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    • 2. 发明申请
    • HEART VALVE DOCKING SYSTEM
    • 心脏对接系统
    • WO2018039561A1
    • 2018-03-01
    • PCT/US2017/048620
    • 2017-08-25
    • EDWARDS LIFESCIENCES CORPORATION
    • PATEL, Darshin, S.ALTMAN, HernanMANASH, BoazLEVI, Tamir, S.SIRIMANNE, Dinesh, L.
    • A61F2/24A61B17/00
    • Docking devices can be configured to be positioned at a native valve of a human heart to provide structural support for docking a prosthetic valve. The docking devices generally have coiled structures that define an inner space in which the prosthetic valve can be held. Some docking devices can be adjusted from a first wider configuration which facilitates easier advancement of the docking device around the valve anatomy, to a second narrower configuration after the docking device has been delivered to more securely hold the prosthetic valve. The docking device may also be better held in position at the native valve after adjustment to the narrower configuration. Some docking devices include a stabilization segment or double coil configuration, where a main coil region is configured to securely hold a prosthetic valve, while a stabilization coil region is configured to more stably hold the docking device at the native valve.
    • 对接装置可以被配置为定位在人类心脏的自然瓣膜处,以提供用于对接人造瓣膜的结构支撑。 对接装置通常具有限定可保持人造瓣膜的内部空间的盘绕结构。 一些对接装置可以从第一较宽配置调节到第二较窄配置,该第一较宽配置便于对接装置围绕阀解剖结构较容易地推进到第二较窄配置,在对接装置已经被输送以更安全地保持人工瓣膜之后。 在对较窄的构造进行调整之后,对接装置也可以更好地保持在天然阀处。 一些对接装置包括稳定部分或双线圈结构,其中主线圈区域被配置为牢固地保持人工瓣膜,而稳定线圈区域被配置为更稳定地将对接装置保持在自然瓣膜处。
    • 5. 发明申请
    • HEART VALVE DOCKING COILS AND SYSTEMS
    • 心阀对接线圈和系统
    • WO2018039589A1
    • 2018-03-01
    • PCT/US2017/048659
    • 2017-08-25
    • EDWARDS LIFESCIENCES CORPORATION
    • PATEL, Darshin, S.MANASH, BoazPERLMUTTER, KhenLEIBA, EyalROZEN, YoavSIRIMANNE, Dinesh, L.
    • A61F2/24A61B17/00
    • Anchoring or docking devices configured to be positioned at a native valve of a human heart and to provide structural support for docking a prosthetic valve therein. The docking devices can have coiled structures that define an inner space in which the prosthetic valve can be held. The docking devices can have enlarged end regions with circular or non-circular shapes, for example, to facilitate implantation of the docking device or to better hold the docking device in position once deployed. The docking devices can be laser-cut tubes with locking wires to assist in better maintaining a shape of the docking device. The docking devices can include various features to promote friction, such as frictional cover layers. Such docking devices can have ends configured to more securely attach the cover layers to cores of the docking devices.
    • 锚定装置或对接装置被配置为定位在人类心脏的天然瓣膜处并提供用于对接其中的人造瓣膜的结构支撑。 对接装置可具有限定可保持人造瓣膜的内部空间的盘绕结构。 对接装置可以具有例如具有圆形或非圆形形状的扩大的端部区域,以便于对接装置的植入或者一旦展开就更好地将对接装置保持就位。 对接装置可以是具有锁定线的激光切割管以帮助更好地保持对接装置的形状。 对接装置可以包括促进摩擦的各种特征,例如摩擦覆盖层。 这样的对接装置可以具有被配置为将覆盖层更牢固地附接到对接装置的芯上的端部。