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    • 24. 发明申请
    • SYSTEMS, METHODS AND APPARATUS FOR RESPIRATORY SUPPORT OF A PATIENT
    • 用于患者呼吸支持的系统,方法和装置
    • US20090255533A1
    • 2009-10-15
    • US12423397
    • 2009-04-14
    • Lutz FreitagGregory KapustAnthony Wondka
    • Lutz FreitagGregory KapustAnthony Wondka
    • A61M16/10A61M16/00A61F2/20A61M25/00
    • A61M16/0465A61M16/0006A61M16/0063A61M16/024A61M16/0468A61M2016/0021A61M2016/0027A61M2016/0413
    • Spontaneous respiration is detected by sensors. An additional amount of oxygen is administered to the lungs via a jet gas current at the end of an inhalation procedure. Breathing volume, absorption of oxygen during inhalation, and clearance of carbon dioxide during exhalation are improved. If required, the exhalation procedure of the patient can be arrested or slowed by a countercurrent to avoid a collapse of the respiration paths. An apparatus including an oxygen pump can be connected to an oxygen source and includes a tracheal prosthesis that can be connected via a catheter. The respiration detections sensors are connected to a control unit for activating the oxygen pump. The tracheal prosthesis includes a tubular support body with a connection for the catheter, and the sensors are associated with the support body. The tracheal prosthesis and jet catheter are dimensioned so the patient can freely breathe and speak without restriction.
    • 传感器检测到自发呼吸。 在吸入程序结束时通过喷射气流向肺部施加额外量的氧气。 吸入期间吸气量,吸氧量,呼气过程中二氧化碳清除率有所提高。 如果需要,患者的呼气程序可以通过逆流来阻止或减慢,以避免呼吸路径的崩溃。 包括氧气泵的装置可以连接到氧源并且包括可以经由导管连接的气管假体。 呼吸检测传感器连接到用于激活氧气泵的控制单元。 气管假体包括具有用于导管的连接的管状支撑体,并且传感器与支撑体相关联。 气管假体和喷气导管的尺寸使患者能够自由地呼吸并且无限制地说话。
    • 30. 发明授权
    • Systems, methods and apparatus for respiratory support of a patient
    • 用于患者呼吸支持的系统,方法和装置
    • US07533670B1
    • 2009-05-19
    • US11523519
    • 2006-09-20
    • Lutz FreitagGregory KapustAnthony Wondka
    • Lutz FreitagGregory KapustAnthony Wondka
    • A61M16/00
    • A61M16/0465A61M16/0006A61M16/0063A61M16/024A61M16/0468A61M2016/0021A61M2016/0027A61M2016/0413
    • Spontaneous respiration is detected by sensors. An additional amount of oxygen is administered to the lungs via a jet gas current at the end of an inhalation procedure. Breathing volume, absorption of oxygen during inhalation, and clearance of carbon dioxide during exhalation are improved. If required, the exhalation procedure of the patient can be arrested or slowed by a countercurrent to avoid a collapse of the respiration paths. An apparatus including an oxygen pump can be connected to an oxygen source and includes a tracheal prosthesis that can be connected via a catheter. The respiration detections sensors are connected to a control unit for activating the oxygen pump. The tracheal prosthesis includes a tubular support body with a connection for the catheter, and the sensors are associated with the support body. The tracheal prosthesis and jet catheter are dimensioned so the patient can freely breathe and speak without restriction.
    • 传感器检测到自发呼吸。 在吸入程序结束时通过喷射气流向肺部施加额外量的氧气。 吸入期间吸气量,吸氧量,呼气过程中二氧化碳清除率有所提高。 如果需要,患者的呼气程序可以通过逆流来阻止或减慢,以避免呼吸路径的崩溃。 包括氧气泵的装置可以连接到氧源并且包括可以经由导管连接的气管假体。 呼吸检测传感器连接到用于激活氧气泵的控制单元。 气管假体包括具有用于导管的连接的管状支撑体,并且传感器与支撑体相关联。 气管假体和喷气导管的尺寸使患者能够自由地呼吸并且无限制地说话。