ventilator waveforms

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BASICS OF WAVEFORM INTERPRETATION Michael Haines, MPH, RRT-NPS, AE-C

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Page 1: ventilator Waveforms

BASICS OF WAVEFORM INTERPRETATION

Michael Haines, MPH, RRT-NPS, AE-C

Page 2: ventilator Waveforms

Objectives

• Identify graphic display options provided by mechanical ventilators.

• Describe how to use graphics to

more appropriately adjust the patient ventilator interface.

Page 3: ventilator Waveforms

Monitoring and analysis of graphic display of curves and loops during mechanical

ventilation has become a useful and popular way to determine not only how patient are being ventilated but also a way to assess problems occurring during ventilation.

Page 4: ventilator Waveforms

Uses of Flow, Volume, and Pressure Graphic Display

• Confirm mode functions

• Detect auto-PEEP• Determine P-V synchrony• Assess and adjust trigger levels• Measure the work of breathing

• Adjust tidal volume and minimize overdistension

• Assess the effect of bronchodilator administration

• Detect equipment malfunctions

• Determine appropriate PEEP level

Page 5: ventilator Waveforms

Uses of Flow, Volume, and Pressure Graphic Display

• Evaluate adequacy of inspiratory time in pressure control ventilation

• Detect the presence and rate of continuous leaks• Assess inspiratory termination criteria during

Pressure Support Ventilation• Determine appropriate Rise Time

Page 6: ventilator Waveforms

The graphic display of flow, pressure and volume is generally visualized in two

formats:

Waveforms

Loops

Page 7: ventilator Waveforms

Most Commonly used Waveforms

• Pressure vs. Time

• Flow vs. Time

• Volume vs. Time

Page 8: ventilator Waveforms

Pressure vs. Time Curve

1 2 3 4 5 6

30

Sec

PawcmH2O

A BC

PIP

Baseline

Mean Airway Pressure

-10

Page 9: ventilator Waveforms

Pressure-Time Curve

1 2 3 4 5 6

20

Sec

PawcmH2O

Pressure Ventilation

Expiration

Volume Ventilation

Page 10: ventilator Waveforms

Pre

ssur

e

time

PIP:complianceresistancevolumeflowPEEP

PEEP

Page 11: ventilator Waveforms

PEEP

PIP

Pplat

resistanceflow

compliancetidal volume

No active breathingTreats lung as single unit

end-inspiratoryalveolar pressure

Page 12: ventilator Waveforms

Work to Trigger

1 2 3 4 5 6

30

Sec

PawcmH2O

-10

Page 13: ventilator Waveforms

Adequate Flow During Volume-Control Ventilation

30

Time (s)

-10

1 2

awPcmH2O

Adequate flow

3

Page 14: ventilator Waveforms

Inadequate Flow During Volume-Control Ventilation

30

Time (s)

-10

1 2

awPcmH2O

Adequate flow

Flow set too low

3

Page 15: ventilator Waveforms

Patient/Ventilator SynchronyVolume Ventilator Delivering a Preset Flow and Volume

Adequate Flow

1 2 3 4 5 6

-20

SecPawcmH2O

Page 16: ventilator Waveforms

Patient/Ventilator SynchronyThe Patient Outbreathing the Set Flow

Air Starvation

1 2 3 4 5 6

-20

SecPaw

cmH2O

Page 17: ventilator Waveforms

Plateau Time

Inadequate plateau time

-20

1 2 3 4 5 6

30

SECPawcmH2O

Page 18: ventilator Waveforms

Adequate Plateau Time

-20

1 2 3 4 5 6

30

SECPawcmH2O

Plateau Time

Page 19: ventilator Waveforms

Flow vs.Time Curve

1 2 3 4 5 6

SEC

120

120EXH

INSP

V

.LPM

Inspiration

Page 20: ventilator Waveforms

Flow vs.Time Curve

1 2 3 4 5 6

SEC

120

120EXH

INSP

V

.LPM

Inspiration

Expiration

Page 21: ventilator Waveforms

Flow vs.Time Curve

1 2 3 4 5 6SEC

120

120EXH

INSP

Inspiration

V

.LPM

Constant Flow Descending Ramp

Page 22: ventilator Waveforms

Flow-Time Curve

1 2 3 4 5 6

SEC

120

120EXH

INSP

Insp. Pause

Expiration

V

.LPM

Page 23: ventilator Waveforms

Inspiratory TimeShort Normal Long

Page 24: ventilator Waveforms

1 2 3 4 5 6

SEC

120

-120

V

.LPM

Expiratory Flow Rate and Changes in Expiratory Resistance

Page 25: ventilator Waveforms

1 2 3 4 5 6

SEC

120

120

V

.LPM

Page 26: ventilator Waveforms

Obstructed Lung

Delayed flow return

Page 27: ventilator Waveforms

Combined Screens

1 2 3 4 5 6

20

Sec

Paw

cmH2O

V.

Volume Ventilation

Page 28: ventilator Waveforms

Pressure-Time and Flow-Time Curves

1 2 3 4 5 6

20

Sec

Paw

cmH2O

Expiration

V.

Volume Ventilation

Page 29: ventilator Waveforms

Pressure-Time and Flow-Time CurvesDifferent Inspiratory Flow Patterns

1 2 3 4 5 6

20

Sec

Paw

cmH2O

Expiration

V.

Volume Ventilation

Inspiration

Page 30: ventilator Waveforms

20

Pressure-Time and Flow-Time Curves

1 2 3 4 5 6

Sec

PawcmH2O

V.

Pressure Ventilation

Inspiratory Time

Volume Ventilation

Page 31: ventilator Waveforms

Rise TimeInspiratoty Rise Time Percentage

Flow Acceleration Percentage

How quickly inspiratory flow accelerates to achieve set pressure.

Page 32: ventilator Waveforms

Time

Minimal Pressure Overshoot

Pressure Relief

Slow rise Moderate rise Fast rise

P

V.

Flow Acceleration Percent Rise Time

Page 33: ventilator Waveforms

Patient / Ventilator SynchronyVolume Ventilation Delivering a Preset Flow and Volume

Adequate Flow

1 2 3 4 5 6

30

-20

SecPaw

cmH2O

Page 34: ventilator Waveforms

What options do we have?

Air Starvation

1 2 3 4 5 6

30

-20

SecPaw

cmH2O

Patient / Ventilator SynchronyThe Patient Is Outbreathing the Set Flow

Page 35: ventilator Waveforms

We Can Switch to a Decelerating Flow Pattern: More Flow Up Front

1 2 3 4 5 6

SEC

120

-120

V

.LPM

Page 36: ventilator Waveforms

If Peak Flow Remains the Same, I-Time Increases: Could Cause Asynchrony

LPM

1 2 3 4 5 6

SEC

120

-120

V

.

Page 37: ventilator Waveforms

Changing Flow Waveform in Volume Ventilation: Effect on Inspiratory Time

1 2 3 4 5 6

SEC

120

-120

V

.LPM

Page 38: ventilator Waveforms

Increased Peak Flow: Decreased Inspiratory Time

1 2 3 4 5 6

SEC

120

-120

V

.LPM

Page 39: ventilator Waveforms

Note: There can still be pressure in the lung behind airways that are completely obstructed

Detecting Auto-PEEP

LPM

Zero flow at end exhalation indicates equilibration of lung and circuit pressure

1 2 3 4 5 6

SEC

120

-120

V

.

Page 40: ventilator Waveforms

Detecting Auto-PEEP

The transition from expiratory to inspiratory occurs without the expiratory flow returning to zero

1 2 3 4 5 6

SEC

120

120

V

.LPM

Page 41: ventilator Waveforms

time

flo

w

inhalation

exhalation

0auto-PEEP

Flow Waveform

Page 42: ventilator Waveforms

sensitivity-1 cm H2O

auto-PEEP10 cm H2O

trigger effort = 11 cm H2O

sensitivity-1 cm H2O

auto-PEEP3 cm H2O

trigger effort = 4 cm H2O

PEEP7 cm H2O

PEEP10 cm H2O

PEEP10 cm H2O

Auto-PEEP should be measured with set PEEP = 0

Page 43: ventilator Waveforms

Volume vs.Time Curve

Inspiration

SEC

800 ml

2 3 4 5 61

VT

Page 44: ventilator Waveforms

Volume vs.Time Curve

Expiration

SEC

800 ml

2 3 4 5 61

VT

Page 45: ventilator Waveforms

Typical Volume Curve

1 2 3 4 5 6

SEC

1.2

-0.4

VT

Liters

I-TimeE-Time

A B

A = inspiratory volume

B = expiratory volume

Page 46: ventilator Waveforms

Air Trapping or Leaks

1 2 3 4 5 6

SEC

1.2

-0.4

VT

Liters

A

A = exhalation that does not return to zero

Page 47: ventilator Waveforms

Loops

• Pressure-Volume Loops

• Flow-Volume Loops

Page 48: ventilator Waveforms

Pressure-Volume Loop

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

VT

Page 49: ventilator Waveforms

Mandatory Breath

Inspiration

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

VT

Page 50: ventilator Waveforms

Mandatory Breath

Expiration

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

Inspiration

VT Counterclockwise

Page 51: ventilator Waveforms

Spontaneous Breath

Inspiration

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

VT

Clockwise

Page 52: ventilator Waveforms

Spontaneous Breath

InspirationExpiration

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

VT

Clockwise

Page 53: ventilator Waveforms

Work of Breathing

0 20 40 60-20-40-60

0.2

0.4

0.6

LITERS

Paw

cmH2O

VT

Page 54: ventilator Waveforms

Assisted Breath

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

Assisted Breath

VT

Page 55: ventilator Waveforms

Assisted Breath

Inspiration

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

Assisted Breath

VT

Page 56: ventilator Waveforms

Assisted Breath

Inspiration

Expiration

0 20 40 602040-60

0.2

LITERS

0.4

0.6

Paw

cmH2O

Assisted Breath

VT Clockwise to Counterclockwise

Page 57: ventilator Waveforms

Pressure-Volume Loop Changes

0 20 40 60-20-40-60

0.2

0.4

0.6

LITERS

Paw

cmH2O

VT

Page 58: ventilator Waveforms

Changes in Compliances

Indicates a drop in compliance (higher pressure for the same volume)

0 20 40 602040-60

0.2

0.4

0.6

LITERS

Paw

cmH2O

VT

Page 59: ventilator Waveforms

Lung Overdistension

Page 60: ventilator Waveforms

Overdistension

B

A

0 20 40 60-20-40-60

0.2

0.4

0.6

LITERS

Paw

cmH2O

C

A = inspiratory pressure

B = upper inflection point

C = lower inflection point

VT

Page 61: ventilator Waveforms

Pressure – Volume Loops

Page 62: ventilator Waveforms

Pressure – Volume Loops

Page 63: ventilator Waveforms

Pressure – Volume Loops

Page 64: ventilator Waveforms

Flow -Volume Loops Volume Control

Flow

Volume

Tidal Volume

Inspiration

Expiration

Page 65: ventilator Waveforms

Flow -Volume Loops Volume Control

Flow

Volume

Peak Expiratory Flow

Peak Inspiratory Flow

Tidal Volume

Inspiration

Expiration

Page 66: ventilator Waveforms

ETT or Circuit Leaks

Page 67: ventilator Waveforms

Obstructive Pattern

Page 68: ventilator Waveforms

Bronchodilator Response

2

1

1

2

3

3

VLPS

.

BEFORE

VLPS

.

Page 69: ventilator Waveforms

Bronchodilator Response

2

1

1

2

3

3

VLPS

.

BEFORE AFTER

Worse

2

1

1

2

3

3

VLPS

.

Page 70: ventilator Waveforms

Bronchodilator Response

2

1

1

2

3

3

VLPS

.VT

INSP

EXH

BEFORE AFTER

Worse Better

2

1

1

2

3

3

VLPS

.

2

1

1

2

3

3

VLPS

.

Page 71: ventilator Waveforms

What Mode is This?

Page 72: ventilator Waveforms

What Mode is This?

Page 73: ventilator Waveforms

What Mode is This?

Page 74: ventilator Waveforms

What Mode is This?

Page 75: ventilator Waveforms

Remember Waveforms and loops are graphical representation of the data collected

by the ventilator.

Typical Tracings

Pressure-time,

Flow-time,

Volume -time

Loops

Pressure-Volume

Flow-Volume

Assessment of pressure, flow and volume waveforms is a key aspect in the management of the mechanically ventilated patient.

Page 76: ventilator Waveforms

The End!