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    • 1. 发明授权
    • Method for making a tubular stent for use in medical applications
    • 制造用于医疗应用的管状支架的方法
    • US6107004A
    • 2000-08-22
    • US49244
    • 1998-03-27
    • James V. Donadio, III
    • James V. Donadio, III
    • C23F1/02G03F9/00G03F7/22
    • C23F1/02A61M2025/09066A61M2025/091A61M2025/09191
    • Manufacturing processes for apparatus, including slotted hypotube, for use as a catheter, a guidewire, a catheter sheath for use with catheter introducers or a drug infusion catheter/guidewire are disclosed. The manufacturing process includes creating a pattern of slots or apertures in a flexible metallic tubular member, by processes including but not limited to, electrostatic discharge machining (EDM), chemical milling, ablation and laser cutting. These slots or apertures may be cut completely or partially through the wall of the flexible metallic tubular member. These manufacturing processes may include the additional step of encasing the flexible metallic member such that a fluid tight seal is formed around the periphery of the tubular member.
    • 公开了用于装置的制造过程,包括用作导管的开槽海波管,导丝,用于导管导引器的导管护套或药物输注导管/导丝。 制造过程包括通过包括但不限于静电放电加工(EDM),化学铣削,消融和激光切割的方法在柔性金属管状构件中形成槽或孔的图案。 这些槽或孔可以完全或部分地穿过柔性金属管状构件的壁进行切割。 这些制造方法可以包括包围柔性金属构件的附加步骤,使得围绕管状构件的周边形成流体密封。
    • 2. 发明授权
    • Method for collapsing a stent
    • 折叠支架的方法
    • US5911752A
    • 1999-06-15
    • US710245
    • 1996-09-13
    • Mark Owen DustrudeJames V. Donadio, IIIJ. Edward Shapland, II
    • Mark Owen DustrudeJames V. Donadio, IIIJ. Edward Shapland, II
    • A61F2/06A61F2/84A61F2/90
    • A61F2/91A61F2/915A61F2/958A61F2002/91558A61F2002/9522A61F2002/9583A61F2230/0054
    • A method for implanting a stent within a body passageway defined by a body wall. The method includes the step of fabricating the stent in an initial orientation in which the stent has an initial diameter and an initial length. The method also includes the step of collapsing the stent radially inward from the initial orientation to a collapsed orientation in which the stent has a collapsed length and a collapsed diameter. The stent is collapsed by deforming a portion of the stent beyond the elastic limit of the portion of the stent. The method further includes the step of positioning the collapsed stent at a desired location within the body passageway. Additionally, the method includes the step of expanding the stent radially outward from the collapsed orientation to a deployed orientation in which the stent has a deployed diameter and a deployed length. The deployed diameter and the deployed length are respectively substantially equal to the initial diameter and the initial length. The stent is expanding by deforming the portion of the stent beyond the elastic limit of the portion of the stent.
    • 一种用于将支架植入由身体壁限定的身体通路内的方法。 该方法包括以支架具有初始直径和初始长度的初始取向制造支架的步骤。 该方法还包括将支架从初始取向径向向内折叠到塌缩取向的步骤,其中支架具有塌缩长度和塌缩直径。 支架通过将支架的一部分变形超过支架部分的弹性极限而折叠。 该方法还包括将折叠的支架定位在身体通道内的期望位置的步骤。 此外,该方法包括将支架从收缩方向径向向外扩张到其中支架具有展开直径和展开长度的展开方向的步骤。 展开的直径和展开的长度分别基本上等于初始直径和初始长度。 支架通过使支架的部分变形超过支架部分的弹性极限来扩张。
    • 8. 发明授权
    • Flexible guidewire
    • 柔性导丝
    • US4846186A
    • 1989-07-11
    • US143008
    • 1988-01-12
    • John W. BoxJames V. Donadio
    • John W. BoxJames V. Donadio
    • A61B6/00
    • A61M25/09A61M2025/09175
    • A guidewire suited for inserting both diagnostic and therapeutic catheters. The guidewire has an initial uniform diameter segment that is coated with Telfon along a majority of its length. This core station tapers along a uniform portion to a second constant diameter segment surrounded by a flexible spring tip. The core again tapers in a region where the flexible spring separates from the core. The core is then flattened to increase flexibility within the flexible spring and the flattened core and spring are brazed together at a extreme distal tip portion to form a hemispherical distal guidewire tip.
    • 适用于插入诊断和治疗导管的导丝。 导丝具有初始均匀的直径段,其沿着其大部分长度涂覆有Telfon。 该核心站沿着均匀部分逐渐变细至由柔性弹簧顶端围绕的第二恒定直径段。 磁芯在柔性弹簧与磁芯分离的区域中再次变浅。 然后将芯平展以增加柔性弹簧内的柔性,并且将扁平的芯和弹簧在最远端的尖端部分钎焊在一起以形成半球形的远端导丝尖端。