Deck 13: Screen-Film Radiographic Technique
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Deck 13: Screen-Film Radiographic Technique
1
List the following tissues in order from the most radiolucent to the most radiopaque.
I. muscle
II. fat
III. lung
IV. bone
A) IV, I, II, III
B) III, I, II, IV
C) III, II, I, IV
D) II, III, I, IV
I. muscle
II. fat
III. lung
IV. bone
A) IV, I, II, III
B) III, I, II, IV
C) III, II, I, IV
D) II, III, I, IV
III, II, I, IV
2
An increase in mAs causes _____ in beam quality and _____ in beam quantity.
A) an increase, a decrease
B) an increase, no change
C) an increase, an increase
D) no change, an increase
A) an increase, a decrease
B) an increase, no change
C) an increase, an increase
D) no change, an increase
no change, an increase
3
At least a _____% change in mAs is necessary to produce a visible change in optical density.
A) 10
B) 15
C) 30
D) 50
A) 10
B) 15
C) 30
D) 50
30
4
Both beam quality and beam quality are increased by _____.
A) increasing kVp
B) using 3-phase voltage
C) increasing mAs
D) both A and B
A) increasing kVp
B) using 3-phase voltage
C) increasing mAs
D) both A and B
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5
Which technique would give the highest patient dose?
A) 90 kVp/200 mA @ 0.02 sec
B) 87 kVp/400 mA @ 0.02 sec
C) 74 kVp/400 mA @ 0.04 sec
D) 65 kVp/300 mA @ 0.1 sec
A) 90 kVp/200 mA @ 0.02 sec
B) 87 kVp/400 mA @ 0.02 sec
C) 74 kVp/400 mA @ 0.04 sec
D) 65 kVp/300 mA @ 0.1 sec
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6
A radiograph is taken using 75 kVp @ 20 mAs. Which change in technique would increase contrast but maintain the same density?
A) 85 kVp @ 10 mAs
B) 85 kVp @ 40 mAs
C) 65 kVp @ 20 mAs
D) 65 kVp @ 40 mAs
A) 85 kVp @ 10 mAs
B) 85 kVp @ 40 mAs
C) 65 kVp @ 20 mAs
D) 65 kVp @ 40 mAs
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7
What are the four primary exposure factors?
A) kVp, mAs, filtration, and voltage ripple
B) mA, time, distance, and filtration
C) kVp, mAs, time, and SID
D) mA, time, kVp controls, and focal spot size
A) kVp, mAs, filtration, and voltage ripple
B) mA, time, distance, and filtration
C) kVp, mAs, time, and SID
D) mA, time, kVp controls, and focal spot size
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8
Beam penetrability is increased if _____ is/are increased.
A) mAs
B) SID
C) kVp
D) all of the above
A) mAs
B) SID
C) kVp
D) all of the above
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9
Added filtration has the effect of _____ the beam quality and _____ patient dose.
A) reducing, increasing
B) reducing, reducing
C) increasing, reducing
D) increasing, increasing
A) reducing, increasing
B) reducing, reducing
C) increasing, reducing
D) increasing, increasing
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10
A _____% increase in kVp has the same effect on optical density as doubling the mAs.
A) 5
B) 15
C) 30
D) 50
A) 5
B) 15
C) 30
D) 50
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11
There is a direct relationship between the quantity of x-rays and the _____.
A) milliamperage
B) kilovolt peak
C) filter thickness
D) voltage ripple
A) milliamperage
B) kilovolt peak
C) filter thickness
D) voltage ripple
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12
If mAs is increased from 20 mAs to 40 mAs,the patient dose will _____.
A) not be affected
B) increase slightly
C) be halved
D) be doubled
A) not be affected
B) increase slightly
C) be halved
D) be doubled
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13
Beam quality is improved when the _____ is increased,but _____ has no effect on beam quality.
A) kilovoltage, filtration
B) kilovoltage, milliamperage
C) milliamperage, kilovoltage
D) milliamperage, filtration
A) kilovoltage, filtration
B) kilovoltage, milliamperage
C) milliamperage, kilovoltage
D) milliamperage, filtration
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14
When only the optical density needs to be changed,only the _____ should be adjusted.
A) mAs
B) kVp
C) SID
D) filtration
A) mAs
B) kVp
C) SID
D) filtration
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15
Patient thickness should be measured with the _____.
A) caliper
B) eyes
C) hands
D) SID tape
A) caliper
B) eyes
C) hands
D) SID tape
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16
The small focal spot will provide a _____.
I. higher quality x-rays beam
II. greater quantity of x-rays
III. finer detail of image
A) I only
B) I & III
C) III only
D) I, II & III
I. higher quality x-rays beam
II. greater quantity of x-rays
III. finer detail of image
A) I only
B) I & III
C) III only
D) I, II & III
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17
Changes in kVp affect _____.
A) optical density
B) image contrast
C) image noise
D) all of the above
A) optical density
B) image contrast
C) image noise
D) all of the above
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18
A radiograph taken using 65 kVp @ 10 mAs is too light. Which technique would double the optical density while producing a wider scale of contrast?
A) 75 kVp @ 10 mAs
B) 75 kVp @ 20 mAs
C) 55 kVp @ 20 mAs
D) 55 kVp @ 40 mAs
A) 75 kVp @ 10 mAs
B) 75 kVp @ 20 mAs
C) 55 kVp @ 20 mAs
D) 55 kVp @ 40 mAs
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19
Which medical condition may require a lower technique?
A) atelectasis
B) emphysema
C) pneumonia
D) pleural effusion
A) atelectasis
B) emphysema
C) pneumonia
D) pleural effusion
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20
A radiograph with a long scale of contrast will have _____ latitude and _____ contrast.
A) narrow, low
B) narrow, high
C) wide, low
D) wide, high
A) narrow, low
B) narrow, high
C) wide, low
D) wide, high
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21
Foreshortening is caused by a(n)_____.
A) angled beam when the body part is parallel the image receptor
B) angled body part when the beam is perpendicular to the image receptor
C) angled beam that is perpendicular to the body part
D) perpendicular beam and the body part parallel to the image receptor
A) angled beam when the body part is parallel the image receptor
B) angled body part when the beam is perpendicular to the image receptor
C) angled beam that is perpendicular to the body part
D) perpendicular beam and the body part parallel to the image receptor
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22
With automatic exposure control the exposure is terminated when the optimum _____ is reached.
A) OD
B) time
C) mAs
D) kVp
A) OD
B) time
C) mAs
D) kVp
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23
Sharpness of detail can be improved by increasing _____.
A) SID
B) OID
C) focal spot size
D) all of the above
A) SID
B) OID
C) focal spot size
D) all of the above
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24
A variable mAs technique chart has a set kVp and specific mAs settings for _____.
A) small, medium, and large parts
B) every 2 cm of thickness
C) every 6 cm of thickness
D) either A or B
A) small, medium, and large parts
B) every 2 cm of thickness
C) every 6 cm of thickness
D) either A or B
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25
In a variable kVp technique chart,the optimal mAs is set for each body part and there is a _____ kVp increase for each cm of thickness.
A) 6
B) 4
C) 2
D) 1
A) 6
B) 4
C) 2
D) 1
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