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    • 3. 发明授权
    • Port closure system for use with a probe/feed/drain tool
    • 端口关闭系统,用于探头/进料/排水工具
    • US09580214B2
    • 2017-02-28
    • US14111824
    • 2011-05-04
    • Jason D. HattonDavid J. GausJohn Miller Hess, III
    • Jason D. HattonDavid J. GausJohn Miller Hess, III
    • F16L29/00B65D47/20A61M39/04A61M39/00
    • B65D47/2031A61M39/045A61M2039/0072Y10T137/7876
    • A port closure system (20) including a retention structure (22), and a valve (24). The retention structure (22) includes a port (28) for establishing communication between an exterior environment (30) and interior volume (32) that can receive a fluent substance. The valve (24) includes a flexible, resilient, self-closing, slit-type valve head (36) with an orifice that is normally closed in an unconstrained condition. The port (28) has a laterally inwardly facing engaging surface (34) and the valve has a laterally outwardly facing peripheral surface (54) that is compressed laterally inwardly by engagement with the surface (34) to increase the resistance of the normally closed orifice to opening when the head (36) is subjected to a pressure differential. The system (20) further includes an annular flange (62) located to extend over at least a portion of an exterior side (38) of the valve head (36) to limit movement of the valve head (36) towards the exterior environment (30).
    • 一种包括保持结构(22)和阀(24)的端口封闭系统(20)。 保持结构(22)包括用于在外部环境(30)和能够接收流体物质的内部容积(32)之间建立连通的端口(28)。 阀(24)包括柔性的,弹性的,自动关闭的狭缝型阀头(36),其具有通常在非约束状态下关闭的孔口。 端口(28)具有横向向内的接合表面(34),并且阀具有横向向外的周向表面(54),其通过与表面(34)接合而横向向内压缩,以增加常闭孔的阻力 当头部(36)经受压力差时打开。 系统(20)还包括环形凸缘(62),该环形凸缘定位成在阀头(36)的外侧(38)的至少一部分上延伸,以限制阀头(36)朝向外部环境 30)。
    • 4. 发明申请
    • Low Profile Venous Access Port Assembly
    • 薄型静脉入口口装配
    • US20170043152A1
    • 2017-02-16
    • US15335484
    • 2016-10-27
    • Medical Components, Inc.
    • Raymond Bizup
    • A61M39/02
    • A61M39/0208A61M39/02A61M2039/0063A61M2039/0072A61M2039/0223A61M2039/0229A61M2039/027A61M2039/1072
    • A venous access port assembly (10) having a housing base (28) with a discharge stem (16), a septum (14) and a cap (36). An interior reservoir (22) is defined by a well (30) in the housing base and the bottom surface of the septum, and a passageway (20) extends from the reservoir through the discharge stem (16). The cap (36) is secured to the housing base (28) and securely retains the septum in the assembly (10), compressing an annular flange (44) of the septum against a septum seat (46) of the housing base. Horizontal ribs on the interior of the cap snap into complementary grooves on the side wall of the housing base to mechanically lock together the cap and housing base during curing of the solvent bonding agent. The cap (48) is mechanically secured to the housing base (28) as well as being bonded thereto. Crush ribs (72) on the interior surface (68) of the cap (36), precisely center the cap about the housing base during assembly and compensating for manufacturing tolerances.
    • 具有具有排出杆(16),隔膜(14)和盖(36)的壳体基座(28)的静脉通路口组件(10)。 内部储存器(22)由壳体基座中的井(30)和隔膜的底表面限定,并且通道(20)从储存器延伸穿过排放杆(16)。 盖(36)固定到壳体基座(28)并将隔膜牢固地保持在组件(10)中,将隔膜的环形凸缘(44)压靠在壳体基座的隔膜座(46)上。 在盖的内部的水平肋卡入壳体基座的侧壁上的互补槽中,以在固化溶剂粘合剂期间机械地锁定盖和壳体基座。 盖(48)机械地固定到壳体基座(28)并且被接合到壳体基座28上。 在盖(36)的内表面(68)上的楔形肋(72)在组装期间精确地将盖围绕壳体基座居中并补偿制造公差。