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    • 1. 发明授权
    • O2-controller
    • US10561810B2
    • 2020-02-18
    • US12162764
    • 2007-01-30
    • Josef BrunnerMarc WysockiThomas Laubscher
    • Josef BrunnerMarc WysockiThomas Laubscher
    • A61M16/10A61M16/00
    • The invention relates to a device for the regulation of PEEP and FiO2 of a ventilator for achieving an arterial oxygen partial pressure in the blood of a mechanically ventilated patient. At reading which is representative of the success of the oxygen supply, i.e. the oxygen saturation of the blood is measured with the device, and assigned to one of three regions, which are defined by two characteristic lines. A first control loop is designed to optimise PEEP and FiO2 on assigning a reading to a region which demands a change of the settings, or to retaining the settings with an assignment to the normal region between the characteristic lines. This first control loop carries out such an optimisation at predefined temporal intervals on account of the representative reading (SaO2REP) and a predefined necessary supply intensity. The ventilator is subsequently activated accordingly. Therebetween, if necessary only FiO2 is increased or reduced with a second control loop, if between optimisations by way of the first control loop, the current representative value (SaO2REP) falls below a limit value (characteristic line) which is dependent on the supply intensity, which demands an immediate increase of the oxygen supply.
    • 5. 发明申请
    • APPARATUS FOR REGULATING A MECHANICAL VENTILATION
    • 用于调节机械通风的装置
    • US20090007915A1
    • 2009-01-08
    • US12162781
    • 2007-01-30
    • Josef BrunnerMarc WysockiThomas Laubscher
    • Josef BrunnerMarc WysockiThomas Laubscher
    • A61M16/00
    • A61M16/0051A61M16/024A61M2230/202A61M2230/205A61M2230/005
    • The invention relates to a device, with which one is to prevent a patient who breathes on Ms own and who desires a lower CO2-partial-pressure than is achieved by the set Ventilation from tiring. It comprises the following means for the regulation of a changing intensity of a mechanical Ventilation: • means for determining a target frequency RRsp, • means for determining a spontaneous frequency RRspont • means for comparing the spontaneous frequency RRspont with the target frequency RRsp. wherein adapting a Ventilation target value (% MinVol, V′gAsp) on account of the result of the comparison of the spontaneous frequency RRspont with the target frequency RRsp and • means for adapting the parameters determining the intensity of the Ventilation, on account of the Ventilation target value (% MinVol, V′gAsp). This so-called pump support System (PSS) is activated (PSS on) when the patient breathes in an adequately spontaneous manner (Criterion 1). With an insufficient individual activity of the patient, his behaviour is taken as a basis for the control of the regulation. The control or regulation of the Ventilation is assumed by a fixed setting of a Ventilation target value (% MinVol), or a CO2-controller, as soon as the patient breathes in a manner which is not spontaneous enough.
    • 本发明涉及一种装置,其中一种是防止呼吸自己的患者,并且希望比通过设定的通气达到的较低的二氧化碳分压比疲劳。 它包括以下用于调节机械通气变化强度的方法:。 用于确定目标频率RRsp的手段。 用于确定自发频率RRspont的方法。 用于将自发频率RRspont与目标频率RRsp进行比较的手段。 其中根据自发频率RRspont与目标频率RRsp的比较的结果来适配通气目标值(%MinVol,V'gAsp)。 考虑到通气目标值(%MinVol,V'gAsp),适应决定通气强度的参数的方法。 当患者以充分自发的方式呼吸时,所谓的泵支持系统(PSS)被激活(PSS on)(标准1)。 患者的个人活动不足,他的行为被视为控制监管的依据。 只要患者以不足够自发的方式呼吸,就可以通过通气目标值(%MinVol)或二氧化碳控制器的固定设置来控制或调节通气。
    • 7. 发明申请
    • O2 - Controller
    • O2 - 控制器
    • US20080314385A1
    • 2008-12-25
    • US12162764
    • 2007-01-30
    • Josef BrunnerMarc WysockiThomas Laubscher
    • Josef BrunnerMarc WysockiThomas Laubscher
    • A61M16/10
    • The invention relates to a device for the regulation of PEEP and FiO2 of a ventilator for achieving an arterial oxygen partial pressure in the blood of a mechanically ventilated patient. At reading which is representative of the success of the oxygen supply, i.e. the oxygen saturation of the blood is measured with the device, and assigned to one of three regions, which are defined by two characteristic lines. A first control loop is designed to optimise PEEP and FiO2 on assigning a reading to a region which demands a change of the settings, or to retaining the settings with an assignment to the normal region between the characteristic lines. This first control loop carries out such an optimisation at predefined temporal intervals on account of the representative reading (SaO2REP) and a predefined necessary supply intensity. The ventilator is subsequently activated accordingly. Therebetween, if necessary only FiO2 is increased or reduced with a second control loop, if between optimisations by way of the first control loop, the current representative value (SaO2REP) falls below a limit value (characteristic line) which is dependent on the supply intensity, which demands an immediate increase of the oxygen supply.
    • 本发明涉及一种用于调节机械通气患者的血液中用于实现动脉氧分压的通气机的PEEP和FiO2的装置。 在代表氧供应成功的阅读中,即用装置测量血液的氧饱和度,并分配给由两条特征线限定的三个区域之一。 第一个控制回路被设计为优化PEEP和FiO2,以将读数分配给需要改变设置的区域,或者通过赋予特征线之间的正常区域来保留设置。 考虑到代表性读数(SaO2REP)和预定义的必需供应强度,该第一控制环路以预定义的时间间隔进行这种优化。 随后呼吸机被相应地激活。 如果需要,如果需要,仅通过第二控制回路增加或减少FiO2,如果在通过第一控制回路进行优化之间,则当前代表值(SaO2REP)低于取决于供应强度的极限值(特征线) ,这需要立即增加氧气供应。
    • 8. 发明申请
    • METHOD AND A DEVICE FOR SIMPLIFYING A DIAGNOSTIC ASSESSMENT OF A MECHANICALLY VENTILATED PATIENT
    • 用于简化机械通气患者诊断评估的方法和装置
    • US20090024008A1
    • 2009-01-22
    • US12162778
    • 2007-01-30
    • Josef BrunnerMarc WysockiIvo Mettier
    • Josef BrunnerMarc WysockiIvo Mettier
    • A61B5/08A61B5/01
    • The invention relates to a method for acquiring several changing values and representing the acquired values on a monitoring screen, as well as to a device with a screen in order, on this, to represent changing values acquired during ventilation of the patient. The device comprises means for acquiring at least three changing values of different origin, and means for representing the values, which permit the acquired values to be qualitatively represented on the screen together in a single graphic element. This graphic element has a pictorial representation of a lung shape. The invention is characterised in that the means for representing the values are designed such that a volume change of the ventilated lung which is detected within each breath, is represented in an animated manner by way of size change of the lung shape corresponding to this corresponding volume change.
    • 本发明涉及一种用于在监视屏幕上获取多个变化值并表示所获取的值的方法,以及具有屏幕的装置,用于表示在病人通气期间获取的变化值。 该装置包括用于获取不同原点的至少三个变化值的装置,以及用于表示值的装置,其允许在单个图形元素中将所获取的值在屏幕上定性表示。 该图形元件具有肺形状的图示。 本发明的特征在于,用于表示值的装置被设计成使得在每个呼吸中检测到的通气肺的体积变化以动画方式通过与该对应体积对应的肺形状的大小变化来表示 更改。