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    • 21. 发明授权
    • APPARATUS FOR LIQUID VENTILATION AND CONTROL PROCESS THEREOF
    • VORRICHTUNG ZUR FLUISIGKEITSVENTILATION UND REGELUNVERVERHHENDAFÜR
    • EP0683683B1
    • 2000-01-12
    • EP93923821.8
    • 1993-10-08
    • Temple University of the Commonwealth System of Higher Education
    • SHAFFER, Thomas, H.WOLFSON, Marla, R.
    • A61M16/00
    • A61M16/0054A61M16/024A61M2016/1025A61M2202/0476Y10S128/913
    • A process is provided for controlling a ventilation procedure wherein a liquid ventilation system passes breathing liquid through at least a portion of a patient's pulmonary pathways. In this process, desired ranges for certain process parameters associated with the liquid ventilation system are established. These desired ranges are input into a central processing unit (50). Initial settings for the liquid ventilation system are then made such that the actual conditions which will initially occur during the liquid ventilation procedure fall within their respective desired ranges. Thereafter, the procedure is commenced. During the procedure, conditions are continually monitored by sensors (16, 21, 27). The CPU (50) compares the sensor readings with the desired ranges, and acts to correct any discrepancy. The CPU can trigger alarms (514).
    • 提供了一种用于控制通气程序的过程,其中液体通气系统使呼吸液体通过患者肺通路的至少一部分。 在该过程中,建立了与液体通气系统相关联的某些工艺参数的期望范围。 这些期望的范围被输入到中央处理单元中。 然后进行液体通气系统的初始设置,使得在液体通气过程中最初发生的实际状况落入其各自的期望范围内。 此后,液体通气程序开始。 在液体通气过程中,通过适当的传感器连续监测与建立的范围有关的条件。 所监视的信息也被输入到中央处理单元。 中央处理单元被设计为将实际发生的监视条件与它们各自的期望范围进行比较,并且确定是否存在差异。 如果存在差异,则中央处理单元产生用于校正差异的信号。 这些信号可被设计成触发报警,指示操作者进行适当的调整和/或激活伺服控制的阀门网络。
    • 22. 发明公开
    • LIQUID VENTILATION METHOD AND APPARATUS
    • VERFAHREN UND VORRICHTUNG ZURFLÜSSIGENBEATMUNG
    • EP0910423A1
    • 1999-04-28
    • EP97914885.0
    • 1997-03-07
    • Life Resuscitation Technologies, Inc.
    • FEDEROWICZ, Michael, G.KLATZ, Ronald, M.
    • A61M16A61M3
    • A61M16/0054A61M3/0258A61M3/0283A61M16/042A61M16/1065A61M2202/0476Y10S128/913
    • This invention is a method and apparatus for liquid ventilation to increase the efficacy of cardiopulmonary resuscitation (CPR). The method includes replacing gas in the lungs with an oxygen and carbon dioxide carrying liquid to eliminate the decreased pumping efficiency of the heart seen during conventional or active compression/decompression (ACD) closed chest CPR without a mechanical respirator. An advantage is provided by supplying a continuous flow of liquid (or gaseous) ventilation medium throughout the entire chest compression/re-expansion cycle, accelerating both gas exchange and cooling or warming of the patient or animal subject. In the apparatus (100), breathing liquid returns from a patient via tube (101) and is supplied via tube (190), tubes (101, 190) being connected to an endotracheal tube (200). The apparatus includes a reservoir (110), an oxygenator (120), and a heater (130).
    • 一种利用液体通气来增加心肺复苏(CPR)功效的方法和装置。 该方法包括用携带氧气和二氧化碳的液体替换肺中的气体,以消除在常规或主动压缩减压(ACD)闭合胸腔CPR期间看到的心脏泵送效率降低。 ACD-CPR中的另一个优点是无机械呼吸器进行液体通气的能力。 通过在整个胸部压缩/再膨胀循环中提供液体(或气体)通气介质的连续流动来提供进一步的优点,显着加速患者或动物受试者的气体交换和冷却或变暖。
    • 27. 发明公开
    • PROCESS CONTROL FOR LIQUID VENTILATION
    • VERFAHRENSREGELUNG BEIFLÜSSIGKEITSVENTILATION。
    • EP0683683A1
    • 1995-11-29
    • EP93923821.0
    • 1993-10-08
    • Temple University of the Commonwealth System of Higher Education
    • SHAFFER, Thomas, H.WOLFSON, Marla, R.
    • A61M16
    • A61M16/0054A61M16/024A61M2016/1025A61M2202/0476Y10S128/913
    • A process is provided for controlling a ventilation procedure wherein a liquid ventilation system passes breathing liquid through at least a portion of a patient's pulmonary pathways. In this process, desired ranges for certain process parameters associated with the liquid ventilation system are established. These desired ranges are input into a central processing unit (50). Initial settings for the liquid ventilation system are then made such that the actual conditions which will initially occur during the liquid ventilation procedure fall within their respective desired ranges. Thereafter, the procedure is commenced. During the procedure, conditions are continually monitored by sensors (16, 21, 27). The CPU (50) compares the sensor readings with the desired ranges, and acts to correct any discrepancy. The CPU can trigger alarms (514).
    • 提供了一种用于控制通气程序的过程,其中液体通气系统使呼吸液体通过患者肺通路的至少一部分。 在该过程中,建立了与液体通气系统相关联的某些工艺参数的期望范围。 这些期望的范围被输入到中央处理单元中。 然后进行液体通气系统的初始设置,使得在液体通气过程中最初发生的实际状况落入其各自的期望范围内。 此后,液体通气程序开始。 在液体通气过程中,通过适当的传感器连续监测与建立的范围有关的条件。 所监视的信息也被输入到中央处理单元。 中央处理单元被设计为将实际发生的监视条件与它们各自的期望范围进行比较,并且确定是否存在差异。 如果存在差异,则中央处理单元产生用于校正差异的信号。 这些信号可被设计成触发报警,指示操作者进行适当的调整和/或激活伺服控制的阀门网络。