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    • 1. 发明申请
    • Arterial closure device
    • 动脉闭合装置
    • US20060116635A1
    • 2006-06-01
    • US11288745
    • 2005-11-28
    • Anthony Van HeugtenRod ShipmanPaul Shabty
    • Anthony Van HeugtenRod ShipmanPaul Shabty
    • A61M29/00
    • A61M25/1011A61B17/0057A61B2017/00637A61B2017/0065A61B2017/00893
    • An arterial closure device (20) comprises a body (26) having first and second ports (28, 30) and a catheter (32) having proximal and distal ends (34, 36) extending from the body (26). The catheter (32) defines first and second lumens (38, 40) in operative communication with the first and second ports (28, 30). A first balloon (50) is positioned adjacent the distal end (36) of the catheter (32) and is operatively coupled to the first lumen (38) to receive a fluid through the first port (28) to expand the first balloon (50). A second balloon (58) is operatively coupled to the second lumen (40) to receive a clotting agent (60) through the second port (30) to inflate the second balloon (58). At least one slit (62) is disposed in the second balloon (58) and the slit (62) is expandable between open and closed positions in response to inflation of the second balloon (58) such that the clotting agent (60) is ejected through the slit (62) in the open position to close the puncture hole (22).
    • 动脉闭合装置(20)包括具有第一和第二端口(28,30)的主体(26)和具有从主体(26)延伸的近端和远端(34,36)的导管(32)。 导管(32)限定与第一和第二端口(28,30)可操作地连通的第一和第二管腔(38,40)。 第一气囊(50)定位成邻近导管(32)的远端(36)并且可操作地联接到第一腔(38)以接收通过第一端口(28)的流体,以使第一气囊(50 )。 第二气囊(58)可操作地联接到第二腔(40)以接收穿过第二端口(30)的凝固剂(60)以使第二气囊(58)膨胀。 至少一个狭缝(62)设置在第二球囊(58)中,并且狭缝(62)响应于第二球囊(58)的膨胀而在打开和关闭位置之间可膨胀,使得凝结剂(60)被喷射 穿过狭缝(62)处于打开位置以关闭穿孔(22)。
    • 2. 发明申请
    • ARTERIAL CLOSURE DEVICE
    • 手术闭合装置
    • US20080086109A1
    • 2008-04-10
    • US11942865
    • 2007-11-20
    • Paul ShabtyRod ShipmanAnthony Van Heugten
    • Paul ShabtyRod ShipmanAnthony Van Heugten
    • A61M31/00A61B17/08A61M29/00
    • A61B17/0057A61B2017/00637A61B2017/0065A61B2017/00893A61M25/1011
    • A method of closing an incision includes inserting a catheter (32) and the first and second balloons (50, 58) through an introducer (48) to have the first balloon (50) located in the artery (24). Next, the catheter (32) and the first balloon (50), which has been inflated, are withdrawn to apply a first force (F1) to the puncture hole (22) and close the puncture hole (22). The method is distinguished by injecting a clotting agent (60) into a second balloon (58) to inflate the second balloon (58) and to create a cavity between the insertion hole (68) and the puncture hole (22). The slit (62) in the second balloon (58) expands into an open position as a result of a pressure (P) within the second balloon (58) to eject the clotting agent (60) therefrom. Next, the first balloon (50) is deflated, and the catheter (32) and the first and second balloons (50, 58) are removed from the insertion hole (68). Finally, a second force (F2) is applied to the insertion hole (68) to stop the flow of blood.
    • 关闭切口的方法包括将导管(32)和第一和第二气囊(50,58)插入导引器(48)中以使第一球囊(50)位于动脉(24)中。 接下来,取出已经充气的导管(32)和第一气囊(50),以向穿刺孔(22)施加第一力(F 1 N 1),并将穿刺孔 (22)。 该方法的特征在于将凝血剂(60)注射到第二气囊(58)中以使第二气囊(58)膨胀并且在插入孔(68)和穿刺孔(22)之间形成空腔。 由于第二气球(58)内的压力(P)从第二气球(58)中的狭缝(62)膨胀成打开位置,以从其中喷出凝固剂(60)。 接下来,第一气囊(50)被放气,并且导管(32)和第一和第二气球(50,58)从插入孔(68)移除。 最后,向插入孔(68)施加第二力(F 2 N 2)以停止血液流动。
    • 4. 发明申请
    • Counterpulsation device using noncompressed air
    • 使用非压缩空气的反脉冲装置
    • US20050137507A1
    • 2005-06-23
    • US11050121
    • 2005-02-03
    • Paul ShabtyWillard FergusonWillard FergusonTimothy Smith
    • Paul ShabtyWillard FergusonWillard FergusonTimothy Smith
    • A61H7/00A61H9/00A61H23/04A61H31/00
    • A61H9/0078A61H31/005A61H31/006A61H31/008A61H2201/0103A61H2201/1238A61H2201/5007A61H2201/5043A61H2203/0443A61H2230/04
    • A counterpulsation device that operates without the use of compressed air or pressurized gas includes at least one inflatable cuff that is adapted to be placed about a selected portion of the patient's body. A conduit connects the inflatable cuff to an air transfer device so that noncompressed air can be transferred from the air transfer device to the cuff through the conduit to inflate the cuff. The conduit also connects the cuff to the air transfer device so that air can flow through the conduit to deflate the cuff. Another conduit is coupled to the first so that the air in the system can be selectively vented into the atmosphere.. A series of valves are placed on the conduit to selectively control whether air is supplied to or withdrawn from the inflatable cuff. The air moving device preferably is a cylinder having a piston that moves through the cylinder to move the air from within the cylinder through the conduit and into or out of the cuff as desired. The piston moves through the cylinder through the use of a linear servo actuator that is controlled by an appropriately programmed electronic controller so that the inflation of the cuff is timed with portions of the patient's EKG signal and peripheral plethysmographic wave.
    • 在不使用压缩空气或加压气体的情况下操作的反力装置包括至少一个适于围绕患者身体的选定部分放置的可充气袖带。 导管将可充气袖带连接到空气传送装置,使得非压缩空气可以通过导管从空气传送装置传递到袖带以使袖带膨胀。 管道还将袖带连接到空气传送装置,使得空气可以流过导管以使袖口收缩。 另一管道与第一管道联接,使得系统中的空气可以选择性地排放到大气中。一系列阀门放置在管道上,以选择性地控制空气是否被供应到或从可膨胀的袖带中取出。 空气移动装置优选地是具有活塞的气缸,该活塞通过气缸移动,以使空气从气缸内通过导管移动,并根据需要进入或离开袖带。 活塞通过使用由适当编程的电子控制器控制的线性伺服致动器移动通过气缸,使得袖带的充气与患者的EKG信号和外周体积描记镜的部分计时。