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4. The anesthesia machine Morgan anesthesia

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Title: 4. The anesthesia machine Morgan anesthesia


1
4. The anesthesia machineMorgan anesthesia
  • ??????? 1?
  • ???

2
Introduction
  • Modern anesthesia machines
  • extremely sophisticated
  • incorporating many built-in safety features
    devices
  • breathing circuit, monitors, mechnical
    ventilator
  • microprocessors (enhance, integrate monitor
    all components)
  •         gt Anesthesia workstation
  • ?? ??? ??? ?? ? ??? ??? ?? ?? ?? ??? ??? ?? ? ??
    3? ?? ?? ??? ???? ???? ?? ?? ??? ??
  •         -gt breathing circuit was the most common
    single source of injury

3
Overview
  • Basic form for anes machine gas supply???
    medical gas ??
  • -gt ??? ??? ??? ?? flow control?
  • -gt ?????? ???? final gas mixture ??
  • -gt gas? breathing circuit?? ??
  • Mechanical ventilator? spontaneous or manual(bag)
    ventilation? ?? ? ? ??

4
Gas supply
  • gas inlet for oxygen nitrous oxide, and air
  • Pipeline inlets
  • DISS(diameter-index safety system) color coded,
    noninterchangeable
  • filter trap debris from the wall supply
  • one-way check valve prevents retrograde flow
  • oxygen(pneumatic) power outlet to drive the
    ventilator, an auxiliary oxygen flowmeter
  • Cylinder inlets
  • the yoke assemblies pin index safety system
  •   index pins, washer, gas filter, check valve ??
  • ?? pipeline failure? back-up supply??? ??
  • Bourdon pressure gauge cylinder pressure ??
  • gas pr. ???? flexible tube straightened -gtmove
    a needle pointer

5
Flow control circuits(1)
  • Pressure regulators
  • pipeline? ??? ?? ????? cylinder? ??? ??? ?? flow
    control? ???
  • pressure regulator? ?? cylinder gas pressure?
    flow valve ??? 45-47 psig?? ??(29psig2040mmHg)
  • high-pressure relief valve ???? ??? ???
    ???????? ?? ??(95-110 psig) ?? cylinder?
    regulator failure?
  • ?? ??(Datex-Ohmeda)? ?? two-stage pressure
    regulation? ?? pipeline? cylinder pressure? ??
    ????
  • oxygen? 20psig?, N2O? 38psig? ????
  • oxygen/nitrous oxide flow linkage ? proper
    functioning? ??

6
Flow control circuits(2)
  • Oxygen supply failure protection devices
  • oxygen? ?? flow control valve? ?????, N2O, air?
    ?? gas? ??? flow control valve? ???? ?? safety
    device? ?? ??? ?
  • ??? ??? oxygen pressure? ??? ???? ?? gas flow?
    ???? oxygen supply failure?? hypoxic mixture? ???
    ???
  • ??? oxygen from common inlet pathway ? oxygen
    flow control valve? ???? ???, safety device,
    oxygen flush valve, ventilator power outlet? ???
    ???? ????? ???
  • ?? ??(Datex-Ohmeda Excel)??? piloting pressure
    line? ?? ??(20psig)? ???? ?? ?? gas? valve? ??
  • proportioning safety device (oxygen failure
    protection device or balance regulator) ???
    minimum oxygen pressure ???? N2O? ?? gas flow ??
  • ?? ???? oxygen supply low-pressure sensor? ?? gas
    whistle or electric alarm? ???? ? ??

7
Flow control circuits(3)
  • Flow valves and meters
  • ???? ??? gas? flow-control valve? ???? flowmeter?
    ?? ?? gas?? ?? ? active vaporizer? ??? machine's
    common gas outlet?? ??
  • flow valve?? proximal?? gas line? high-pressure
    circuit, flow valve? common gas outlet ???
    low-pressure circuit?? ?
  • flow control valve? ? ?????? ??? needle valve? ??
  • Stops in the full-off and full-on positions
    prevent valve damage

8
Flow control circuits(4)
  • flowmeter
  • constant-pressure variable-orifice flowmeter
  • indicator? ball, bobbin, float? ??
  • ???? ??? ??? low gas flow? float? ?????? ??? ??
    ??
  • gas? tube's wall? ??? ??? ?? float? ????? ???? ??
    tube ??? ?? ?
  • flowmeter malfuction ?? dirt in the flow tube,
    vertical tube, misalignment, sticking or
    concealment of a float at the top of a tube
  • oxygen flow meter???? gas? ? ??? ???? ?? oxygen
    flow meter? ?? ??? downstream? ????? ?(vaporizer
    ???)
  • electronic flow control and measurement
  • flow restrictor? ?? pressure drop? ?? ??

9
Flow control circuits(5)
  • Flow valves and meters is designed to
  • A. minimum oxygen flow
  • ????? ?? ?? ? oxygen flow? ?? ?? 150mL/min ? ??
  • B. oxygen/nitrous oxide ratio controller
  • O2? N2O flow? ???? ?? O2??? 21-25? ??

10
Flow control circuits(5)
  • Vaporizers
  • flowmeter? common gas outlet ??? ??
  • ??? ??? vaporizer? ????? interlocking or
    exclusion device??
  • A. physics of vaporization
  • gas molecule? ?? ??? vapor pressure ??(??? ????
    ???)
  • vaporization? energy? ???? ?? liquid? ????? ???
  • B. copper kettle
  • measured-flow or flowmeter-controlled vaporizer?
    ???
  • copper high specific heat, high thermal
    conductivity gt maintain a constant temperature
  • carrier gas? vaporizer? ???? anesthetic liquid?
    ???? vapor? ??
  • liquid anesthetic 1mL 200mL anesthetic vapor gt
    saturated gas? ???? ???? ?? ????? ?

11
  • halothane? vapor pr. 243mmHg
  • copper kettle?? ?? 243/760 32

12
Vaporizers
  • C. modern conventional vaporizers
  • agent specific, ??? flow ??? ???? ??? ?? ??
  • variable-bypass vaporizer
  • calibrated control knob? ??? gas flow? ????
    carrier gas? ??? vaporizing chamber? ???
  • temperature compensation bi-metal? flow ??
  • flow rate? ??? anesthetic concentration?? ??? ???
    gas composition? ??(100O2-70N2O)? N2O? volatile
    agent? ??? ane concent.? ??? ?? ? ??
  • agent-specific keyed filling port? ?? ?? agent?
    ??? ??
  • pumping effect ?????? ????? ???? ?? ????? ???
    ???? ????? ??
  • one-way check valve(vaporizer? O2 flush valve ???
    ??)? ??
  • vaporizer? ?? ??? ??? compensate ??? ????

13
Vaporizers
  • D. electronic vaporizer
  • Desflurane
  • High volatility
  • vaporization? cooling effect? ?? ???? vaporizer??
    ???? ??
  • vaporization? ?? ??? ??? ?? high fresh gas flow
    ??
  • desflurane vaporizer
  • electrically heated to 39 C-gt 2??? vapor
    pressure ??
  • Unlike a variable-bypass vaporizer, no fresh gas
    flows through the desflurane sump
  • pure desflurane vapor? vaporizer? ??? ?? fresh
    gas mixture? ??
  • ???? ??? ?? ??? ????? ???, ??? partial pressure?
    ??
  • -gt ?????? ?????? ???? ??? ????? ?

14
Common(fresh) gas outlet
  •  multiple gas inlet, but only on common gas
    outlet
  • adding new gas of fixed and known composition to
    the circle system
  • oxygen flush valve
  • the flowmeters and vaporizers? ?? common gas
    outlet? high flow(35-55L/min) of oxygen? ??
  • real potential of lung barotrauma

15
The breathing circuit
  • circle system? ?? ?? ??
  • common gas outlet?? ??? gas composition?
    flowmeters vaporizers? ?? ??? ???? ??? ? ??? ??
    breathing circuit??? gas composition, ? volatile
    anesthetic concentration? ?? ??? ????
  • ? ?? ???? anesthetic uptake
  • ? minute ventilation
  • ? total fresh gas flow
  • ? volume of the breathing circuit
  • ? gas leaks
  •    gt induction and emergence?? high gas flow
    ???? ?? ?? ? ??
  • ??? ????? ??? ?? ??????? ?? f4-23
  •      gt?? misconnects, disconnects, kinks,
    leaks ??? ??

16
Oxygen analyzers
  • 3 type
  • ?polarographic(Clark electrode)
  • ?galvanic(fuel cell) external power source? ??
    ??
  • ?paramagnetic
  • ??? oxygen-permeable memb.? ??? electrolyte gel?
    sample gas? cathode anode electrodes? ???
    sensors ? ??
  • ?? ????? ??? ??? ??? ???? ???? ??? ????? ?? ?? ?
    ?? ????? ???? ??? ? ??
  • ?? O2 analyzer?? low-level alarm? ??
  • ?? ??? inspiratory or expiratory limb ?? ???
    ??.(fresh gas line? ??) expiratory limb??
    inspiratory limb???? lower oxygen partial
    pressure? ??

17
Spirometer
  • - exhaled tidal volume ??
  •   1) vane anemometer(or Wright repirometer)
    f4-24a
  • rotating vane of low mass in expiratory limb in
    front of the expiratory valve
  • Another variation the volumeter or displacement
    meter ? ??? ?? gas? discrete quantities ? ?????
    ??? ?f4-24b
  • exhaled TV? ??? ?? ventilator setting? ??? ????,
    circuit leaks, disconnections, or ventilator
    malfunction? ?? ?? ??
  • long compliant breathing tube? rapid respiratory
    rates, high airway pressure? ??? circuit?? ?? gas
    ?? ??? ???? ???? ?? ??? ??
  •      gt Y-piece?? ???? ??? ??? ?? ? ??

18
Spirometer(2)
  • 2) hot-wire anemometer
  •  - electrically heated, fine platinum wire? gas
    flow ?? ??
  •  - cooling effect? ????? ??? ??? ?? ??
  •  - ?? reverse flow? ?? ??, ???? ???
  • 3) ultrasonic flow sensor
  •  - flow stream? turbulent eddies? ?? ?? gas flow?
    discontinuity? ??
  •  - ?? no moving parts, independence from gas
    density

19
Spirometer(3)
  • 4) variable-orifice flowmeter f4-24c
  •  - inspiratory expiratory port? ?? ??? ???
    sensor? ??? ??? ?? pressure drop? ??
  •  - ???? ??? sensor? heated humidified circuit??
    ??? ? ??? ???? ? ? ??
  • 5) pneumotachograph(fixed-orifice flowmeter)
  •  - parallel bundle of small-diameter tubes in
    chamber(Fleisch pneumotachograph) or mesh screen?
    ????? ??? ??? ??? ?? ?? pressure drop? ??
  •  - ????, ????? ?? ???? ??? ????? ???
  •      gt ?? ???? ??? Y connection? ??? Pitot
    tube ?? f-d

20
Circuit pressure
  • breathing circuit pressure? airway pressure? ??
  •        gt Y connection???? ??? ?? ??
  • airway pressure ??? ??
  • ? pulm. compliance ??       
  • ? TV ??
  • ? Obx in breathing circuit, tracheal tube, or
    Pt's airway
  • airway pressure ??? ??
  • ? compliance ??     
  • ? TV ??    
  • ? leak in the circuit

21
Adjustable pressure-limiting valve
  • fully open during spontaneous ventilation
  • partially closed during manual or assisted bas
    ventilation
  • fully closed??? ?? pressure? ?? ??? pulm.
    barotrauma and/or hemodynamic compromise ??
  • ????? ?? ???? 70-80cmH2O? ??? ??? ?? ????

22
Humidifier(1)
  • absolute humidity weight of water vapor in 1L
    of gas(mg/L)
  • relative humidity ratio of the actual mass of
    water present in a volume of gas to the maximum
    amount of water possible at a particular
    temperature
  • (? 37 C 100 relative humidity absolute
    humidity 44mg/L, 21 C 100 humidity 18mg/L)
  • gas? ?????? ???? ???? ??? ????? ??? tracheal
    intubation?? high fresh gas flow? ?? bypass ?
  •      gt ???? dehydration of mucosa, altered
    ciliary function, inspissation of secretions,
    atelectasis, ventilation/perfusion mismatching ??

23
Humidifier(2)
  • a. passive humidifier
  •  - condenser humidifier or heat and moisture
    exchanger(HME) f4-25
  •  - do not add heat or vapor
  •  - ??? ??? ??? ??? ?? ??? ??
  •  - dead space ?? ???? ???? rebreathing ?? ??
  •  - HME? ??? ???? ???? ???? breathing circuit? ??
    ? ??
  •  - effective filter??? ??

24
Humidifier(3)
? passover humidifier ? wick humidifier ?
bubble-through humidifier ? vapor-phase
humidifier
  • b. active humidifier
  •  
  • heated humidifier? ???
  •      ? thermal lung injury  ? nosocomial
    infection ? circuit disconnection  ? increased
    airway resistance ? interference with flowmeter
    function
  • ???? hypothermia small tracheal tube? dried
    secretion? plugging ??
  • filter??? ??

25
Ventilators
  • ?? ?? ??? ?? ICU?? ??? ventilator? ?? ??? ????
    ??? ?? ICU-type' ventilator? ??
  • Overview
  • proximal airway? alveoli ??? pressure gradient?
    ??? gas flow? ??
  • ???? chest??? negative pressure? ?????, ???
    ventilator? upper airway? positive pressure? gas
    flow? ??

26
Ventilators(2)
  • a. inspiratory phase
  • ? constant-pressure generators
  • ? constant-flow generators
  • ? nonconstant generators
  • half cycle of a sine wave? ?? flow pattern
  • airway resistance??? lung compliance??? peak
    inspiratory pressure? ??? ?????, flow rate? ???
    ??

27
Ventilators(3)
  • b. transition phase from inspiration to
    expiration
  • inspiratory phase? ?? preset limit of time (fixed
    duration), set inspiratory pressure?? ??,
    predetermined tidal volume ?? ?? ??
  • ? time-cycled ventilators
  • lung compliance? ?? TV ? peak insp. pr. ??
  • ? pressure-cycled ventilators
  • Preset pressure? ???? ??? cycling ?? ?? ???.
  • ? volume-cycled ventilators inspiratory
    duration and pressure? ???? preset vol. ? ??

28
Ventilators(4)
  • c. expiratory phase
  • Passive exhalation?? airway pr.? ??? ???? ???
    PEEP ? ????
  • flow out? airway resistance? lung compliance? ??
    ??

29
Ventilators(5)
  • d. transition phase from expiration to
    inspiration
  • preset time interval?? change in pressure? ??
  • ?volume-control mode??? set ventilatory rate
    IE ratio? ?? gas flow rate inspiratory time ??
  • ?pressure-control mode??? inspiratory time? set
    ventilator rate IE ratio? ??, gas flow?
    constant inspiratory pressure? ???? ??? ??

30
Ventilator circuit design
  • a. double-circuit system ventilators
  • bellows??? TV ??
  • a standing bellows
  • bellows? anesthesia circuit?? breathing bag? ??
  • ??? ?????? negative pr. ??? ?? ??? ??? bellow?
    collapse??? free breathing valve? ??

31
Ventilator circuit design
  • b. piston ventilators
  • bellow?? electrically driven piston?? ??
  • very poor lung compliance ?? very small Pt??? ???
    TV ?? ??
  • piston? volume-controlled??? ??? ???,
    pressure-controlled??? ??? ????? ???
  • negative-pressure relief valve
  • ??? ???? piston? downstroke?? ?? ?? ??

32
Ventilator circuit design
  • c. spill valve
  • ventilator??? circle system? APL valve? ?????
    ????? ?
  • bag/ventilator switch ? ??? bag?? ???
    spontaneous vent. ? ???? ?
  • spill valve ventilator ??? pressure-relief(pop-o
    ff) valve
  • ??? pneumatically closed
  • ??? ??

33
Pressure and volume monitoring
  • peak insp. pr. 
  • indication of dynamic compliance
  • plateau pressure
  • mirror of static compliance

34
Ventilator alarms
  •  disconnect alarm ? low peak inspiratory
    pressure ? low exhaled tidal volume ? low exhaled
    CO2
  • ?? ???? ???? circuit ??? ? ???? ??? ??? ? ? ??
  • ?? alarm ? high peak insp. pr., ? high PEEP,?
    negative pr., ? low oxygen-supply pr.

35
Problems associated with anesthesia ventilators
  • a. ventilator-fresh gas flow coupling
  • ????? spill valve? ???? common gas outlet?????
    fresh gas flow? TV? ???
  • ?? ?? fresh gas flow 6L/min, IE ratio 12,
    respiratory rate 10?/min
  • gt ? TV?? ventilator? output? 200ml? ???
              
  • ??? fresh gas flow? ???? TV, minute ventilation,
    peak inspiratory pressure? ??
  • ?? ?? ?? airway pressure? exhaled TV? ???? ???
    fresh gas flow? ??? ?

36
Problems associated with anesthesia ventilators
  • b. excessive positive pressure
  • ventilator? ??? setting?? ???, fresh gas flow
    coupling, ?? ? O2 flush ?? ?? ?? ??
  • pulmonary barotrauma ? hemodynamic compromise ??

37
Problems associated with anesthesia ventilators
  • c. tidal volume discrepancies
  • ?? breathing circuit compliance, gas
    compression, ventilator-fresh gas flow coupling,
    leaks in the anesthesia machine, breathing
    circuit, patient's airway
  • ?? ???? ?? spirometer? Y connector ??? ??

38
Thanks for your attention
39
Waste-gas scavengers
  • NIOSH? ??? OR?? N2O? 25ppm??, halogenated
    agent? 2ppm??(N2O??? 0.5ppm ??)
  • APL valve? spill valve? ???? gas? hose (transfer
    tubing)? ???? scavenging interface? ???
  • ? open interface ??? ???
  • closed interface negative-
    positive-pressure relief valve ??
  • ? passive scavenging recirculation ???
    ventilation duct ?? ??? ??
  • active scavenging ??? vacuum system?? ??
  • ??? 10-15L/min ?? ??

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