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    • 52. 发明申请
    • CARDIOPULMONARY RESUSCITATION UNIT CONTROL APPARATUS
    • 心脏保护装置控制装置
    • US20090187123A1
    • 2009-07-23
    • US12298255
    • 2006-10-02
    • Sung-Oh HwangWon-Chul Kim
    • Sung-Oh HwangWon-Chul Kim
    • A61H31/02
    • A61H31/008A61H31/006A61H2201/5007A61H2201/5064A61H2201/5071A61M16/00
    • The present invention relates to a controller for a cardiopulmonary resuscitation apparatus. Automation and precise control can be realized in the cardiopulmonary resuscitation apparatus by using a driving unit involving in constricting the chest band of the cardiopulmonary resuscitation apparatus, locking, and pressing the chest by air pressure, and a control unit controlling the driving unit according to a control signal. Further, air pressure used in driving the cardiopulmonary resuscitation apparatus is controlled so as to be also supplied to a line of artificial respiration, such that a simple construction of the cardiopulmonary resuscitation apparatus and automation of artificial respiration are obtained. Thanks to the present invention, the operator does not have to care about the operation of the cardiopulmonary resuscitation apparatus while performing cardiopulmonary resuscitation, which allows the operator pay more attention to taking care of a patient.
    • 本发明涉及一种用于心肺复苏装置的控制器。 通过使用涉及收缩心肺复苏装置的胸带,通过气压来锁定和按压胸部的驱动单元,可以在心肺复苏装置中实现自动化和精确控制,以及控制单元根据 控制信号。 此外,控制用于驱动心肺复苏装置的空气压力也被提供给人造呼吸线,从而获得心肺复苏装置的简单结构和人工呼吸的自动化。 由于本发明,操作者在进行心肺复苏时不必关心心肺复苏装置的操作,这允许操作者更加注意照顾病人。
    • 56. 发明授权
    • Ventilator apparatus
    • 呼吸机设备
    • US5988166A
    • 1999-11-23
    • US750179
    • 1997-04-10
    • Zamir Hayek
    • Zamir Hayek
    • A61H31/02A61M16/20A61M16/00
    • A61H31/02A61M16/20
    • Ventilator apparatus for ventilating the lungs of a patient comprises a source of as pressure to be applied internally or externally to a patient's lungs. The alternating pressure has a complex waveform deconstructable into a large amplitude waveform of a first frequency which may be produced by a blower (18) and a valve (10) and a lower amplitude waveform of a higher frequency which may be produced by a second blower and valve unit (4).
    • PCT No.PCT / GB95 / 01248 Sec。 371日期1997年04月10日 102(e)日期1997年4月10日PCT提交1995年5月31日PCT公布。 WO95 / 32753 PCT出版物 1995年12月7日,用于使患者的肺通气的通气器装置包括作为内部或外部施用于患者肺部的压力源。 交变压力具有可解构成可由鼓风机(18)和阀(10)产生的第一频率的大振幅波形的复数波形和可由第二鼓风机(18)产生的较高频率的较低振幅波形 和阀单元(4)。
    • 59. 发明授权
    • Valving arrangement for a negative pressure ventilator
    • 负压通气机的排气装置
    • US5299599A
    • 1994-04-05
    • US946897
    • 1992-09-17
    • Robert B. FarmerJohn T. Shackelford
    • Robert B. FarmerJohn T. Shackelford
    • A61H31/02F16K11/085
    • A61H31/02Y10T137/86638Y10T137/86646Y10T137/86863
    • A valving arrangement primarily designed and intended for use in a negative pressure ventilator system. The valve arrangement has a uniquely designed valve that enables the ventilator to perform a number of operations simply by manipulation of a single, one-piece valve member within a valve housing. The valve housing has multiple inlets and outlets and the valve member can be rotated within it to present a variety of pressure cycles to the patient. In the preferred manner of operation, the present invention selectively applies negative and positive pressures to the patient during different portions of the cycle. In this regard, the valve member is structured so that negative and positive pressures are never at the same time delivered to the patient. The valve arrangement is compact and lightweight. It is also functionally superior to prior designs that can only supply whatever pressure is being created by the blower. In contrast, the valve of the present invention can create pressures from zero to the maximum blower pressures (both negative and positive) by positioning the valve to selectively split the blower pressure (negative or positive) to ambient air.
    • 主要设计用于负压通气机系统的阀门装置。 阀装置具有独特设计的阀,其使呼吸机能够简单地通过在阀壳体内操纵单个一体式阀构件来执行多个操作。 阀壳体具有多个入口和出口,并且阀构件可在其内旋转以向患者呈现各种压力循环。 在优选的操作方式中,本发明在循环的不同部分期间选择性地向患者施加负压和正压。 在这方面,阀构件被构造成使得负压力和正压力绝对不会同时传递给患者。 阀门结构紧凑,重量轻。 它在功能上优于现有设计,只能提供鼓风机产生的任何压力。 相比之下,本发明的阀门可以通过定位阀来选择性地将鼓风机压力(负或正)分解成环境空气,从而产生从零到最大鼓风机压力(均为负的和正的)的压力。