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    • 2. 发明授权
    • Stent crimping system and method
    • 支架压接系统及方法
    • US08544160B2
    • 2013-10-01
    • US13543591
    • 2012-07-06
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • B23P11/02
    • B25B27/10A61F2/95A61F2002/9522
    • A stent crimping assembly is provided for crimping a stent from a first diameter to a reduced second diameter. The crimping assembly includes a plurality of movable wedges disposed about a rotational axis to form a wedge assembly. Each wedge includes a respective first side and a second side converging to form a tip portion. The tip portions are arranged to collectively form an iris about the rotational axis thereof. The iris defines a crimp aperture about which the movable wedges are disposed. A control unit is electronically programmed to control the mechanical components. A method of calibrating the control unit includes inserting a quill of known diameter into the iris and reducing the diameter of the iris onto the quill.
    • 提供一种用于将支架从第一直径压缩到减小的第二直径的支架压接组件。 压接组件包括围绕旋转轴线设置的多个可动楔形件以形成楔形组件。 每个楔子包括相应的第一侧​​和第二侧,该第二侧会聚以形成尖端部分。 尖端部分被布置为围绕其旋转轴线共同形成虹膜。 虹膜限定了压接孔,可动楔设置在该开口处。 电子编程的控制单元用于控制机械部件。 校准控制单元的方法包括将已知直径的芯线插入虹膜并将虹膜的直径减小到套筒上。
    • 3. 发明授权
    • Stent crimping system
    • 支架压接系统
    • US07389670B1
    • 2008-06-24
    • US11191159
    • 2005-07-26
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • B21D41/04
    • B25B27/10A61F2/95A61F2002/9522
    • A stent crimping assembly is provided for crimping a stent from a first diameter to a reduced second diameter. The crimping assembly includes a plurality of movable wedges disposed about a rotational axis to form a wedge assembly. Each wedge includes a respective first side and a second side converging to form a tip portion. The tip portions are arranged to collectively form an iris about the rotational axis thereof. The iris defining a crimp aperture about which the movable wedges are disposed. Each wedge is associated with a stationary structure and an rotational actuation unit such that during rotation of the actuation unit about the rotational axis, the iris is caused to rotate about the rotational axis, relative the stationary structure, for inward movement of the wedges to decrease the size of the aperture and outward movement of the wedges to increase the size of the aperture.
    • 提供一种用于将支架从第一直径压缩到减小的第二直径的支架压接组件。 压接组件包括围绕旋转轴线设置的多个可动楔形件以形成楔组件。 每个楔子包括相应的第一侧​​和第二侧,该第二侧会聚以形成尖端部分。 尖端部分被布置为围绕其旋转轴线共同形成虹膜。 虹膜限定了压接孔,可动楔设置在该开口周围。 每个楔形件与静止结构和旋转致动单元相关联,使得在致动单元围绕旋转轴线旋转期间,使虹膜相对于固定结构围绕旋转轴线旋转,以使楔形件向内移动以减小 孔的大小和楔形体的向外运动,以增加孔的尺寸。
    • 4. 发明申请
    • STENT CRIMPING SYSTEM AND METHOD
    • STENT CRIMPING系统和方法
    • US20120284986A1
    • 2012-11-15
    • US13543591
    • 2012-07-06
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • B23Q17/00
    • B25B27/10A61F2/95A61F2002/9522
    • A stent crimping assembly is provided for crimping a stent from a first diameter to a reduced second diameter. The crimping assembly includes a plurality of movable wedges disposed about a rotational axis to form a wedge assembly. Each wedge includes a respective first side and a second side converging to form a tip portion. The tip portions are arranged to collectively form an iris about the rotational axis thereof. The iris defining a crimp aperture about which the movable wedges are disposed. Each wedge is associated with a stationary structure and an rotational actuation unit such that during rotation of the actuation unit about the rotational axis, the iris is caused to rotate about the rotational axis, relative the stationary structure, for inward movement of the wedges to decrease the size of the aperture and outward movement of the wedges to increase the size of the aperture.
    • 提供一种用于将支架从第一直径压缩到减小的第二直径的支架压接组件。 压接组件包括围绕旋转轴线设置的多个可动楔形件以形成楔组件。 每个楔子包括相应的第一侧​​面和第二侧面,其收敛以形成尖端部分。 尖端部分被布置为围绕其旋转轴线共同形成虹膜。 虹膜限定了压接孔,可动楔设置在该开口周围。 每个楔形件与静止结构和旋转致动单元相关联,使得在致动单元围绕旋转轴线旋转期间,使虹膜相对于固定结构围绕旋转轴线旋转,以使楔形件向内移动以减小 孔的大小和楔形体的向外运动,以增加孔的尺寸。
    • 8. 发明授权
    • Stent crimping system and method
    • 支架压接系统及方法
    • US08215149B1
    • 2012-07-10
    • US12050031
    • 2008-03-17
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • B21D41/04
    • B25B27/10A61F2/95A61F2002/9522
    • A stent crimping assembly is provided for crimping a stent from a first diameter to a reduced second diameter. The crimping assembly includes a plurality of movable wedges disposed about a rotational axis to form a wedge assembly. Each wedge includes a respective first side and a second side converging to form a tip portion. The tip portions are arranged to collectively form an iris about the rotational axis thereof. The iris defining a crimp aperture about which the movable wedges are disposed. Each wedge is associated with a stationary structure and an rotational actuation unit such that during rotation of the actuation unit about the rotational axis, the iris is caused to rotate about the rotational axis, relative the stationary structure, for inward movement of the wedges to decrease the size of the aperture and outward movement of the wedges to increase the size of the aperture.
    • 提供一种用于将支架从第一直径压缩到减小的第二直径的支架压接组件。 压接组件包括围绕旋转轴线设置的多个可动楔形件以形成楔形组件。 每个楔子包括相应的第一侧​​和第二侧,该第二侧会聚以形成尖端部分。 尖端部分被布置为围绕其旋转轴线共同形成虹膜。 虹膜限定了压接孔,可动楔设置在该开口周围。 每个楔形件与静止结构和旋转致动单元相关联,使得在致动单元围绕旋转轴线旋转期间,使虹膜相对于固定结构围绕旋转轴线旋转,以使楔形件向内移动以减小 孔的大小和楔形体的向外运动,以增加孔的尺寸。
    • 9. 发明授权
    • Stent crimping system
    • 支架压接系统
    • US07628051B1
    • 2009-12-08
    • US11752115
    • 2007-05-22
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • Arkady KokishDavid LoweDan ShumerScott Baron
    • B21D41/00
    • B25B27/10A61F2/95A61F2002/9522
    • A stent crimping apparatus is provided which includes a crimping assembly adapted to crimp the stent, a clamp assembly configured to secure the medical device; and a control unit configured to control the movement of the crimp assembly. The clamp assembly includes a lower clamp device defining a seating groove formed and dimensioned to seat a portion of the medical device therein, and a retaining assembly having an elastomeric member. This elastomeric member defines a contacting groove oriented in an opposed manner proximate to at least a portion of the seating groove. The clamp assembly further includes an actuation mechanism associated with the retaining assembly and the lower clamp device such that operation thereof causes the retaining assembly to move between an opened condition and a closed condition. In the opened condition, the medical device can be positioned between the lower clamp device and the retaining assembly, and in the closed condition, retaining the medical device between the contacting groove of the elastomeric member and the seating groove of the lower clamp device.
    • 提供一种支架压接装置,其包括适于卷曲支架的压接组件,构造成固定医疗装置的夹具组件; 以及控制单元,被配置为控制压接组件的运动。 夹具组件包括下夹具装置,该下夹具装置限定形成并定尺寸以将医疗装置的一部分安置在其中的安置槽,以及具有弹性构件的保持组件。 该弹性体构件限定了接近凹槽,该接触槽以相对的方式定位成接近于止动槽的至少一部分。 夹具组件还包括与保持组件和下夹具装置相关联的致动机构,使得其操作使得保持组件在打开状态和关闭状态之间移动。 在打开状态下,医疗装置可以位于下夹紧装置和保持组件之间,并且在关闭状态下,将医疗装置保持在弹性体构件的接触槽和下夹紧装置的安置槽之间。