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    • 1. 发明专利
    • Reduced-pressure, liquid-collection canister with multi-orientation filter
    • 减压滤芯,采用多方向过滤器的液体收集器
    • JP2013059638A
    • 2013-04-04
    • JP2012251833
    • 2012-11-16
    • Kci Licensing Incケーシーアイ ライセンシング インコーポレイテッド
    • LOCKE CHRISTOPHER BRIANTOUT AIDAN MARCUSPRATT BENJAMIN ANDREW
    • A61M27/00
    • A61M1/0001A61M1/0052A61M1/0088A61M2205/21A61M2205/7536
    • PROBLEM TO BE SOLVED: To provide a liquid collection canister in which wound exudate from the tissue site are collected within a canister to prevent the liquids from reaching the reduced pressure source.SOLUTION: A reduced pressure treatment system includes a liquid-collection canister 102 for collecting liquid from a tissue site to which reduced pressure treatment is applied. The canister 102 includes a first space 318 configured to collect the liquid from the tissue site and a filter 104 having a frame 304 and a non-planar filter element. The filter 104 defines a second space within the canister 102 separated from the first space 318 by the filter element. The filter element sufficiently prevents liquid from passing from the first space 318 into the second space. The filter element substantially allows gaseous communication between the first space 318 and the second space when the second space is exposed to a reduced pressure.
    • 要解决的问题:提供一种液体收集罐,其中来自组织部位的伤口渗出物被收集在罐内以防止液体到达减压源。 解决方案:减压处理系统包括用于从应用减压处理的组织部位收集液体的液体收集罐102。 罐102包括构造成从组织部位收集液体的第一空间318和具有框架304和非平面过滤元件的过滤器104。 过滤器104限定通过过滤元件与罐体102隔开的第二空间,该第二空间与第一空间318分离。 过滤元件足以防止液体从第一空间318进入第二空间。 当第二空间暴露于减压时,过滤元件基本上允许第一空间318和第二空间之间的气体连通。 版权所有(C)2013,JPO&INPIT
    • 9. 发明专利
    • DISC PUMP AND VALVE STRUCTURE
    • CA2845880C
    • 2019-08-20
    • CA2845880
    • 2012-08-22
    • KCI LICENSING INC
    • LOCKE CHRISTOPHER BRIANTOUT AIDAN MARCUS
    • F04B43/04
    • A dual-cavity pump having a pump body with a substantially elliptical shape including a cylindrical wall (11) closed at each end by end plates (12,13) is disclosed. The pump (10) further comprises a pair of disc-shaped interior plates (14,15) supported within the pump by a ring-shaped isolator (30) affixed to the cylindrical wall of the pump body. The internal surfaces of the cylindrical wall (11), the end plate (12), the interior plate (14), and the ring-shaped isolator (30) form a first cavity (16) within the pump. The internal surfaces of the cylindrical wall (11), the end plate (13), the interior plate (15), and the ring-shaped isolator (30) form a second cavity (17) within the pump. The internal surfaces of the first cavity (16) comprise a side wall (18) which is a first portion of the inside surface of the cylindrical wall (11) that is closed at both ends by end walls (20,22) wherein the end wall (20) is the internal surface of the end plate (12) and the end wall (22) comprises the internal surface of the interior plate 14 and a first side of the isolator (30):. The interior plates (14,15) together form an actuator (40) that is operatively associated with the central portion of the end walls (22,23) via the interior plates (22,23). The illustrative embodiments of the dual-cavity pump have three valves including one located within a common end wall between the cavities of the pump.