CS244958B1 - Antipyretical box with controlled oxygenotherapy - Google Patents

Antipyretical box with controlled oxygenotherapy Download PDF

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Publication number
CS244958B1
CS244958B1 CS839591A CS959183A CS244958B1 CS 244958 B1 CS244958 B1 CS 244958B1 CS 839591 A CS839591 A CS 839591A CS 959183 A CS959183 A CS 959183A CS 244958 B1 CS244958 B1 CS 244958B1
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Czechoslovakia
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box
controlled
microcomputer
cooling
antipyretic
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CS839591A
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Czech (cs)
Slovak (sk)
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CS959183A1 (en
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Anton Kovac
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Anton Kovac
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Publication of CS244958B1 publication Critical patent/CS244958B1/en

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Description

(54) Antipyretický box s riadenou oxygenoterápiou(54) Antipyretic box with controlled oxygen therapy

Riešenie sa týká antipyretického boxu s riadenou oxygenoterápiou pozostavajúceho z respíračnej časti, boxu (6), kde je atmosféra riadená mikropočítačom (3) pomocou elektromagnetických ventilov (4) a z ochladzovacej časti boxu (5), kde je monitorovaná teplota pacienta a výškou tejto teploty ovládaný kontaktný teploměr (10), ktorý spina čerpadlo vzduchu (11) s oehladzovačom. Podstata zariadenia spočívá v tom, že antipyretický box má vzduchotěsný golier (1) na deliacej stene (2) s tepelnou izoláciou, ktorou je zariadenie delené na ochladzhvaciu časť boxu (5) a na respíračnú časť boxu (6) s atmosférou riadenou mikropočítačom (3) cez elektromagnetické ventily (4). V programe mikropočítača (3) je využitý matematický model acidobázickej rovnováhy.The invention relates to an oxygen-controlled antipyretic box consisting of a respiratory compartment, a box (6) where the atmosphere is controlled by a microcomputer (3) by solenoid valves (4) and a cooling part of the box (5) where the patient temperature is monitored and controlled a contact thermometer (10) which switches the air pump (11) with the smoothener. The principle of the device consists in that the antipyretic box has an airtight collar (1) on the partition (2) with thermal insulation, by which the device is divided into the cooling part of the box (5) and the respiratory part of the box (6) with microcomputer controlled atmosphere (3). ) through solenoid valves (4). The microcomputer program (3) uses a mathematical model of acid-base balance.

Vynález sa týká antipyretického boxu s riadenou oxygenoterápiou pozostavajúceho z transkutanných elektrod pOz a pCOz zapojených na rádiometer a ten v sérii na mikropočítač a z transkutanného termosenzoru zapojeného na kontaktný teploměr ovladajúaci čerpadlo vzduchu s ochladzovačom boxu, v ktorom je deliaca stená tepelne izolovaná so vzduchotěsným golierom, ktorá dělí zariadenie na časť ochladzovaciu a na část respiračnú s atmosférou riadenou mikropočítačem pomocou elektromagnetických ventilov.BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a controlled oxygen therapy antipyretic box comprising transcutaneous electrodes pOz and pCOz connected to a radiometer in series on a microcomputer and a transcutaneous thermosensor connected to a contact thermometer controlling an air pump with box cooler. divides the device into a cooling part and a respiratory part with an atmosphere controlled by a microcomputer by means of solenoid valves.

Nevýhodou doterajších zariadení na monitorovanie a liečbu vysokej teploty kojencov bolo nedostatočné monitorovanie stavu acidobázy a nedokonalé riadenie oxygenoterápie viac menej manuálně a to subjektom.The disadvantages of the existing devices for monitoring and treatment of high temperature in infants were insufficient monitoring of the acidobase status and imperfect management of oxygen therapy more or less manually to subjects.

Navrhovaný vynález tento nedostatok odstraňuje ktorého podstata spočívá na tom, žé antipyretický box má vzduchotěsný golier na deliacej stene s tepelnou izoláciou, ktorou je zariadenie delené na časť ochladzovaciu a na časť respiračnú s atmosférou riadenou mikropočítačom připojeným pomocou elektromagnetických ventilov.The present invention removes this drawback, which is based on the antipyretic box having an airtight collar on a partition with thermal insulation which divides the device into a cooling and respiratory part with an atmosphere controlled by a microcomputer connected by means of solenoid valves.

Výhodou navrhovaného zariadenia je súčasné monitorovanie a liečba hyperexie a zároveň monitorovanie acidobázy s automatickým riadením oxygenoterápie.The advantage of the proposed device is simultaneous monitoring and treatment of hyperexia as well as acidobase monitoring with automatic control of oxygen therapy.

Příkladné usporiadanie je na připojených výkresoch, kde obr. 1 představuje názorný náčrt zariadenia a obr. 2 představuje bloková schému zapojenia ochladzovacieho komplexu antipyretického boxu.An exemplary arrangement is shown in the accompanying drawings, wherein FIG. 1 is an illustration of the apparatus, and FIG. 2 is a block diagram of the antipyretic box cooling complex.

Antipyretický box s riadenou oxygenoterápiou pozostáva z transkutanných elektrod pOz a pCOz 8, zapojených na rádiometer 7, ten v sérii na mikropočítač 3 s výstupom na riadenie elektromagnetických ventilov 4. Ďalej pozostáva z transkutannej termosenzorovej elektrody 9 v ochladzovacej časti boxu 5 s kontaktným teplomerom 10, ktorý je jedným polom zapojený na zdroj elektrického prúdu 12 a druhým pólom na čerpadlo vzduchu 11, ktoré má do série zapojenu chladiacu spirálu 13 s termostatem. Ochladzovacia časť boxu 5 je deliacou stěnou 2 so vzduchotěsným golierom 1 predelená od respíračnej části bolxu 6.The oxygen therapy controlled antipyretic box consists of transcutaneous electrodes p0z and pCOz 8, connected to a radiometer 7, in series to a microcomputer 3 with an output for controlling solenoid valves 4. It further comprises a transcutaneous thermosensor electrode 9 in the cooling section of the box 5 with contact thermometer 10. which is connected in one field to a power source 12 and the other to an air pump 11 having a thermostat cooling coil 13 connected in series. The cooling part of the box 5 is divided by a partition 2 with an airtight collar 1 separated from the respiratory part of the bolx 6.

Pacient je uložený v zariadení tak, že hlavu má umiestnenú v respíračnej časti boxu 6. Na krku má utěsněný vzduchotěsný golier 1 na deliacej stene 2 s tepelnou izoláciou. Trup pacienta je uložený v ochladzovacej časti boxu 5. Počas monitor ovania vysokej teploty má na tele umiestnenú termosenzorovú elektrodu 9 napojená na ochladzovací časť boxu 5, ktorý pri teplote 38,5 °C spina kontaktným teplomerom 10 čerpadlo vzduchu 11, ktoré vháňa vzduch do ochladzovacej spirály 13, ktorá udržuje konštantnú teplotu ochladzovania termostatom. Takto ochladený vzduch je potom vháňaný do ochladzovacej časti boxu 5. Respiračná časť bexu 6 má atmosféru riadenú elektromagnetickými ventilmi 4, ktoré sú riadené výstupmi mikropočítača 3 s matematickým modelom acidobázickej rovnováhy v programe. Ako vstupné informácie do mikropočítača 3 slúžia zosílené impulzy rádiometra 7 z transkutanných elektrod pOz a pCOz 8 snímajúce tieto hodnoty z pacientovho těla a s korekciou hemoglobinu na klávesnici mikropočítača 3.The patient is placed in the device so that the head is located in the respiratory part of the box 6. On the neck it has a sealed airtight collar 1 on the partition 2 with thermal insulation. The patient's torso is housed in the cooling section of the box 5. During high temperature monitoring, the body has a thermosensor electrode 9 connected to the cooling section of the box 5, which at 38.5 ° C closes with a contact thermometer 10 air pump 11 blowing air into the cooling compartment. a spiral 13 that maintains a constant cooling temperature by the thermostat. The cooled air is then blown into the cooling portion of the box 5. The respiratory portion of the bex 6 has an atmosphere controlled by solenoid valves 4, which are controlled by the microcomputer 3 outputs with a mathematical model of acid-base balance in the program. The input information to the microcomputer 3 is the amplified pulses of the radiometer 7 from the transcutaneous electrodes p0z and pCOz 8 sensing these values from the patient's body and with hemoglobin correction on the microcomputer 3 keyboard.

Claims (2)

PREDMETSUBJECT Antipyretický box s riadenou oxygenoterápiou pozostávajúci z transkutanných elektrod pO2 a pCOž zapojených na rádiometer a ten v sérii na mikropočítač a z transkutanného termosenzoru zapojeného na kontaktný teploměr, ovladajúci čerpadlo vzduchu s ochladzovačom boxu, vyznačujúce sa tým, že má vzduchotěsný golier (lj na deliacej stene (2j s tepelnou izoláciou, ktorou je ochladzovacia časť boxu (5) oddělená od respíračnej časti (6) s atmosférou riadenou mikropočítačom (3) připojeného pomocou elektromagnetických ventilov (4).Controlled oxygen therapy antipyretic box consisting of transcutaneous electrodes pO2 and pCO2 connected to a radiometer in series on a microcomputer and a transcutaneous thermosensor connected to a contact thermometer, controlling the air pump with the box cooler, characterized by having an airtight collar (l 2j with thermal insulation by which the cooling part of the box (5) is separated from the respiratory part (6) with an atmosphere controlled by a microcomputer (3) connected by means of solenoid valves (4).
CS839591A 1983-11-19 1983-11-19 Antipyretical box with controlled oxygenotherapy CS244958B1 (en)

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CS244958B1 true CS244958B1 (en) 1986-08-14

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