ADC anode heel effect DOB decreased exposure reaching the IR no change increased pixel density radiographer identification DELs subject contrast examination date window level patient's identification number beam restriction low subject contrast signal large angling (tube, part, IR) more mAs variable kVp - fixed mAs technique chart patient's name high contrast positive contrast agents increase SID pixel density kVp & mAs decrease institution's name indirect- capture DR high indirect- capture DR detector size or FOV direct- capture DR bit depth patient factors grids high subject contrast MTF SNR time of day motion side marker tube filtration more wider patient age increased contrast decreased or small pixel size OID increase in mAs detectors large matrix fixed kVp - variable mAs technique chart CCD additive DQE pixel pitch anatomically programmed techniques exposure adjustment spatial resolution dynamic range fast (increase mA & decrease time) low contrast CMOS fill factor decreased or narrow pixel pitch decreased spatial resolution contrast resolution window width sampling frequency attending physician more noise filtration increased magnification absorb scatter & increase contrast quantum noise (quantum mottle) focal spot size ADC anode heel effect DOB decreased exposure reaching the IR no change increased pixel density radiographer identification DELs subject contrast examination date window level patient's identification number beam restriction low subject contrast signal large angling (tube, part, IR) more mAs variable kVp - fixed mAs technique chart patient's name high contrast positive contrast agents increase SID pixel density kVp & mAs decrease institution's name indirect- capture DR high indirect- capture DR detector size or FOV direct- capture DR bit depth patient factors grids high subject contrast MTF SNR time of day motion side marker tube filtration more wider patient age increased contrast decreased or small pixel size OID increase in mAs detectors large matrix fixed kVp - variable mAs technique chart CCD additive DQE pixel pitch anatomically programmed techniques exposure adjustment spatial resolution dynamic range fast (increase mA & decrease time) low contrast CMOS fill factor decreased or narrow pixel pitch decreased spatial resolution contrast resolution window width sampling frequency attending physician more noise filtration increased magnification absorb scatter & increase contrast quantum noise (quantum mottle) focal spot size
(Print) Use this randomly generated list as your call list when playing the game. There is no need to say the BINGO column name. Place some kind of mark (like an X, a checkmark, a dot, tally mark, etc) on each cell as you announce it, to keep track. You can also cut out each item, place them in a bag and pull words from the bag.
ADC
anode heel effect
DOB
decreased exposure reaching the IR
no change
increased pixel density
radiographer identification
DELs
subject contrast
examination date
window level
patient's identification number
beam restriction
low subject contrast
signal
large
angling (tube, part, IR)
more
mAs
variable kVp - fixed mAs technique chart
patient's name
high contrast
positive contrast agents
increase
SID
pixel density
kVp & mAs
decrease
institution's name
indirect-capture DR
high
indirect-capture DR
detector size or FOV
direct-capture DR
bit depth
patient factors
grids
high subject contrast
MTF
SNR
time of day
motion
side marker
tube filtration
more
wider
patient age
increased contrast
decreased or small pixel size
OID
increase in mAs
detectors
large matrix
fixed kVp - variable mAs technique chart
CCD
additive
DQE
pixel pitch
anatomically programmed techniques
exposure adjustment
spatial resolution
dynamic range
fast (increase mA & decrease time)
low contrast
CMOS
fill factor
decreased or narrow pixel pitch
decreased spatial resolution
contrast resolution
window width
sampling frequency
attending physician
more noise
filtration
increased magnification
absorb scatter & increase contrast
quantum noise (quantum mottle)
focal spot size