grids sampling frequency kVp & mAs attending physician positive contrast agents signal CCD ADC decreased exposure reaching the IR OID mAs more increased pixel density angling (tube, part, IR) time of day pixel pitch anode heel effect high subject contrast anatomically programmed techniques decreased spatial resolution spatial resolution more motion dynamic range decrease tube filtration additive institution's name detector size or FOV direct- capture DR large matrix patient factors indirect- capture DR subject contrast variable kVp - fixed mAs technique chart filtration examination date wider absorb scatter & increase contrast side marker DQE SID patient's name exposure adjustment patient's identification number contrast resolution window width DELs beam restriction fast (increase mA & decrease time) fill factor decreased or narrow pixel pitch patient age low subject contrast focal spot size increased magnification low contrast SNR fixed kVp - variable mAs technique chart large indirect- capture DR increase high decreased or small pixel size no change high contrast MTF DOB CMOS quantum noise (quantum mottle) detectors radiographer identification bit depth increased contrast window level pixel density increase in mAs more noise grids sampling frequency kVp & mAs attending physician positive contrast agents signal CCD ADC decreased exposure reaching the IR OID mAs more increased pixel density angling (tube, part, IR) time of day pixel pitch anode heel effect high subject contrast anatomically programmed techniques decreased spatial resolution spatial resolution more motion dynamic range decrease tube filtration additive institution's name detector size or FOV direct- capture DR large matrix patient factors indirect- capture DR subject contrast variable kVp - fixed mAs technique chart filtration examination date wider absorb scatter & increase contrast side marker DQE SID patient's name exposure adjustment patient's identification number contrast resolution window width DELs beam restriction fast (increase mA & decrease time) fill factor decreased or narrow pixel pitch patient age low subject contrast focal spot size increased magnification low contrast SNR fixed kVp - variable mAs technique chart large indirect- capture DR increase high decreased or small pixel size no change high contrast MTF DOB CMOS quantum noise (quantum mottle) detectors radiographer identification bit depth increased contrast window level pixel density increase in mAs more noise
(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.
grids
sampling frequency
kVp & mAs
attending physician
positive contrast agents
signal
CCD
ADC
decreased exposure reaching the IR
OID
mAs
more
increased pixel density
angling (tube, part, IR)
time of day
pixel pitch
anode heel effect
high subject contrast
anatomically programmed techniques
decreased spatial resolution
spatial resolution
more
motion
dynamic range
decrease
tube filtration
additive
institution's name
detector size or FOV
direct-capture DR
large matrix
patient factors
indirect-capture DR
subject contrast
variable kVp - fixed mAs technique chart
filtration
examination date
wider
absorb scatter & increase contrast
side marker
DQE
SID
patient's name
exposure adjustment
patient's identification number
contrast resolution
window width
DELs
beam restriction
fast (increase mA & decrease time)
fill factor
decreased or narrow pixel pitch
patient age
low subject contrast
focal spot size
increased magnification
low contrast
SNR
fixed kVp - variable mAs technique chart
large
indirect-capture DR
increase
high
decreased or small pixel size
no change
high contrast
MTF
DOB
CMOS
quantum noise (quantum mottle)
detectors
radiographer identification
bit depth
increased contrast
window level
pixel density
increase in mAs
more noise