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    • 4. 发明授权
    • Cryo-applicator cross-section configuration
    • 冷冻设备横截面配置
    • US08377050B2
    • 2013-02-19
    • US11760564
    • 2007-06-08
    • David J. LentzJillian K. Allen
    • David J. LentzJillian K. Allen
    • A61B18/02
    • A61B18/02A61B2017/003A61B2018/0212A61B2018/0262
    • A configuration for a cryo-catheter which optimizes both the catheter's outer diameter and the size of the catheter's internal refrigerant flow path is described. Specifically, the inner dimensions of the cryo-catheter are configured to accommodate a pre-selected flow of refrigerant into the catheter's distal tip, and a return flow of refrigerant from the distal tip. The return flow is established in the void spaces between a refrigerant supply line and the inner wall of the catheter body. The available void space varies along the catheter length and depends on the presence/absence of various catheter accessories (i.e. pull wires, pressure tubes, etc.) which typically only extend through a portion of the catheter length. The disclosed configuration ensures that the cryo-catheter does not operate in a refrigerant limited condition, maintains the refrigerant as a liquid in the supply tube, and maintains the return line pressure at about 1 atmosphere.
    • 描述了优化导管的外径和导管的内部制冷剂流动路径的尺寸的低温导管的配置。 具体地,冷冻导管的内部尺寸被配置为容纳预先选择的制冷剂流入导管的远侧末端,以及来自远侧末端的制冷剂​​回流。 在制冷剂供应管线和导管体的内壁之间的空隙空间中建立回流。 可用的空隙空间沿着导管长度而变化,并且取决于通常仅延伸穿过导管长度的一部分的各种导管配件(即拉线,压力管等)的存在/不存在。 所公开的配置确保冷冻导管不在制冷剂限制条件下操作,将制冷剂保持为供应管中的液体,并将返回管线压力保持在大约1个大气压。
    • 5. 发明授权
    • Catheter articulation segment with alternating cuts
    • 导管交叉节段交替切割
    • US08092444B2
    • 2012-01-10
    • US12642362
    • 2009-12-18
    • David J. LentzRichard J. Koerner
    • David J. LentzRichard J. Koerner
    • A61M25/00
    • A61M25/0013A61M25/0054A61M25/0138
    • An articulation segment for a catheter includes a tube formed with a first plurality of axially aligned slits that are respectively oriented in planes perpendicular to the axis, with each slit extending azimuthally in an arc partway around the axis. The tube is also formed with a second plurality of similarly formed slits that are axially offset and diametrically opposed relative to the slits of the first plurality to allow for a bending of the catheter in a plurality of different planes. In a particular embodiment, the slits are arranged to allow the articulation segment to be reconfigured from a straight, substantially cylindrically shaped tube to a configuration in which a portion of the articulation segment is formed in the shape of a ring.
    • 用于导管的关节节段包括形成有第一多个轴向对准的狭缝的管,其分别定向在垂直于轴线的平面中,每个狭缝围绕轴线在一半弧中方位延伸。 管还形成有第二多个类似形成的狭缝,其相对于第一多个的狭缝轴向地偏置并沿直径相对,以允许导管在多个不同平面中弯曲。 在特定实施例中,狭缝被布置成允许关节运动部分从直的基本上圆柱形的管重新配置到其中关节节段的一部分形成为环形的构造。
    • 6. 发明申请
    • CRYO-APPLICATOR CROSS-SECTION CONFIGURATION
    • US20080306475A1
    • 2008-12-11
    • US11760564
    • 2007-06-08
    • David J. LentzJillian K. Allen
    • David J. LentzJillian K. Allen
    • A61B18/02
    • A61B18/02A61B2017/003A61B2018/0212A61B2018/0262
    • A configuration for a cryo-catheter which optimizes both the catheter's outer diameter and the size of the catheter's internal refrigerant flow path is described. Specifically, the inner dimensions of the cryo-catheter are configured to accommodate a pre-selected flow of refrigerant into the catheter's distal tip, and a return flow of refrigerant from the distal tip. The return flow is established in the void spaces between a refrigerant supply line and the inner wall of the catheter body. The available void space varies along the catheter length and depends on the presence/absence of various catheter accessories (i.e. pull wires, pressure tubes, etc.) which typically only extend through a portion of the catheter length. The disclosed configuration ensures that the cryo-catheter does not operate in a refrigerant limited condition, maintains the refrigerant as a liquid in the supply tube, and maintains the return line pressure at about 1 atmosphere.
    • 描述了优化导管的外径和导管的内部制冷剂流动路径的尺寸的低温导管的配置。 具体地,冷冻导管的内部尺寸被配置为容纳预先选择的制冷剂流入导管的远侧末端,以及来自远侧末端的制冷剂​​回流。 在制冷剂供应管线和导管体的内壁之间的空隙空间中建立回流。 可用的空隙空间沿着导管长度而变化,并且取决于通常仅延伸穿过导管长度的一部分的各种导管配件(即拉线,压力管等)的存在/不存在。 所公开的配置确保冷冻导管不在制冷剂限制条件下操作,将制冷剂保持为供应管中的液体,并将返回管线压力保持在大约1个大气压。