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METHOD FOR DETERMINING THE ENERGY REQUIREMENT OF PATIENT IN CRITICAL CONDITION ON SPONTANEOUS BREATHING IN REAL TIME

机译:实时呼吸危急情况下确定患者能量要求的方法

摘要

FIELD: medical technology. ;SUBSTANCE: invention relates to medical technology, and in particular to a method for determining the energy requirement of a patient in a critical condition on spontaneous breathing in real time. The method includes studying the energy demand of a patient in a critical state on spontaneous breathing using a GKMP-02 gas analyzer isolated from the Phaza-5NR apparatus, a Vamos® analyzer isolated from the Fabius® anesthesia apparatus, in which the energy demand is determined on the spontaneous breathing of a patient in a critical state in real time mode, kcal/min. A critically ill patient breathes spontaneously through a face mask with a minimum length of the inspiratory-expiratory line. When inhaling, the air mixture from the atmosphere enters the ventilator, isolated from the Phaza-5NR apparatus, built into the inspiratory line, which fixes the tidal volume on inspiration - Vti, ml, and then from the main through the tee to the oxygen sensor of the GKMP-02 gas analyzer, isolated from the apparatus Phaza-5NR, which registers the oxygen content in the air mixture during inhalation - FiO2, %. Then the air mixture is fed through the line and the non-reversing valve through the tee into the connector connected to the face mask, and then into the patient's lungs. Then the air mixture is fed through the line and the non-reversing valve through the tee into the connector connected to the face mask, and then into the patient's lungs. When exhaling, air from the patient's lungs enters the face mask, connector, line, tee, expiratory line, and at this time the non-reversing valve closes the inspiratory line. Then the air is directed through the expiratory line to the ventilator, isolated from the Phaza-5NR apparatus, which records the tidal volume on expiration - Vte, ml, then the air mixture is fed through the expiratory line through the tee to the oxygen sensor of the GKMP-02 gas analyzer isolated from the Phaza-5NR apparatus, which registers the oxygen content in the air mixture on exhalation - FeO2, %. In the connector in front of the face mask there is a built-in sensor for air intake in the side stream, which transfers air through the line to the moisture separator, and from there to the Vamos® analyzer, isolated from the Fabius anesthesia machine, which displays information on the carbon dioxide content in the air mixture during inhalation - FiCO2, %, carbon dioxide content in the air mixture in the final portion of exhaled air - FetCO2, %. After calibrating the equipment during spontaneous breathing of the patient on the monitors of the GKMP-02 gas analyzers isolated from the Phaza-5NR apparatus, the Vamos® analyzer isolated from the Fabius® anesthesia device, data are obtained that make it possible to determine Vti, FiO2 and FiCO2, Vte, FeO2 and FeCO2 in real time, on the basis of the data obtained, oxygen consumption, elimination of carbon dioxide, and then the energy requirement of a patient in a critical condition on spontaneous breathing are calculated in real time, kcal/min.;EFFECT: determination of the energy requirement of a patient in a critical condition during spontaneous breathing in real time (kcal/min).;1 cl
机译:领域:医疗技术。 ;物质:发明涉及医疗技术,尤其涉及一种确定患者在临界状态下实时呼吸的临界状态的能量要求。该方法包括使用从Phaza-5NR设备中分离的GKMP-02气体分析仪进行自发呼吸临界状态的患者的能量需求,从Phaza-5NR设备中分离,来自Fabius®麻醉装置的Vamos®分析仪,其中能量需求是在实时模式下,kcal / min在临界状态下在临界状态下自发呼吸。一种严重的病人通过脸上的面罩自发地呼吸,具有最小长度的吸气呼气线。吸入时,来自大气中的空气混合物进入呼吸机,从Phaza-5NR设备中分离,内置于吸气管线中,这将潮气体积固定在启发上的潮气量 - VT I ,ML,然后从主要通过T恤到GKMP-02气体分析仪的氧传感器,从装置PHAZA-5NR中分离,其在吸入期间将空气混合物中的氧含量寄存在空气混合物中 - F I O 2 ,%。然后将空气混合物通过线路和非反转阀进料到连接到面罩的连接器中,然后进入患者的肺部。然后将空气混合物通过线路和非反转阀进料到连接到面罩的连接器中,然后进入患者的肺部。当呼气时,患者肺部的空气进入面罩,连接器,线,发球台,呼气线,此时非倒车阀关闭吸气线。然后空气通过呼气管引导到呼吸机,从Phaza-5nR设备隔离,该装置记录到期的潮气量 - Vt e ,ml,然后通过呼气进给空气混合物通过TEE线到GKMP-02气体分析仪的氧传感器从PHAZA-5NR装置中分离的GKMP-02气体分析仪的氧传感器,该装置将空气混合物中的氧含量寄存在呼气时 - F E O 2 ,%。在面罩前面的连接器中,有一个内置传感器,用于在侧沟中进气量,其将空气转移到水分分离器,并从那里到Vamos®分析仪,从Fabius麻醉机中分离出来,其在吸入期间的空气混合物中的二氧化碳含量的信息显示在呼出的最终部分中的空气混合物中的空气混合物中的有关空气混合物中的二氧化碳含量的信息Air-F et co 2 ,%。在患者在患者的自发呼吸中校准设备,从PHAZ-5NR设备隔离的GKMP-02天然气分析仪的监测器中,获得了来自Fabius®麻醉装置的Vamos®分析仪,获得了数据,使得可以确定VT i ,f i O 2 和f i co 2 ,vt E ,f e o 2 和f e co 2 实时,在获得的数据的基础,氧气消耗,二氧化碳的消除,然后在自发呼吸临界条件下的患者的能量要求实时计算,Kcal / min计算。;效果:测定患者的能量要求在实时自发呼吸期间的临界病症(kcal / min).; 1 cl

著录项

  • 公开/公告号RU2748396C1

    专利类型

  • 公开/公告日2021-05-25

    原文格式PDF

  • 申请/专利权人 PRIGORODOV MIKHAIL VASILEVICH;

    申请/专利号RU20200129009

  • 发明设计人 PRIGORODOV MIKHAIL VASILEVICH (RU);

    申请日2020-09-02

  • 分类号A61B5/083;A61B5/097;A61B5/091;A61M16;

  • 国家 RU

  • 入库时间 2024-06-14 21:38:14

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