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CTP1 Exam 2 UPDATED QUESTIONS AND CORRECT ANSWERS

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CTP1 Exam 2 UPDATED QUESTIONS AND CORRECT ANSWERS PDD equation - CORRECT ANSWER PDD = (D(d)/ D(dmax)) * 100 What are D0, Dmax, D10 for 6x PDD - CORRECT ANSWER What are D0, Dmax, D10 for 18x PDD - CORRECT ANSWER How is PDD measured - CORRECT ANSWER 30%, 1.5 cm, 67% 20%, 3.5cm, 80% in water chamber with reference and signal ion chambers. The signal chamber moves ant to post (up and down) How is an isodose line derived? - CORRECT ANSWER from PDD and profiles When should you not normalizes an isodose line? - CORRECT ANSWER of the field edge Normalization equation - CORRECT ANSWER within 2cm (100/ what you are normalizing to)*100 Purpose of wedges - CORRECT ANSWER missing tissue compensation tilt the isodose lines Old definition of a wedge angle - CORRECT ANSWER new definition of wedge angle - CORRECT ANSWER depth where 50% line is depth of 10 cm How does wedge angle change with depth? - CORRECT ANSWER decrease with depth because the scatter will begin to fill in the gradient wedge angle will

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CTP1 Exam 2 UPDATED QUESTIONS AND
CORRECT ANSWERS
PDD equation - CORRECT ANSWER PDD = (D(d)/ D(dmax)) * 100



What are D0, Dmax, D10 for 6x PDD - CORRECT ANSWER 30%, 1.5 cm, 67%



What are D0, Dmax, D10 for 18x PDD - CORRECT ANSWER 20%, 3.5cm, 80%



How is PDD measured - CORRECT ANSWER in water chamber with reference and
signal ion chambers. The signal chamber moves ant to post (up and down)



How is an isodose line derived? - CORRECT ANSWER from PDD and profiles



When should you not normalizes an isodose line? - CORRECT ANSWER within 2cm
of the field edge



Normalization equation - CORRECT ANSWER (100/ what you are normalizing
to)*100



Purpose of wedges - CORRECT ANSWER tilt the isodose lines

missing tissue compensation



Old definition of a wedge angle - CORRECT ANSWER depth where 50% line is



new definition of wedge angle - CORRECT ANSWER depth of 10 cm



How does wedge angle change with depth? - CORRECT ANSWER wedge angle will
decrease with depth because the scatter will begin to fill in the gradient

,What is a compensator - CORRECT ANSWER 3-D wedge: looks like mountains,
abstract shape



Factors affecting compensators - CORRECT ANSWER energy

field size
depth

compensator shape



What are partial transmission blocks - CORRECT ANSWER uses cerrobend



what is the HVL for cerrobend - CORRECT ANSWER 15 mm



Hour glass effect - CORRECT ANSWER for AP/PA field

nothing outside to scatter in when things scatter out, creating an hourglass shape



where are hot spots for AP/PA set up - CORRECT ANSWER at dmax and laterally due
to horns from flattening filter



How do hot spots change with energy for AP/PA set up - CORRECT ANSWER as
energy decreases, hot spots will increase



how do hot spots change with seperation for AP/PA set up - CORRECT ANSWER as
seperation increases, hot spots will increase



how do hot spots change with field size for AP/PA set up - CORRECT ANSWER as
field size increases, hot spots will decrease slightly



for AP/PA set up (sep=20cm) where are the hot spots for 4X - CORRECT
ANSWER 20%

, for AP/PA set up (sep=20cm) where are the hot spots for 6X - CORRECT
ANSWER 15%



for AP/PA set up (sep=20cm) where are the hot spots for 10X - CORRECT
ANSWER 12%



for AP/PA set up (sep=20cm) where are the hot spots for 15X - CORRECT
ANSWER 10%



for AP/PA set up (sep=20cm) where are the hot spots for 18X - CORRECT
ANSWER 8%



How do we minimize integral dose? - CORRECT ANSWER use highest energy

use greater SSD



How does IMRT affect integral dose? - CORRECT ANSWER IMRT will increase
integral dose



dose for inhomogeneities in air upstream - CORRECT ANSWER dose is less due to
lack of backscatter



dose for inhomogeneities in air inside - CORRECT ANSWER increase in dose,
particles can travel further



dose for inhomogeneities in air interface - CORRECT ANSWER lower than expected
due to re-build up effect



dose for inhomogeneities in air beyond - CORRECT ANSWER increase in dose



dose for inhomogeneities in bone upstream - CORRECT ANSWER increase in dose
due to high backscatter

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