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    • 1. 发明授权
    • Durable carbon electrode
    • 耐用碳电极
    • US06592730B1
    • 2003-07-15
    • US09499479
    • 2000-02-07
    • Daniel N. KelschIain F. McVeyJan J. Lewandowski
    • Daniel N. KelschIain F. McVeyJan J. Lewandowski
    • G01N2726
    • A61L2/186A61L2202/11
    • An electrochemical analysis system includes a chamber (34) that defines a fluid receiving reservoir therein. A working electrode (40), a reference electrode (42), and a counter electrode (44) is mounted to the chamber. An electrochemical analysis circuit (38) applies appropriate voltages to the electrodes and reads appropriate currents from the electrodes to provide an indication of the peroxyacetic acid concentration in a sample. The working electrode includes a glassy carbon rod (60) which is surrounded by a compressible polymeric sleeve (64) and a metal sleeve (66). One end of the metal sleeve is swaged (68) to form a fluid tight compression seal with the insulating sleeve and the glassy carbon rod. An electrically conductive thermal extension joint between the glassy carbon rod and an electrically conductive rod (70) includes a bore (72) in the conductive rod in which the glassy carbon rod is slidably received and a compressed spring (74) in the bore.
    • 电化学分析系统包括在其中限定流体接收容器的腔室(34)。 工作电极(40),参比电极(42)和对电极(44)安装在腔室上。 电化学分析电路(38)对电极施加适当的电压并从电极读取合适的电流以提供样品中过氧乙酸浓度的指示。 工作电极包括由可压缩聚合物套筒(64)和金属套筒(66)包围的玻璃碳棒(60)。 金属套筒的一端被锻压(68)以与绝缘套管和玻璃碳棒形成流体密封的压缩密封。 玻璃碳棒和导电棒(70)之间的导电热延伸接头包括导电棒中的孔(72),玻璃碳棒可滑动地容纳在孔中,孔中的压缩弹簧(74)。
    • 5. 发明授权
    • Fluid spray system for cleaning and sterilizing medical devices supported on a rack
    • 流体喷雾系统,用于清洁和消毒支架在机架上的医疗设备
    • US06582654B1
    • 2003-06-24
    • US09498869
    • 2000-02-07
    • Jude A. KralRobert M. PriestDaniel N. KelschJames C. HlebovyBill R. SanfordAlan J. GreszlerFrancis John ZelinaKenneth J. Klobusnik
    • Jude A. KralRobert M. PriestDaniel N. KelschJames C. HlebovyBill R. SanfordAlan J. GreszlerFrancis John ZelinaKenneth J. Klobusnik
    • A61L218
    • A61L2/186A61B1/123A61B1/125A61L2/22A61L2/24A61L2202/17A61L2202/24
    • A fluid delivery system (20) for an automated processor (A) includes spray nozzles (102, 104, 106, 108, 110) for sequentially spraying washing, microbial decontaminant and rinsing solutions over a lumened device (B), such as an endoscope. The fluid delivery system also includes connection ports (150, 152, 154) for connecting with internal passages (187) of the device to deliver the washing and microbial decontaminant solutions thereto. A removable rack (21), specially configured for the particular device, positions the device within a chamber (12). The spray nozzles are located on rear and side walls (114, 116, 118) and on a door (18) of the chamber, such that the device is impinged with spray from all directions. Sets (102, 104) of the spray nozzles are pulsed in sequence so that the spray jets (122) do not cancel each other out. Leaking connectors (184) connect the automated processor connection ports with inlet ports (196) of the device and allow a portion of the cleaning, decontaminant, and rinsing solutions to leak from each inlet port. A computer control system (80) controls cleaning, decontamination, rinsing, and drying stages of a cycle, which are all carried out within the chamber, obviating the need for human contact with the device during processing.
    • 用于自动处理器(A)的流体输送系统(20)包括用于在诸如内窥镜的流明装置(B)上顺序地喷射洗涤,微生物净化剂和冲洗溶液的喷嘴(102,104,106,108,110) 。 流体输送系统还包括用于与装置的内部通道(187)连接以将洗涤和微生物净化剂溶液输送到其的连接端口(150,152,154)。 专门为特定装置配置的可拆装架(21)将装置定位在室(12)内。 喷嘴位于后壁和侧壁(114,116,118)上并且位于室的门(18)上,使得该装置从所有方向撞击喷雾。 喷雾喷嘴的组(102,104)依次脉冲,使得喷射喷嘴(122)不彼此抵消。 泄漏连接器(184)将自动化处理器连接端口与设备的入口端口(196)连接,并允许一部分清洁,去污剂和冲洗溶液从每个入口端口泄漏。 计算机控制系统(80)控制循环的清洁,净化,漂洗和干燥阶段,这些阶段都在室内进行,从而避免了在处理过程中与人体接触的需要。
    • 6. 发明授权
    • Three part cup for packaging cleaning and sterilizing agents and sequential cutter
    • 三部分杯子用于包装清洁和灭菌剂和顺序切割机
    • US06482358B1
    • 2002-11-19
    • US09499241
    • 2000-02-07
    • Daniel N. KelschJude A. KralJoseph TvcrgyakBernard J. MossJames C. HlebovyArthur T. NagareJeffery R. Horacek
    • Daniel N. KelschJude A. KralJoseph TvcrgyakBernard J. MossJames C. HlebovyArthur T. NagareJeffery R. Horacek
    • A61L200
    • A61L2/18Y10T137/4891
    • A sequential delivery assembly (30) sequentially releases three different treatment materials into a fluid flow path (24) to form a treatment fluid with a composition which varies throughout a cleaning and microbial decontamination cycle. A chamber (12) receives items to be cleaned and decontaminated. A pump (22) pumps the treatment fluid from the sequential delivery assembly along a fluid flow line (24) to nozzles (16, 18) disposed within the chamber. The nozzles spray the treatment fluid over the items to be cleaned and decontaminated. The delivery assembly includes a well (34) for receiving a three compartment cup (44). The cup contains a first compartment (70) which includes a cleaning material (76), such as a detergent. A second compartment (72) contains pre-treatment materials (78), such as buffers and corrosion inhibitors, which prepare the system for receiving a microbial decontaminant (80), such as a concentrated solution of peracetic acid, contained in the third compartment (74). The sequential delivery assembly includes a cup cutter assembly which sequentially cuts base portions (90, 94, 118) of the three compartments to release the treatment materials into the fluid flow line. The system allows items to be cleaned and then microbially decontaminated in a single process, avoiding the need to handle potentially hazardous instruments between cleaning and decontamination steps and ensures thorough cleaning and decontamination of the instruments with measured doses of the treatment materials.
    • 顺序递送组件(30)将三种不同的处理材料顺序地释放到流体流动路径(24)中以形成具有在整个清洁和微生物净化循环中变化的组合物的处理流体。 室(12)接收待清洁和净化的物品。 泵(22)将处理流体从顺序输送组件沿着流体流动管线(24)泵送到设置在室内的喷嘴(16,18)。 喷嘴将处理液喷射到待清洁和净化的物品上。 输送组件包括用于接收三隔室杯(44)的孔(34)。 杯子包括第一隔室(70),其包括诸如洗涤剂的清洁材料(76)。 第二隔室(72)包含预处理材料(78),例如缓冲剂和腐蚀抑制剂,其制备用于接收包含在第三隔室中的微生物净化剂(80)如过乙酸的浓缩溶液的系统 74)。 顺序递送组件包括杯切割器组件,其顺序地切割三个隔室的基部(90,94,118),以将处理材料释放到流体流动管线中。 该系统允许物品在单一过程中进行清洁,然后微生物净化,避免在清洁和去污步骤之间处理潜在的危险仪器,并确保用测量剂量的处理材料彻底清洁和净化仪器。