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    • 1. 发明申请
    • Microcoil vaso-occlusive device with multi-axis secondary configuration
    • US20060184195A1
    • 2006-08-17
    • US11398081
    • 2006-04-05
    • Dean SchaeferBrain CoxGeorge GreeneDavid FerreraMatthew FitzRobert Rosenbluth
    • Dean SchaeferBrain CoxGeorge GreeneDavid FerreraMatthew FitzRobert Rosenbluth
    • A61M29/00
    • A61B17/12022A61B17/12113A61B17/12145A61B2017/00867
    • A vaso-occlusive device includes a microcoil formed into a minimum energy state secondary configuration comprising a plurality of curved segments, each defining a discrete axis, whereby the device, in its minimum energy state configuration, defines multiple axes. In a preferred embodiment, the secondary configuration comprises a plurality of interconnected closed loops defining a plurality of discrete axes. In a second embodiment, the secondary configuration defines a wave-form like structure comprising an array of laterally-alternating open loops defining a plurality of separate axes. In a third embodiment, the secondary configuration forms a series of tangential closed loops, wherein the entire structure subtends a first angle of arc, and wherein each adjacent pair of loops defines a second angle of arc. In a fourth embodiment, the secondary configuration forms a logarithmic spiral. In all embodiments, the device, in its secondary configuration, has a dimension that is substantially larger than the largest dimension of the vascular site (i.e., aneurysm) in which it is to be deployed. Thus, confinement of the device within an aneurysm causes it to assume a three-dimensional configuration with a higher energy state than the minimum energy state. Because the minimum energy state configuration of the device is larger (in at least one dimension) than the aneurysm, the deployed device is constrained by its contact with the walls of the aneurysm from returning to its minimum energy state configuration. The engagement of the device with the aneurysm wall minimizes shifting or tumbling due to blood flow. Furthermore, the secondary configuration is not conducive to “coin stacking,” thereby minimizing the compaction experienced.
    • 3. 发明申请
    • VASCULAR EMBOLIZATION WITH AN EXPANSIBLE IMPLANT
    • 具有可扩展植入物的血管嵌合
    • US20070176333A1
    • 2007-08-02
    • US11733697
    • 2007-04-10
    • George GreeneRobert RosenbluthBrian Cox
    • George GreeneRobert RosenbluthBrian Cox
    • B28B3/00
    • A61L31/146A61B17/12022A61B17/12113A61B17/12186A61B17/1219A61B34/10A61B2017/00526A61B2017/1205A61F2/06A61L31/145A61L31/18A61L2430/36B33Y50/00B33Y80/00Y10S623/901Y10S623/903Y10T29/49
    • A vascular implant formed of a compressible foam material has a compressed configuration from which it is expansible into a configuration substantially conforming to the shape and size of a vascular site to be embolized. Preferably, the implant is formed of a hydrophilic, macroporous foam material, having an initial configuration of a scaled-down model of the vascular site, from which it is compressible into the compressed configuration. The implant is made by scanning the vascular site to create a digitized scan data set; using the scan data set to create a three-dimensional digitized virtual model of the vascular site; using the virtual model to create a scaled-down physical mold of the vascular site; and using the mold to create a vascular implant in the form of a scaled-down model of the vascular site. To embolize a vascular site, the implant is compressed and passed through a microcatheter, the distal end of which has been passed into a vascular site. Upon entering the vascular site, the implant expands in situ substantially to fill the vascular site. A retention element is contained within the microcatheter and has a distal end detachably connected to the implant. A flexible, tubular deployment element is used to pass the implant and the retention element through the microcatheter, and then to separate the implant from the retention element when the implant has been passed out of the microcatheter and into the vascular site.
    • 由可压缩泡沫材料形成的血管植入物具有压缩构型,其可膨胀到基本上符合要栓塞的血管部位的形状和尺寸的构造。 优选地,植入物由亲水的大孔泡沫材料形成,具有血管部位的缩小模型的初始构型,从而可压缩成压缩构型。 通过扫描血管部位来创建植入物以产生数字化的扫描数据集; 使用扫描数据集创建血管部位的三维数字化虚拟模型; 使用虚拟模型创建血管部位的缩小物理模具; 并使用模具以血管部位的缩小模型的形式产生血管植入物。 为了栓塞血管部位,植入物被压缩并通过微导管,其远端已经进入血管部位。 在进入血管部位时,植入物基本上扩张以填充血管部位。 保持元件容纳在微导管内并且具有可拆卸地连接到植入物的远端。 使用柔性的管状展开元件将植入物和保持元件通过微导管,然后当植入物从微导管通过并进入血管部位时,将植入物与保留元件分离。
    • 4. 发明授权
    • Controlling urinary incontinence
    • 控制性尿失禁
    • US5927282A
    • 1999-07-27
    • US116627
    • 1998-07-16
    • Jay LenkerRobert RosenbluthBrian CoxGeorge R. Greene
    • Jay LenkerRobert RosenbluthBrian CoxGeorge R. Greene
    • A61F2/00A61F5/44A61F5/48A61F13/15
    • A61F13/471A61F13/47209A61F2/0009A61F2/0054A61F5/4401A61F5/48A61F13/82Y10S128/25
    • A device for managing urinary incontinence comprises a resilient body that engages the external genitalia and sealingly occludes the urethral meatus. In female embodiments, the body fits between the labia minora and the floor of the vulval vestibule, occluding the meatus. An adhesive on the body provides a sealing engagement with the meatus. In a first female embodiment, the body has a base with an adhesive layer that seats against the vestibule floor. A pair of flexible, lateral flaps engage the labia minora. A layer of super-absorbent material may be situated between the base and the adhesive Layer, and/or a layer of scrim material may be so situated. The body may have a longitudinal ridge with a posterior edge having a finger hole to facilitate installation and removal of the device. In a second female embodiment, the body is substantially tubular, with the adhesive on the exterior surface of the body. In a third female embodiment, the body is an elastomeric bladder, filled with a liquid or gel, that conformingly fits between the labia minora and the vestibule floor so as to occlude the meatus. The exterior surface of the bladder is coated with an adhesive to sealingly occlude the meatus. In male embodiments, the device includes a resilient pad with adhesive on one surface. The pad conforms to and adhesively attaches to the penile glans, with the adhesive sealingly occluding the meatus. Securing tabs may be provided to adhere to the glans or the penile shaft.
    • 用于管理尿失禁的装置包括与外生殖器接合并密封地封闭尿道口的弹性体。 在女性实施例中,身体适合于阴唇小阴唇和外阴前庭的地板之间,阻塞肠道。 身体上的粘合剂提供与口腔的密封接合。 在第一女性实施例中,身体具有基部,其具有抵靠前庭地板的粘合剂层。 一对柔软的外侧襟翼与小阴唇接触。 一层超吸收材料可以位于基底和粘合剂层之间,和/或一层稀松布材料可以如此定位。 主体可以具有纵向脊,其后边缘具有指孔,以便于装置的安装和拆卸。 在第二女性实施例中,身体基本上是管状的,其中粘合剂在身体的外表面上。 在第三女性实施例中,身体是充满液体或凝胶的弹性囊,其适配于阴唇小室和前庭地板之间,从而封闭肠道。 膀胱的外表面涂有粘合剂以密封地堵塞肠道。 在男性实施例中,该装置包括在一个表面上具有粘合剂的弹性垫。 垫片符合并粘附到阴茎龟头,粘合剂密封地封闭肠管。 可以提供固定突片以粘附到龟头或阴茎轴。
    • 7. 发明授权
    • Urinary incontinence device
    • 尿失禁装置
    • US06461340B1
    • 2002-10-08
    • US09638255
    • 2000-08-14
    • Jay LenkerRobert RosenbluthBrian CoxGeorge R. Greene
    • Jay LenkerRobert RosenbluthBrian CoxGeorge R. Greene
    • A61F1320
    • A61F13/471A61F2/0009A61F2/0054A61F5/4401A61F5/48A61F13/47209A61F13/82Y10S128/25
    • A device for managing urinary incontinence comprises a resilient body that engages the external genitalia and sealingly occludes the urethral meatus. In female embodiments, the body fits between the labia minora and the floor of the vulval vestibule, occluding the meatus. An adhesive on the body provides a sealing engagement with the meatus. In a first female embodiment, the body has a base with an adhesive layer that seats against the vestibule floor. A pair of flexible, lateral flaps engage the labia minora. A layer of super-absorbent material may be situated between the base and the adhesive layer, and/or a layer of scrim material may be so situated. The body may have a longitudinal ridge with a posterior edge having a finger hole to facilitate installation and removal of the device. In a second female embodiment, the body is substantially tubular, with the adhesive on the exterior surface of the body. In a third female embodiment, the body is an elastomeric bladder, filled with a liquid or gel, that conformingly fits between the labia minora and the vestibule floor so as to occlude the meatus. The exterior surface of the bladder is coated with an adhesive to sealingly occlude the meatus. In male embodiments, the device includes a resilient pad with adhesive on one surface. The pad conforms to and adhesively attaches to the penile glans, with the adhesive sealingly occluding the meatus. Securing tabs may be provided to adhere to the glans or the penile shaft.
    • 用于管理尿失禁的装置包括与外生殖器接合并密封地封闭尿道口的弹性体。 在女性实施例中,身体适合于阴唇小阴唇和外阴前庭的地板之间,阻塞肠道。 身体上的粘合剂提供与口腔的密封接合。 在第一女性实施例中,身体具有基部,其具有抵靠前庭地板的粘合剂层。 一对柔软的外侧襟翼与小阴唇接触。 一层超吸收材料可以位于基底和粘合剂层之间,和/或一层稀松布材料可以如此定位。 主体可以具有纵向脊,其后边缘具有指孔,以便于装置的安装和拆卸。 在第二女性实施例中,身体基本上是管状的,其中粘合剂在身体的外表面上。 在第三女性实施例中,身体是充满液体或凝胶的弹性囊,其适配于阴唇小室和前庭地板之间,从而封闭肠道。 膀胱的外表面涂有粘合剂以密封地堵塞肠道。 在男性实施例中,该装置包括在一个表面上具有粘合剂的弹性垫。 垫片符合并粘附到阴茎龟头,粘合剂密封地封闭肠管。 可以提供固定突片以粘附到龟头或阴茎轴。