Zusammenfassung der Ressource
Frage 1
Frage
Hg or H20 Barometer
Measures [blank_start]Barometric[blank_end] Pressure
Hg – read at the [blank_start]TOP[blank_end] of meniscus
H2O – Read at the [blank_start]bottom[blank_end] of meniscus
Mercury Spill – Wipe up ASAP and dispose of in [blank_start]vacuum[blank_end] sealed contained
If air is not evacuated from barometer it will read [blank_start]low[blank_end].
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Barometric
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TOP
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bottom
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vacuum
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low
Frage 2
Frage
Inductive Plethysmography
Bands containing [blank_start]Teflon[blank_end] coated wire or [blank_start]pressure[blank_end] sensitive semiconductors are wrapped around [blank_start]chest[blank_end]/[blank_start]abdomen[blank_end]
Used to monitor chest motion and Vt in [blank_start]PSG[blank_end]
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Teflon
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pressure
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chest
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abdomen
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PSG
Frage 3
Frage
Aneroid Manometer
Used to measure [blank_start]MIP[blank_end]/[blank_start]MEP[blank_end] and [blank_start]BP[blank_end]
Frage 4
Frage
Pressure Transducers
Used to convert one of [blank_start]energy[blank_end] to another
Most common [blank_start]strain[blank_end] gauge transducer
Used in [blank_start]hemodynamic[blank_end] monitoring to convert [blank_start]analog[blank_end] to digital.
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energy
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strain
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hemodynamic
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analog
Frage 5
Frage
BP manometer
Best Method – [blank_start]arterial[blank_end] catheter w/pressure transducer
Measures: [blank_start]Systolic[blank_end], [blank_start]diastolic[blank_end], [blank_start]mean[blank_end] arterial pressure
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arterial
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Systolic
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diastolic
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mean
Frage 6
Frage
Gas Delivery Systems
Blenders: to deliver [blank_start]precise[blank_end] O2
Equalizes [blank_start]inlet[blank_end] pressure of air and o2
Precision metering device – [blank_start]proportioning[blank_end] valve
Low [blank_start]pressure[blank_end] alarm
Can be used with a nonrebreather mask to deliver precise O2
Flowmeters
Controls gas flow to patient
Flow indicated by [blank_start]ball[blank_end]
Different gases will cause [blank_start]inaccurate[blank_end] readings
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precise
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proportioning
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inlet
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pressure
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ball
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inaccurate
Frage 7
Frage
[blank_start]Integrator[blank_end] – Process in which flow is divided into very small intervals. Flow is volume/time – end result is volume.
[blank_start]Differentiation[blank_end]- Device that provides reverse of integration. Flow is obtained from volume signals
Data Backup- Temporary Storage, permanent patient files, database storage
[blank_start]Data[blank_end] Interface – Allows for both access to data and control of equipment during testing
12 bit converters – used most for volume and flow measurements
Converter speed – important for tests that require [blank_start]rapid[blank_end] signal changes like FVC
Software – contains [blank_start]instructions[blank_end] stored in memory of computer. Most software contains interpretation programs that utilize algorithims
Mass Storage Devices – Hard Drives, stores lots of info
CPU – Performs most functions in software
[blank_start]Resolution[blank_end]- Smallest change that can be measure by computer. Calculated via: Volume range (liters), Signal range (volts), A/D converter (bits
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Integrator
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Differentiation
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Data
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rapid
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instructions
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Resolution