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    • 8. 发明申请
    • METHOD OF TREATMENT USING MICROPARTICULATE BIOMATERIAL COMPOSITION
    • 使用微生物生物组合物治疗的方法
    • US20090028953A1
    • 2009-01-29
    • US12211001
    • 2008-09-15
    • Ronald K. YamamotoStanley R. Conston
    • Ronald K. YamamotoStanley R. Conston
    • A61K9/14A61K31/728A61P27/06
    • A61K31/728
    • Compositions of microspheres formed of stabilized hyaluronic acid are disclosed. The unique biological properties of hyaluronic acid provide for very inert properties when exposed to tissues. Microsphere formulations of hyaluronic acid have medical utility due to the resultant properties of flowability, physical stability, and degradability. High concentration formulations of the microspheres have utility when injected to form a localized mass within tissues by providing physical stability and anti-fibrotic biological activity, especially suitable for certain surgical reconstructions. Low concentration formulation of the microspheres of the appropriate size range have utility when injected into the blood system to delivery diagnostic and therapeutic compounds.
    • 公开了由稳定化的透明质酸形成的微球的组合物。 当暴露于组织时,透明质酸的独特生物学特性提供非常惰性的特性。 透明质酸的微球制剂由于所得到的流动性,物理稳定性和降解性的特性而具有医疗效用。 通过提供物理稳定性和抗纤维化生物活性,特别适用于某些外科重建,微注射剂的高浓度制剂在注射时可用于在组织内形成局部质量。 适当尺寸范围的微球的低浓度制剂在注射到血液系统中以递送诊断和治疗化合物时具有效用。
    • 9. 发明授权
    • Devices and methods for interconnecting vessels
    • 用于互连血管的装置和方法
    • US06458140B2
    • 2002-10-01
    • US09771007
    • 2001-01-26
    • Jodi AkinAmr SalahiehMichael MackHani ShennibJackson DemondRonald K. YamamotoStanley R. Conston
    • Jodi AkinAmr SalahiehMichael MackHani ShennibJackson DemondRonald K. YamamotoStanley R. Conston
    • A61B1704
    • A61F2/064A61B17/11A61B2017/00867A61B2017/1107A61B2017/1135A61B2017/1139
    • The present invention provides implantable devices and associated methods forinterconnecting human vessels in a side-to-side or an end-to-side arrangement rapidly, safely and in a minimally invasive manner. The devices comprises at least a first segment, a second component, and a flow opening between the at least one segment and the second component when operatively used. The first segment is flexible and has physical and mechanical properties which allow it to be easily inserted into a vessel, to conformably seal with the inside wall of the vessel and to be resistant to dislodging from the vessel. The second component may comprise a second segment having the same or a similar configuration as the first segment or may be a tubular member which extends from the first segment. The first and second segments are flexible for easy insertion into an incision made within the side of each vessel. Upon release from a constricted state, each flexible segment subsequently conforms to the interior walls of a vessel to provide a sealing contact along the contact surface of the segment inserted within. The tubular member is configured to be inserted into a transected end of a vessel. The flow opening provides fluid interconnectivity between the vessels connected by the implanted devices. The devices are configured so as to: (1) not impede flow inside a vessel; (2) prevent leakage from the incisions within the vessels; and (3) apposition the vessels toward each other allowing the vessels to heal together so that flow in one vessel may flow to the other.
    • 本发明提供可植入装置和用于以快速,安全和微创的方式将人血管以一对侧或端对侧的排列方式相互连接的方法。 当操作使用时,这些装置至少包括第一部分,第二部分和至少一个部分和第二部件之间的流动开口。 第一段是柔性的并且具有物理和机械性质,其允许其容易地插入容器中,以与容器的内壁一致地密封并且抵抗从容器移出的阻力。 第二部件可以包括具有与第一部分相同或相似的构造的第二部分,或者可以是从第一部分延伸的管状部件。 第一和第二段是柔性的,以便于插入到在每个容器的侧面内形成的切口中。 当从收缩状态释放时,每个柔性段随后与容器的内壁一致,以沿着插入其中的段的接触表面提供密封接触。 管状构件被构造成插入到容器的横截面中。 流动开口在由注入装置连接的容器之间提供流体互连。 这些装置被配置为:(1)不妨碍容器内的流动; (2)防止血管内的切口渗漏; 和(3)将血管相互放置,使血管相互愈合,使一个血管中的流动流向另一个血管。