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    • 1. 发明申请
    • Apparatus and methods for facilitating hemostasis within a vascular puncture
    • 用于促进血管穿刺止血的装置和方法
    • US20060047313A1
    • 2006-03-02
    • US10928744
    • 2004-08-27
    • Puneet KhannaFarhad Khosravi
    • Puneet KhannaFarhad Khosravi
    • A61B17/04
    • A61B17/08A61B17/0057A61B17/10A61B2017/00004A61B2017/00575A61B2017/00601A61B2017/00637A61B2017/0065A61B2017/00659
    • Apparatus for sealing a puncture communicating with a blood vessel includes a bioabsorbable sealing member secured to one end of a filament or other retaining member. The sealing member is delivered through the puncture into the vessel, and retracted against the wall of the vessel to provide temporary hemostasis. The sealing member is rapidly absorbed after exposure within the vessel, e.g., to an aqueous or heated physiological environment (e.g., exposure to blood or body temperature), immediately or shortly after completing a medical procedure via the puncture, e.g., within the time period that the patient is ambulatory optionally, extravascular sealing material is delivered into the puncture proximal to the sealing member. The retaining member and/or extravascular material may be bioabsorbable, being absorbed at a slower rate than the sealing member. Alternatively, the filament is removed from the puncture after hemostasis is established.
    • 用于密封与血管连通的穿刺的装置包括固定到细丝或其它保持构件的一端的生物可吸收密封构件。 密封构件通过穿刺输送到容器中,并且缩回到容器的壁上以提供临时止血。 在通过穿刺完成医疗程序之后立即或不久,例如在时间段内,密封构件在容器内暴露之后被快速吸收,例如水溶液或加热的生理环境(例如暴露于血液或体温) 患者任意行走,血管外密封材料被输送到靠近密封构件的穿刺部位。 保持构件和/或血管外材料可以是生物可吸收的,以比密封构件更慢的速度被吸收。 或者,在建立止血后,从穿刺中除去细丝。
    • 2. 发明授权
    • Apparatus and methods for facilitating hemostasis within a vascular puncture
    • 用于促进血管穿刺止血的装置和方法
    • US08348971B2
    • 2013-01-08
    • US10928744
    • 2004-08-27
    • Puneet KhannaFarhad Khosravi
    • Puneet KhannaFarhad Khosravi
    • A61B17/08
    • A61B17/08A61B17/0057A61B17/10A61B2017/00004A61B2017/00575A61B2017/00601A61B2017/00637A61B2017/0065A61B2017/00659
    • Apparatus for sealing a puncture communicating with a blood vessel includes a bioabsorbable sealing member secured to one end of a filament or other retaining member. The sealing member is delivered through the puncture into the vessel, and retracted against the wall of the vessel to provide temporary hemostasis. The sealing member is rapidly absorbed after exposure within the vessel, e.g., to an aqueous or heated physiological environment (e.g., exposure to blood or body temperature), immediately or shortly after completing a medical procedure via the puncture, e.g., within the time period that the patient is ambulatory. Optionally, extravascular sealing material is delivered into the puncture proximal to the sealing member. The retaining member and/or extravascular material may be bioabsorbable, being absorbed at a slower rate than the sealing member. Alternatively, the filament is removed from the puncture after hemostasis is established.
    • 用于密封与血管连通的穿刺的装置包括固定到细丝或其它保持构件的一端的生物可吸收密封构件。 密封构件通过穿刺输送到容器中,并且缩回到容器的壁上以提供临时止血。 在通过穿刺完成医疗程序之后立即或不久,例如在时间段内,密封构件在容器内暴露之后被快速吸收,例如,暴露于水或加热的生理环境(例如,暴露于血液或体温) 病人走路。 任选地,血管外密封材料被输送到靠近密封构件的穿刺中。 保持构件和/或血管外材料可以是生物可吸收的,以比密封构件更慢的速度被吸收。 或者,在建立止血后,从穿刺中除去细丝。
    • 3. 发明授权
    • Balloon catheters and methods for use
    • 气球导管及使用方法
    • US09034025B2
    • 2015-05-19
    • US13602074
    • 2012-08-31
    • Archimedes SanatiFarhad Khosravi
    • Archimedes SanatiFarhad Khosravi
    • A61F2/06A61F2/954A61F2/95
    • A61F2/954A61F2/95A61F2/958A61F2002/30322A61F2002/821A61F2230/0071A61F2250/0018A61F2250/0026A61F2250/0039A61M25/1002A61M25/1011
    • Apparatus and methods are provided for flaring a stent deployed within a branch vessel including an ostium communicating with a main vessel, a first end of the stent extending at least partially from the branch. A catheter is provided that includes a first balloon carried on its distal end, and a second balloon that includes a distal section overlying at least a portion of the first balloon and a proximal section. The catheter distal end is introduced into the main vessel and positioned through the ostium and stent into the branch until the first balloon is disposed within the stent. The first balloon is expanded to anchor the stent, and the second balloon is expanded to flare the first end of the stent. Optionally, the first balloon is expanded further, e.g., to expand the stent within the branch body lumen and/or dilate the lesion.
    • 提供了一种装置和方法,用于扩张部署在分支容器内的支架,该支架包括与主容器连通的口,所述支架的第一端至少部分地从所述分支延伸。 提供了一种导管,其包括在其远端承载的第一气囊,以及包括覆盖所述第一气囊的至少一部分的远端部分和近端部分的第二气囊。 将导管远端引入主容器中并定位成通过口和支架进入分支,直到第一气囊置于支架内。 将第一气囊扩张以锚固支架,并且将第二气囊膨胀以扩张支架的第一端。 任选地,第一气囊进一步膨胀,例如,以使分支体腔内的支架膨胀和/或扩张病变。
    • 6. 发明授权
    • Stretchable anti-buckling coiled-sheet stent
    • 可伸缩抗弯卷盘支架
    • US08092514B1
    • 2012-01-10
    • US09427260
    • 1999-10-25
    • Farhad KhosraviHimanshu N. PatelYi Yang
    • Farhad KhosraviHimanshu N. PatelYi Yang
    • A61F2/06
    • A61F2/92A61F2/91A61F2220/0008A61F2220/0016A61F2230/0054A61F2230/008A61F2250/0018
    • A stent includes a coiled-up sheet having overlapping inner and outer longitudinal sections extending parallel to a longitudinal axis thereof, and defining a periphery, the coiled-up sheet being unrollable between contracted and enlarged conditions. A plurality of stretchable elements are formed in the coiled-up sheet, the stretchable elements being expandable about the periphery between an unstretched condition to facilitate placement in a delivery device in the contracted condition and a stretched condition to facilitate expansion of the coiled-up sheet to the enlarged condition upon deployment from the delivery device. Preferably, the coiled-up sheet is biased to the enlarged condition, and the stretchable elements are biased to the stretched condition. More preferably, at least one of the biases is provided by a shape memory property of the coiled-up sheet, which is activated by exposing the stent to body temperature.
    • 支架包括具有与其纵向轴线平行延伸的重叠的内部和外部纵向部分并且限定周边的盘绕的片材,所述盘绕的片材在收缩和扩大的条件之间不可展开。 多个可拉伸元件形成在盘绕的片材中,可拉伸元件可以在未拉伸状态下围绕周边扩张,以便于在收缩状态下放置在输送装置中,并且拉伸条件以便于卷起片材的膨胀 在从输送装置部署时变为放大状态。 优选地,盘绕的片材被偏压到放大状态,并且可拉伸元件被偏压到拉伸状态。 更优选地,通过将​​支架暴露于体温而被活化的卷曲片的形状记忆特性提供至少一个偏差。