, the nanocomposite is bonded to the particles to stabilize the particles. A process for consolidating particles includes coating the particles with a resin; introducing reactive nanoparticles; curing the resin and reactive nanoparticles with a curing agent to form a nanocomposite which is bonded to the particles; and controlling a rate of the curing by an amount of the curing agent which is present with the resin, wherein the nanocomposite bonded to the particles is thermally stable up to at least 600° F. (315° C.). A system comprises a resin; reactive nanoparticles; a curing agent to form a nanocomposite; and particles disposed in a downhole location to which the nanocomposite binds.
    • 用于稳定颗粒的方法包括将反应性纳米颗粒设置在钻孔中; 使反应性纳米粒子与树脂接触; 引入固化剂; 并用固化剂固化树脂和活性纳米颗粒以形成纳米复合材料,其中在固化过程中,将纳米复合材料结合到颗粒上以稳定颗粒。 固结颗粒的方法包括用树脂涂覆颗粒; 引入反应性纳米粒子; 用固化剂固化树脂和反应性纳米颗粒以形成结合到颗粒的纳米复合材料; 并且通过树脂存在的固化剂的量控制固化速率,其中结合到颗粒的纳米复合材料在至少600°F(315℃)下是热稳定的。 系统包括树脂; 反应性纳米粒子; 形成纳米复合材料的固化剂; 以及设置在纳米复合物结合到的井下位置的颗粒。