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    • 1. 发明申请
    • CONTROLLING AN APPARATUS FOR FLUID TRANSFER TO AND/OR FROM A SUBJECT
    • 控制流体转移到和/或从主体的流体装置
    • WO2011080186A1
    • 2011-07-07
    • PCT/EP2010/070547
    • 2010-12-22
    • GAMBRO LUNDIA ABOLDE, BoSOLEM, KristianHERTZ, ThomasSTERNBY, JanWIESLANDER, Anders
    • OLDE, BoSOLEM, KristianHERTZ, ThomasSTERNBY, JanWIESLANDER, Anders
    • A61M1/36
    • A61M1/3656A61B5/02125A61B5/0215A61B5/02405A61B5/4836A61M1/30A61M1/3643A61M1/3644A61M1/3653A61M1/3659A61M2205/3331A61M2205/6018
    • A control system (23) is arranged to control the operation of an apparatus (200) for for extracorporeal blood treatment. The apparatus (200) comprises an extracorporeal blood circuit (20) and a connection system (C) for connecting the blood circuit (20) to the vascular system of a patient. The blood circuit (20) comprises a blood processing device (6), and at least one pumping device (3). The control system is operable to switch between a pre-treatment mode and a blood treatment mode. The blood treatment mode involves operating the blood circuit (20) to pump blood from the vascular system via the connection system (C) through the blood processing device (6) and back to the vascular system via the connection system (C). The control system (23) is operable to obtain measurement data from at least one energy transfer sensor (40) arranged to sense a transfer of energy between the patient and the connection system (C) or between the patient and the blood circuit (20). The control system (23) is configured to, in the pre-treatment mode, process the measurement data for identification of a characteristic change indicating a connection of the blood circuit (20) to the vascular system of the patient, and, upon such identification, take dedicated action. The action may involve activating at least part of a patient protection system and/or enabling entry into the blood treatment mode. The control system may be included in an apparatus (200) for blood treatment, such as a dialysis machine.
    • 控制系统(23)被布置成控制用于体外血液处理的装置(200)的操作。 装置(200)包括用于将血液回路(20)连接到患者血管系统的体外血液回路(20)和连接系统(C)。 血液回路(20)包括血液处理装置(6)和至少一个泵送装置(3)。 控制系统可操作以在预处理模式和血液处理模式之间切换。 血液处理模式包括操作血液回路(20),以经由连接系统(C)从血管系统通过血液处理装置(6)泵送血液,并通过连接系统(C)返回血管系统。 控制系统(23)可操作以从至少一个能量传递传感器(40)获得测量数据,所述能量传递传感器(40)布置成感测患者和连接系统(C)之间或病人与血液回路(20)之间的能量传递, 。 控制系统(23)被配置为在预处理模式下处理用于识别指示血液回路(20)与患者的血管系统的连接的特征变化的测量数据,并且在这种识别 ,采取专门的行动。 该动作可以涉及激活患者保护系统的至少一部分和/或使得能够进入血液处理模式。 控制系统可以包括在用于血液处理的装置(200)中,例如透析机。
    • 2. 发明申请
    • METHODS AND DEVICES FOR MONITORING THE INTEGRITY OR A FLUID CONNECTION
    • 用于监测完整性或流体连接的方法和装置
    • WO2009156174A2
    • 2009-12-30
    • PCT/EP2009/004640
    • 2009-06-26
    • GAMBRO LUNDIA ABHERTZ, ThomasSOLEM, KristianROSLUND, AndersSTERNBY, JanFURMANSKI, MartinOLDE, Bo
    • HERTZ, ThomasSOLEM, KristianROSLUND, AndersSTERNBY, JanFURMANSKI, MartinOLDE, Bo
    • A61M1/36
    • G01M3/2846A61M1/3653A61M1/3656A61M1/3659A61M1/3661G01L27/002G01M3/2815G01N33/49
    • A surveillance device (25) monitors the integrity of a fluid connection (C) between first and second fluid containing systems (S 1, S2) based on at least one time-dependent measurement signal from a pressure sensor (4a-4c) in the first fluid containing system (Sl). The first fluid containing system (Sl) comprises a first pulse generator (3), and the second fluid containing system (S2) comprises a second pulse generator (3 '). The pressure sensor (4a-4c) is arranged to detect first pulses originating from the first pulse generator (3) and second pulses originating from the second pulse generator (3 '). The integrity of the fluid connection (C) is determined based on the presence of second pulses in the measurement signal. The second pulses may be detected by analysing the measurement signal in the time domain and/or by using timing information indicative of the timing of the second pulses in said at least one measurement signal. The analysis may be based on a parameter value that represents a distribution of signal values within a time window of the measurement signal. For example, the parameter value may be calculated as a statistical dispersion measure of the signal values, or may result from a matching of the signal values within the time window to a predicted temporal signal profile of a second pulse. The fluid connection (C) may be established between a human blood system and an extracorporeal blood flow circuit, e.g. for extracorporeal blood treatment.
    • 监视装置(25)基于来自压力传感器(4a-4c)的至少一个与时间有关的测量信号来监视第一和第二流体容纳系统(S1,S2)之间的流体连接(C)的完整性 第一流体容纳系统(S1)。 第一流体容纳系统(S1)包括第一脉冲发生器(3),第二流体容纳系统(S2)包括第二脉冲发生器(3')。 压力传感器(4a-4c)被布置成检测源自第一脉冲发生器(3)的第一脉冲和源自第二脉冲发生器(3')的第二脉冲。 流体连接(C)的完整性基于测量信号中第二个脉冲的存在来确定。 可以通过在时域中分析测量信号和/或通过使用指示所述至少一个测量信号中的第二脉冲的定时的定时信息来检测第二脉冲。 分析可以基于表示测量信号的时间窗内的信号值分布的参数值。 例如,可以将参数值计算为信号值的统计色散测量值,或者可以由时间窗口内的信号值与第二脉冲的预测时间信号曲线的匹配产生。 流体连接(C)可以建立在人体血液系统和体外血流回路之间,例如, 用于体外血液治疗。
    • 8. 发明申请
    • OBTAINING CONTROL SETTINGS FOR A DIALYSIS MACHINE
    • 获取一台DIALYSIS机器的控制设置
    • WO2012038384A1
    • 2012-03-29
    • PCT/EP2011/066253
    • 2011-09-20
    • GAMBRO LUNDIA ABHERTZ, Thomas
    • HERTZ, Thomas
    • A61M1/16
    • A61M1/16A61M1/1611A61M1/1613A61M1/3609A61M2202/0498A61M2205/15A61M2205/52G06F19/00G06F19/3481G16H50/20
    • A dialysis machine is configured to perform treatment sessions of renal replacement therapy. Prior to each treatment session for an individual patient, a machine controller in the dialysis machine obtains from a logic device a set of current control settings of the machine-related parameters to be applied in the treatment session. In generating the control settings, the logic device obtains (21B) a set of therapeutic targets comprising a target value that represents part of a desired status of the patient after the treatment session, in terms of one or more physiological parameters for the patient. The logic device also obtains (21A) status data that represents the current status of the patient prior to the treatment session, and computes (22) the set of current control settings of the machine-related parameters, as a function of the set of therapeutic targets and the status data and at least partly based on a predictive model, which estimates the physiological response of the patient to the machine-related parameters during the treatment session. Thereby, the dialysis machine may be inherently controlled to achieve the desired status at the end of the treatment session, based on automatically computed control settings, which reduces the need for the patient to strictly adhere to a predetermined treatment plan, and for the caregiver to manually estimate control settings.
    • 透析机被配置为执行肾脏替代疗法的治疗阶段。 在个体患者的每个治疗阶段之前,透析机器中的机器控制器从逻辑设备获得要在治疗会话中应用的机器相关参数的一组当前控制设置。 在生成控制设置时,逻辑设备根据患者的一个或多个生理参数获得(21B)一组治疗目标,其包括在治疗会话之后代表患者的期望状态的一部分的目标值。 逻辑设备还获得(21A)表示治疗过程之前的患者的当前状态的状态数据,并且计算(22)机器相关参数的当前控制设置的集合,作为治疗组的一组函数 目标和状态数据,并且至少部分地基于预测模型,该预测模型在治疗期间估计患者对机器相关参数的生理反应。 因此,可以固有地控制透析机,以便在治疗阶段结束时,基于自动计算的控制设置来实现期望的状态,这减少了对患者严格遵守预定治疗计划的需要,并且使护理者 手动估算控制设置。