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    • 2. 发明授权
    • System and method for introducing multiple medical devices
    • 引入多种医疗器械的系统和方法
    • US08206320B2
    • 2012-06-26
    • US10902625
    • 2004-07-29
    • Stephen E. DealMatthew P. CarterVictor D. Clark, Jr.Frederick B. HallerDavid M. Hardin, Jr.John A. KarpielKenneth C. Kennedy, IIBrian K. RuckerGregory J. SkervenDavid F. Waller
    • Stephen E. DealMatthew P. CarterVictor D. Clark, Jr.Frederick B. HallerDavid M. Hardin, Jr.John A. KarpielKenneth C. Kennedy, IIBrian K. RuckerGregory J. SkervenDavid F. Waller
    • A61B6/00
    • A61B1/018A61B6/12A61B17/221A61B2017/2212A61F2/95A61F2002/041A61F2002/9511A61M25/0029A61M25/0662A61M25/10A61M2025/0183A61M2025/0681
    • A method and apparatus for introducing a first elongate medical device and short wire guide that are coupled together into a work site and remotely disconnecting them within the work site such that a secondary device comprising a catheter member can be introduced over the wire guide to the work site, and/or a second wire guide can be introduced to the work site via a passageway of the primary access device. A system of indicia, such as radiopaque or viewable markers, permit the operator to monitor the relative alignment of the devices within the work site to determine when uncoupling has occurred. In one example of the method, a wire guide and primary access device (e.g., a sphincterotome) is coupled to the wire guide and introduced via a duodenoscope into the biliary system. After performing a first medical operation, the devices are uncoupled with the wire guide being left within the biliary system such that a secondary access device, such as a balloon, biopsy device, stent delivery catheter, dilator, etc., can be introduced to perform a second medical operation without a traditional over-the-wire exchange being required. In another example of the method, a prosthesis, such as a valve or stent, is placed within the work site coupled to a wire guide which is remotely disconnected within the work site and a secondary device, such as a dilation balloon or second prosthesis, is introduced into the work site after the first delivery system is removed.
    • 一种用于引入第一细长医疗装置和短线引导件的方法和装置,所述第一细长医疗装置和短导线引导件联接在一起成为工作现场并在工作现场内远程地断开它们,使得包括导管部件的辅助装置可以被引导到导线器上, 现场和/或第二导线引导件可以经由主接入设备的通道引入到工作现场。 诸如不透射线或可见标记的标记系统允许操作者监视工作现场内的设备的相对对准以确定何时发生解偶联。 在该方法的一个示例中,线导向器和主入口装置(例如括约肌切开机)联接到线导引件并经十二指肠镜引入胆道系统。 在执行第一次医疗操作之后,将装置与线引导件脱离在胆汁系统内,使得可以引入二次进入装置,例如气囊,活检装置,支架输送导管,扩张器等,以执行 不需要传统的线上交换即可进行第二次医疗。 在该方法的另一示例中,诸如阀或支架的假体被放置在工作部位内,该工作部位与工作部位远程断开的线引导件相连,并且辅助装置(例如扩张气囊或第二假体) 在第一个传送系统被删除之后被引入工作现场。
    • 3. 发明授权
    • Balloon folding control mechanism
    • 气球折叠控制机构
    • US07976496B2
    • 2011-07-12
    • US12168450
    • 2008-07-07
    • Kenneth C. Kennedy, IIMatthew P. Carter
    • Kenneth C. Kennedy, IIMatthew P. Carter
    • A61M29/00
    • A61M25/10A61M25/1027A61M25/1029A61M25/1038A61M2025/1004A61M2025/1047A61M2025/1068A61M2025/1084A61M2025/1093
    • A balloon catheter including an inflatable balloon affixed to a catheter. The proximal end of the balloon is affixed to the distal end of the catheter so as to provide an air tight seal there between. A stiffening member extends distally of the distal end of the catheter and forms a slip joint connection with the distal end of the balloon to permit the distal end of the balloon to axially move or translate relative to the distal end of the catheter. The slip joint allows the axial length of balloon to change during inflation or deflation without transferring tensile or compressive forces between the balloon and the catheter. A balloon folding control mechanism is disposed about the portion of the stiffening member traversing the interior of the balloon, and is configured to promote refolding of the balloon into a predetermined and desired folding configuration upon deflation.
    • 气囊导管,其包括固定在导管上的可膨胀气囊。 气囊的近端固定在导管的远端,以便在其间提供气密封。 加强构件在导管的远端的远侧延伸并且与气囊的远端形成滑动关节连接,以允许气囊的远端相对于导管的远端轴向移动或平移。 滑动关节允许气囊的轴向长度在充气或放气期间改变,而不会在气囊和导管之间传递拉伸或压缩力。 气球折叠控制机构设置在穿过气球内部的加强构件的部分周围,并且被构造成在放气时促进气囊重折叠成预定和期望的折叠构型。
    • 8. 发明申请
    • BALLOON FOLDING CONTROL MECHANISM
    • 气球折叠控制机构
    • US20090024087A1
    • 2009-01-22
    • US12168450
    • 2008-07-07
    • Kenneth C. Kennedy, IIMatthew P. Carter
    • Kenneth C. Kennedy, IIMatthew P. Carter
    • A61M25/10
    • A61M25/10A61M25/1027A61M25/1029A61M25/1038A61M2025/1004A61M2025/1047A61M2025/1068A61M2025/1084A61M2025/1093
    • A balloon catheter including an inflatable balloon affixed to a catheter. The proximal end of the balloon is affixed to the distal end of the catheter so as to provide an air tight seal there between. A stiffening member extends distally of the distal end of the catheter and forms a slip joint connection with the distal end of the balloon to permit the distal end of the balloon to axially move or translate relative to the distal end of the catheter. The slip joint allows the axial length of balloon to change during inflation or deflation without transferring tensile or compressive forces between the balloon and the catheter. A balloon folding control mechanism is disposed about the portion of the stiffening member traversing the interior of the balloon, and is configured to promote refolding of the balloon into a predetermined and desired folding configuration upon deflation.
    • 气囊导管,其包括固定在导管上的可膨胀气囊。 气囊的近端固定在导管的远端,以便在其间提供气密封。 加强构件在导管的远端的远侧延伸并且与气囊的远端形成滑动关节连接,以允许气囊的远端相对于导管的远端轴向移动或平移。 滑动关节允许气囊的轴向长度在充气或放气期间改变,而不会在气囊和导管之间传递拉伸或压缩力。 气球折叠控制机构设置在穿过气球内部的加强构件的部分周围,并且被构造成在放气时促进气囊重折叠成预定和期望的折叠构型。