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    • 4. 发明申请
    • METHOD FOR DOSING A SUBSTITUATE WHICH WAS PRODUCED BY A BLOOD TREATMENT APPARATUS AS WELL AS APPARATUSES
    • 用于制备由血液处理装置生产的取代物的方法,如装置
    • US20130240443A1
    • 2013-09-19
    • US13798758
    • 2013-03-13
    • Soeren GronauJuergen HaeckerRalf Mueller
    • Soeren GronauJuergen HaeckerRalf Mueller
    • A61M1/16
    • A61M1/16A61M1/1605A61M1/3462A61M1/3465A61M2205/3331A61M2205/3334
    • The present invention relates to methods for dosing a substituate produced by a blood treatment apparatus. Dosing for the present invention is via a hydraulic system of the blood treatment apparatus, the hydraulic system having at least one dialysis liquid supply line which leads into a dialyzer and at least one substituate line. Regulating or controlling the size of the share which passes through the second filtration stage is performed by affecting at least one conveying apparatus and/or at least one flow limitation device and/or a flow divider valve, which are each located or which each operate in the dialysis liquid supply line and/or the substituate line and/or in the branch line which connects the dialysis liquid supply line with the substituate line. The present invention further relates to a control device, a blood treatment apparatus, a medical functional apparatus, and a computer-readable storage medium related to the methods.
    • 本发明涉及用于给血液处理装置产生的取代基进行给药的方法。 用于本发明的剂量是通过血液处理设备的液压系统,该液压系统具有至少一个通向透析器和至少一个取代线的透析液体供应管线。 通过影响至少一个输送装置和/或至少一个流量限制装置和/或分流器阀来执行通过第二过滤级的份额的调节或控制,这些流量限制装置和/或分流阀各自位于或分别操作 透析液供给管线和/或取代线和/或连接透析液供给管线与取代线的分支管路。 本发明还涉及与该方法相关的控制装置,血液处理装置,医疗功能装置和计算机可读存储介质。
    • 5. 发明授权
    • Optical system
    • 光学系统
    • US08379188B2
    • 2013-02-19
    • US12782831
    • 2010-05-19
    • Ralf MuellerToralf Gruner
    • Ralf MuellerToralf Gruner
    • G03B27/72G03B27/54
    • G02B5/3083G02B1/08G03F7/70141G03F7/70191G03F7/70258G03F7/70308G03F7/70566G03F7/70966
    • The disclosure provides an optical system having an optical axis, where the optical system includes a polarization manipulator which includes first and second subelements. The first subelement has a non-planar, optically effective surface. For light passing through the first subelement, the first subelement causes a change in the polarization state. A maximum effective retardation introduced by the first subelement along the optical axis is less than a quarter of the working wavelength of the optical system. The first subelement and the second subelement have mutually facing surfaces which are mutually complementary. The optical system also includes a position manipulator to manipulate the relative position of the first and second subelements.
    • 本公开提供了一种具有光轴的光学系统,其中光学系统包括包括第一和第二子元件的偏振操纵器。 第一个子元件具有非平面的光学有效表面。 对于通过第一子元件的光,第一子元件导致极化状态的变化。 由第一子元件沿着光轴引入的最大有效延迟小于光学系统的工作波长的四分之一。 第一子元件和第二子元件具有相互互补的相互面对的表面。 光学系统还包括位置操纵器来操纵第一和第二子元件的相对位置。
    • 7. 发明授权
    • Catadioptric projection objective
    • 反射折射投影物镜
    • US08300211B2
    • 2012-10-30
    • US12748862
    • 2010-03-29
    • Alexander EppleToralf GrunerRalf Mueller
    • Alexander EppleToralf GrunerRalf Mueller
    • G03B27/54G03B27/42
    • G02B13/143G02B17/0892G03F7/70225
    • Catadioptric projection objective (1) for microlithography for imaging an object field (3) in an object plane (5) onto an image field (7) in an image plane (9), including a first partial objective (11) imaging the object field onto a first real intermediate image (13), a second partial objective (15) imaging the first intermediate image onto a second real intermediate image (17) and a third partial objective (19) imaging the second intermediate image onto the image field (7). The second partial objective (15) has exactly one concave mirror (21) and at least one lens (23). The minimum distance between an optically utilized region of the concave mirror (21) and an optically utilized region of a surface (25)—facing the concave mirror—of a lens (23) adjacent to the concave mirror is greater than 10 mm.
    • 用于微光刻的反折射投影物镜(1),用于将物平面(5)中的物场(3)成像到图像平面(9)中的图像场(7),包括对物场进行成像的第一部分物镜(11) 到第一实际中间图像(13),将第一中间图像成像到第二实际中间图像(17)上的第二部分目标(15)和将第二中间图像成像到图像场(7)上的第三部分目标(19) )。 第二部分物镜(15)具有正好一个凹面镜(21)和至少一个透镜(23)。 凹面镜(21)的光学利用区域与与凹面镜相邻的透镜(23)的凹面镜的表面(25)的光学利用区域之间的最小距离大于10mm。
    • 8. 发明授权
    • Wrapper sealing process and article
    • 包装封口工艺及制品
    • US08221371B2
    • 2012-07-17
    • US12444656
    • 2007-10-12
    • Joseph JunioDavid L. KimballRalf MuellerTony Ng
    • Joseph JunioDavid L. KimballRalf MuellerTony Ng
    • A61F13/15A61F13/20A61L15/00B65B11/00B26D7/27
    • A61F13/2085A61F13/55175A61F15/003Y10S604/904
    • A process for overwrapping a catamenial device such as a tampon includes the steps of providing a substantially cylindrical overwrapper material, inserting a catamenial device into the overwrap material, and closing the open end of the overwrapper material. The overwrapper material has an open end, a closed end, and a first length. The catamenial device has a tapered insertion end, a longitudinal axis, and a length less than the first length, such that the open end of the overwrapper material extends beyond the insertion end of the inserted catamenial device. Concave clamping jaws are applied to the open end of the overwrapper material to urge it toward the longitudinal axis of the catamenial device; to conform portions of the overwrapper material to the insertion end of the catamenial device; and to fold overwrapper material between adjacent clamping jaws to form fins extending outwardly from the conformed portions.
    • 用于包装月经装置(例如卫生棉条)的方法包括以下步骤:提供基本上圆柱形的外包装材料,将月经装置插入外包装材料中,以及封闭外包装材料的开口端。 外包装材料具有开口端,封闭端和第一长度。 月经装置具有锥形插入端,纵向轴线和小于第一长度的长度,使得外包裹材料的开口端延伸超过插入的月经装置的插入端。 凹面夹钳被施加到外包装材料的开口端以将其推向月经装置的纵向轴线; 将外包装材料的一部分配合到月经装置的插入端; 并且在相邻夹爪之间折叠外包装材料以形成从配合部分向外延伸的翅片。
    • 9. 发明授权
    • System and method for retroactive, dynamic monitoring of low layout heights in dangerous events
    • 在危险事件中追溯,动态监测低布局高度的系统和方法
    • US08010392B2
    • 2011-08-30
    • US11996080
    • 2005-07-19
    • Ralf MuellerMichael BuserLudwig KellerGrazyna SaganowskaMichael Stengle
    • Ralf MuellerMichael BuserLudwig KellerGrazyna SaganowskaMichael Stengle
    • G06Q40/00
    • G06Q40/08G06Q10/067G06Q40/00
    • A system and method for retroactive, dynamic determination, and monitoring of collateralization levels of technical installations to aggregate and analyze measured data and to activate financial assets, including dynamically determining a configuration based on acquired data specific to a mode of operation, the configuration being stored with an assignment to the corresponding mode of operation via a lookup table, performing an aggregation and an analysis of operation-specific-measured-data via the network, the operation-specific-measured-data being assigned by the lookup table to at least one specific parameter to determine corresponding collateralization levels by the statistical analysis module on the basis of the operation-specific-measured-data, and dynamically adapting the corresponding collateralization levels on the basis of at least one of a request and a determinable time interval by the monitoring unit and activating the financial assets to increase the collateralization levels, in response to exceeding a definable deviation value relative to the operation-specific-measured-data.
    • 用于追溯,动态确定和监测技术装置的抵押水平的系统和方法,用于汇总和分析测量数据并激活金融资产,包括基于特定于操作模式的获取数据动态地确定配置,存储的配置 通过查找表对相应的操作模式进行分配,经由网络执行对操作特定测量数据的聚合和分析,由查找表分配的操作特定测量数据至少一个 特定参数,由统计分​​析模块基于操作特定测量数据确定相应的抵押水平,并且通过监视来基于请求和可确定的时间间隔中的至少一个动态地适应相应的抵押水平 单位和激活金融资产增加抵押品 响应于相对于操作特定测量数据超过可定义的偏差值。