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    • 2. 发明申请
    • Surgical system
    • 手术系统
    • US20110092896A1
    • 2011-04-21
    • US12926609
    • 2010-11-30
    • Christoph KueblerMartin KrausMichael EichlerTobias Maier
    • Christoph KueblerMartin KrausMichael EichlerTobias Maier
    • A61M1/00A61F9/007
    • A61M1/0031A61F9/00745A61M1/0058A61M2210/0612
    • A surgical system (1) for controlling a fluid includes an irrigation line (3), which is connected at one end to a first fluid vessel (2) for holding irrigation fluid (21) and is connected at another end to a surgical handpiece (4). The irrigation fluid (21) can be delivered at a first pressure (p1) to the handpiece (4). The surgical system further includes an aspiration inlet line (7), a second fluid vessel (15) for holding irrigation fluid (22), an aspiration venting line (14), which connects the second fluid vessel (15) to the aspiration inlet line (7), a venting valve (17), which is provided in the aspiration venting line (14) and which can switch in dependence on the fluid pressure in the aspiration inlet line (7) and/or irrigation line (3). The second fluid vessel (15) is connected to a pneumatic pressure system (23) with which the fluid (22) in the second fluid vessel (15) can be subjected to a second pressure (p2) that is higher than the first pressure (p1) in the first fluid vessel (2).
    • 一种用于控制流体的手术系统(1)包括:灌注管线(3),其一端连接到用于保持冲洗流体(21)的第一流体容器(2),并且在另一端连接到外科手持件 4)。 灌注流体(21)可以以第一压力(p1)输送到手持件(4)。 所述手术系统还包括抽吸入口管线(7),用于保持冲洗流体(22)的第二流体容器(15),将所述第二流体容器(15)连接到所述抽吸入口管线 (7),排气阀(17),其设置在吸气排放管线(14)中并且可以根据抽吸入口管线(7)和/或灌溉管线(3)中的流体压力进行切换。 第二流体容器(15)连接到气动压力系统(23),第二流体容器(15)中的流体(22)可以经受比第一压力高的第二压力(p2) p1)在第一流体容器(2)中。
    • 7. 发明授权
    • Surgical system and method for controlling fluid when treating a cataract with the phacoemulsification technique
    • 用超声乳化技术治疗白内障手术系统和控制流体的方法
    • US07947009B2
    • 2011-05-24
    • US11898091
    • 2007-09-10
    • Christoph KüblerMichael EichlerTobias Maier
    • Christoph KüblerMichael EichlerTobias Maier
    • A61M1/00
    • A61M1/0031A61M1/0058
    • A surgical system controls a fluid and includes an irrigation line and a first fluid vessel for holding the irrigation fluid. The irrigation line connects the first fluid vessel to a handpiece. An aspiration input line connects a suction pump to the surgical handpiece and permits the suction pump to draw fluid through the surgical handpiece. A pressure sensor detects the pressure of the fluid in the aspiration input line. An aspiration output line connects the suction pump to a collection vessel to permit fluid from the suction pump to be conducted into the collection vessel. A second fluid vessel accommodates irrigation fluid therein and an aspiration ventilation line connects the second fluid vessel to the aspiration input line. A venting valve in the aspiration ventilation line is switchable in dependence upon the fluid pressure in the aspiration input line.
    • 手术系统控制流体并且包括灌溉管线和用于保持冲洗流体的第一流体容器。 灌溉线将第一流体容器连接到手持件。 抽吸输入线将抽吸泵连接到外科手持件,并允许抽吸泵通过外科手持件抽取流体。 压力传感器检测吸入输入线中的流体的压力。 抽吸输出线将抽吸泵连接到收集容器,以允许来自抽吸泵的流体被导入收集容器中。 第二流体容器容纳灌洗流体,并且抽吸通气线将第二流体容器连接到抽吸输入管线。 抽吸通气管道中的排气阀可根据抽吸输入管线中的流体压力而切换。
    • 8. 发明申请
    • Surgical system
    • 手术系统
    • US20080082040A1
    • 2008-04-03
    • US11898091
    • 2007-09-10
    • Christoph KublerMichael EichlerTobias Maier
    • Christoph KublerMichael EichlerTobias Maier
    • A61M1/00
    • A61M1/0031A61M1/0058
    • A surgical system controls a fluid and includes an irrigation line for conducting an irrigation fluid; a first fluid vessel for holding the irrigation fluid; and, a surgical handpiece. The irrigation line has a first end connected to the first fluid vessel and a second end connected to the handpiece. The system further includes a suction pump having an inlet and an outlet; an aspiration input line arranged between the inlet of the suction pump and the surgical handpiece so as to permit the suction pump to draw fluid through the surgical handpiece; a pressure sensor for detecting the pressure of the fluid in the aspiration input line; a collection vessel; an aspiration output line connecting the outlet of the suction pump to the collection vessel so as to permit fluid from the outlet of the suction pump to be conducted into the collection vessel; a second fluid vessel for accommodating irrigation fluid therein; an aspiration ventilation line for connecting the second fluid vessel to the aspiration input line; and, a venting valve provided in the aspiration ventilation line and the venting valve being switchable in dependence upon the fluid pressure in the aspiration ventilation line.
    • 手术系统控制流体并且包括用于引导冲洗流体的灌溉线; 用于保持冲洗流体的第一流体容器; 和一个外科手机。 灌溉线具有连接到第一流体容器的第一端和连接到手持件的第二端。 该系统还包括具有入口和出口的抽吸泵; 抽吸输入管线,布置在抽吸泵的入口和手术手柄之间,以允许抽吸泵通过外科手持件抽取流体; 用于检测吸入输入管线中的流体压力的压力传感器; 收集船 抽吸输出线,其将抽吸泵的出口连接到收集容器,以便允许来自抽吸泵的出口的流体被导入收集容器; 用于在其中容纳冲洗流体的第二流体容器; 用于将第二流体容器连接到抽吸输入管线的抽吸通气管线; 并且设置在吸气通气管线中的排气阀和排气阀可根据吸气通气管线中的流体压力而切换。
    • 10. 发明申请
    • METHOD FOR INDIVIDUAL TRACKING OF METALLIC HOLLOW BODIES
    • 金属中空体的单独跟踪方法
    • US20110218661A1
    • 2011-09-08
    • US13001115
    • 2009-06-19
    • Dirk Van WellManfred AchterkampMichael Eichler
    • Dirk Van WellManfred AchterkampMichael Eichler
    • G06F19/00
    • G06K1/121B21C37/06B21C51/005G06K19/06037G06K19/06046
    • The invention relates to a method for the individual tracking of metallic hollow bodies, in particular hot-fabricated steel tubes, wherein following a final step of hot-work the individual tube is provided with a distinctive identification on the tube circumference, which is read in the feed region to the subsequent manufacturing or test stations automatically as a video image during transport and independently from the direction of transport. According to the invention, the labeling of the tube circumference is carried out in at least two segment-like sections, the tube circumference being divided, wherein the labeling is carried out in segments with a rotation of less than 360 DEG of the numbering unit and the segments comprise an axial offset relative to the longitudinal axis of the tube, which is greater than the width of the data matrix code.
    • 本发明涉及一种用于个体跟踪金属中空体,特别是热制钢管的方法,其中在热加工的最后步骤之后,在管圆周上提供独特的标识,其被读入 将后续制造或测试站的进料区域自动地作为运输过程中的视频图像并且独立于运输方向。 根据本发明,管圆周的标记在至少两个节段状部分中进行,管圆周被分割,其中标记以小于编号单位的360°的旋转的段进行, 这些段包括相对于管的纵向轴线的轴向偏移,其大于数据矩阵代码的宽度。