Test Bank for Radiation Protection in Medical Radiography 8th Edition Sherer
Table of Contents
Chapter 01: Introduction to Radiation Protection .................................................................................. 2 Chapter 02: Radiation: Types, Sources, and Doses Received ............................................................. 6 Chapter 03: Interaction of X-Radiation with Matter ............................................................................. 11 Chapter 04: Radiation Quantities and Units ....................................................................................... 15 Chapter 05: Radiation Monitoring ....................................................................................................... 19 Chapter 06: Overview of Cell Biology ................................................................................................. 24 Chapter 07: Molecular and Cellular Radiation Biology ........................................................................ 28 Chapter 08: Early Tissue Reactions and Their Effects on Organ Systems .......................................... 32 Chapter 09: Stochastic Effects and Late Tissue Reactions of Radiation in Organ Systems ................. 37 Chapter 10: Dose Limits for Exposure to Ionizing Radiation .............................................................. 41
1 | P a g eChapter 01: Introduction to Radiation Protection
MULTIPLE CHOICE
1. Consequences of ionization in human cells include
1. creation of unstable atoms.
2. production of free electrons.
3. creation of highly reactive free radicals capable of producing substances poisonous to
the cell.
4. creation of new biologic molecules detrimental to the living cell.
5. injury to the cell that may manifest itself as abnormal function or loss of function.
a. 1, 2, and 3 only
b. 2, 3, and 4 only
c. 3, 4, and 5 only
d. 1, 2, 3, 4, and 5
ANS: D
2. Which of the following is a form of radiation that is capable of creating electrically charged
particles by removing orbital electrons from the atom of normal matter through which it
passes?
a. Ionizing radiation
b. Nonionizing radiation
c. Subatomic radiation
d. Ultrasonic radiation
ANS: A
3. Regarding exposure to ionizing radiation, patients who are educated to understand the
medical benefit of an imaging procedure are more likely to
a. assume a small chance of biologic damage but not suppress any radiation
phobia they may have.
b. cancel their scheduled procedure because they are not willing to assume a
small chance of biologic damage.
c. suppress any radiation phobia but not risk a small chance of possible
biologic damage.
d. suppress any radiation phobia and be willing to assume a small chance of
possible biologic damage.
ANS: D
4. The millisievert (mSv) is equal to
a. 1/10 of a sievert.
b. 1/100 of a sievert.
c. 1/1000 of a sievert.
d. 1/10,000 of a sievert.
ANS: C
5. The advantages of the BERT method are
1. it does not imply radiation risk; it is simply a means for comparison.
2. it emphasizes that radiation is an innate part of our environment.
3. it provides an answer that is easy for the patient to comprehend.
a. 1 and 2 only
b. 1 and 3 only
2 | P a g ec. 2 and 3 only
d. 1, 2, and 3
ANS: D
6. If a patient asks a radiographer a question about how much radiation he or she will
receive from a specific x-ray procedure, the radiographer can
a. respond by using an estimation based on the comparison of radiation
received from the x-ray to natural background radiation received.
b. avoid the patient’s question by changing the subject.
c. tell the patient that it is unethical to discuss such concerns.
d. refuse to answer the question and recommend that he or she speak with
the referring physician.
ANS: A
7. Why should the selection of technical exposure factors for all medical imaging
procedures always follow ALARA?
a. So that referring physicians ordering imaging procedures do not have to
accept responsibility for patient radiation safety.
b. So that radiographers and radiologists do not have to accept responsibility
for patient radiation safety.
c. Because radiation-induced cancer does not appear to have a dose level
below which individuals would have no chance of developing this disease.
d. Because radiation-induced cancer does have a dose level at which
individuals would have a chance of developing this disease.
ANS: C
8. The cardinal principles of radiation protection include which of the following?
1. Time
2. Distance
3. Shielding
a. 1 only
b. 2 only
c. 3 only
d. 1, 2, and 3
ANS: D
9. In a hospital setting, which of the following professionals is expressly charged by the hospital
administration with being directly responsible for the execution, enforcement, and
maintenance of the ALARA program?
a. Assistant administrator of the facility
b. Chief of staff
c. Radiation Safety Officer
d. Student radiologic technologist
ANS: C
10. Why is a question concerning the amount of radiation a patient will receive during a specific
x-ray procedure difficult to answer?
1. Because the received dose is specified in a number of different units of measure
2. Because the scientific units for radiation dose are normally not comprehensible by a patient
3. Because the patient should not receive any information about radiation dose
3 | P a g ea. 1 and 2 only
b. 1 and 3 only
c. 2 and 3 only
d. 1, 2, and 3
ANS: A
11. X-rays are a form of which of the following kinds of radiation?
a. Environmental
b. Ionizing
c. Internal
d. Nonionizing
ANS: B
12. What unit is used to measure radiation exposure in the metric International System of Units?
a. Coulomb per kilogram
b. Milligray
c. Millisievert
d. Sievert
ANS: A
13. What organization was founded in 2007 that continues their pursuit to raise awareness of
the need for dose reduction protocols by promoting pediatric-specified scan protocols to be
used for both radiology and nonradiology users of CT?
a. U.S. Food and Drug Administration
b. Alliance for Radiation Safety in Pediatric Imaging.
c. American Registry of Radiologic Technologists
d. The Joint Commission
ANS: B
14. Which of the following provides the basis for determining whether an imaging procedure or
practice is justified?
a. ALARA concept
b. BERT method
c. Diagnostic efficacy
d. NEXT program
ANS: C
15. Which of the following is a method of explaining radiation to the public?
a. ALARA
b. BERT
c. ORP
d. NEXT
ANS: B
16. Radiology departments or individual radiologic technologists can “pledge” to image gently.
The pledge includes which of the following?
1. Make the image gently message a priority in staff communications each year.
2. Review the protocol recommendations and, when necessary, implement adjustments
to practice processes.
4 | P a g e3. Communicate openly with parents.
a. 1 only
b. 2 only
c. 3 only
d. 1, 2, and 3
ANS: D
17. In a team approach to patient care, various participants
1. assume responsibility for their areas of expertise.
2. emphasize the importance of communication throughout the team
3. rotate as the person in charge of the team
a. 1 and 2 only
b. 1 and 3 only
c. 2 and 3 only
d. 1, 2, and 3
ANS: A
18. Which of the following radiation quantities is intended to be the best overall measure of
the biologic effects of ionizing radiation?
a. Exposure
b. Effective dose
c. Absorbed dose
d. There is no radiation quantity that is intended to be the best overall measure of
the biologic effects of ionizing radiation.
ANS: B
19. Typically, people are more willing to accept a risk if they perceive that the potential benefit to
be obtained is
a. greater than the risk involved.
b. equal to the risk involved.
c. less than the risk involved.
d. typically, people are not willing to accept risk no matter how great the benefit may
be.
ANS: A
20. Which of the following statements below is true?
a. It appears that no safe dose level exists for radiation-induced malignant disease.
b. The ALARA principle establishes a dose level for radiation-induced malignancy.
c. The BERT method establishes a dose level for radiation-induced malignancy.
d. The NEXT program and reference values establish a dose level for
radiation- induced malignancy.
ANS: A
21. The ALARA principle provides a method for comparing the amount of radiation used in
various health care facilities in a particular area for specific imaging procedures. This
information may be helpful to many
a. accrediting bodies.
b. advisory groups.
c. radiation standards organizations.
d. regulatory agencies.
5 | P a g eANS: D
22. The term as low as reasonable achievable (ALARA) is synonymous with the term
a. background equivalent radiation time (BERT).
b. equivalent dose (EqD).
c. diagnostic efficacy.
d. optimization for radiation protection (ORP).
ANS: D
23. Diagnostic efficacy includes
1. determining if an imaging procedure is justified.
2. obtaining images with minimal radiation exposure.
3. adhering to radiation safety guidelines.
4. revealing the presence or absence of disease in a patient.
a. 1, 2, and 3 only
b. 1, 2, and 4 only
c. 2, 3, and 4 only
d. 1, 2, 3, and 4
ANS: D
24. Which of the following are required by The Joint Commission for CT?
1. Annual education of staff in dose reduction techniques
2. Minimum qualifications for medical physicists
3. Documentation of CT radiation doses
4. Management of CT protocols to minimize radiation dose
a. 1 and 2 only
b. 1 and 3 only
c. 2 and 4 only
d. 1, 2, 3, and 4
ANS: D
25. Effective protective measures take into consideration
1. both human and environmental physical determinants.
2. technical elements.
3. procedural factors.
a. 1 and 2 only
b. 1 and 3 only
c. 2 and 3 only
d. 1, 2, and 3
ANS: D
Chapter 02: Radiation: Types, Sources, and Doses Received
MULTIPLE CHOICE
1. If ionizing radiation from natural sources grows larger because of accidental or
deliberate human actions such as mining radioactive elements, the sources are termed
a. artificial sources.
b. enhanced natural sources.
c. extraterrestrial sources.
6 | P a g ed. manmade sources. ANS: B
2. Electromagnetic radiation travels or propagates through space in the form of a wave but can interact with matter as a particle of energy called a photon. This dual nature is referred to as a. wave attenuation capability. b. wave-particle interchange ability. c. wave-particle duality. d. wave-particle phenomena.
ANS: C
3. Which of the following statements concerning the 1979 nuclear reactor accident at TMI-2 is not true? a. Many excess cancer deaths have been predicted to occur in the 2 million people living within 50 miles of the plant at the time of the accident.
b. During the time of the accident, if persons living within a 100-mile radius of the nuclear power plant received an average radiation exposure of 15 microgray, and this dose is used as the population dose, then no more than two additional resulting cancer deaths can be predicted in the exposed inhabitants as a consequence of radiation exposure.
c. The average dose received by the exposed population living within a 50-mile radius of the TMI nuclear power station at the time of the accident was determined to be 0.08 mSv, which is well below the average annual background level.
d. No melt-through of the reactor vessel resulted during the accident. ANS: A
4. Terrestrial radiation includes which of the following sources? a. Long-lived radioactive elements such as uranium-238, radium-226, and thorium- 232 that are present in variable quantities in the crust of the earth
b. Radioactive fallout from nuclear weapons tests in which detonation occurred above ground
c. The sun and beyond the solar system d. Airport surveillance systems and electron microscopes
ANS: A
5. The Environmental Protection Agency (EPA) recommends that action be taken to reduce elevated levels of radon in homes to a concentration less than a. 200 pCi/L. b. 135 pCi/L. c. 47 pCi/L. d. 4 pCi/L.
ANS: D
6. Cosmic radiation occurs in which two forms? a. Solar and manmade b. Artificial and galactic c. Natural background and artificial d. Solar and galactic
ANS: D 7 | P a g e
Content preview
Test Bank for Radiation Protection in Medical Radiography 8th Edition Sherer
Table of Contents
Chapter 01: Introduction to Radiation Protection .................................................................................. 2
Chapter 02: Radiation: Types, Sources, and Doses Received ............................................................. 6
Chapter 03: Interaction of X-Radiation with Matter ............................................................................. 11
Chapter 04: Radiation Quantities and Units ....................................................................................... 15
Chapter 05: Radiation Monitoring....................................................................................................... 19
Chapter 06: Overview of Cell Biology ................................................................................................. 24
Chapter 07: Molecular and Cellular Radiation Biology ........................................................................ 28
Chapter 08: Early Tissue Reactions and Their Effects on Organ Systems.......................................... 32
Chapter 09: Stochastic Effects and Late Tissue Reactions of Radiation in OrganSystems ................. 37
Chapter 10: Dose Limits for Exposure to Ionizing Radiation .............................................................. 41
1|Page
,Chapter 01: Introduction to Radiation Protection
MULTIPLE CHOICE
1. Consequences of ionization in human cells include
1. creation of unstable atoms.
2. production of free electrons.
3. creation of highly reactive free radicals capable of producing substances poisonous to
thecell.
4. creation of new biologic molecules detrimental to the living cell.
5. injury to the cell that may manifest itself as abnormal function or loss of function.
a. 1, 2, and 3 only
b. 2, 3, and 4 only
c. 3, 4, and 5 only
d. 1, 2, 3, 4, and 5
ANS: D
2. Which of the following is a form of radiation that is capable of creating electrically charged
particles by removing orbital electrons from the atom of normal matter through which it
passes?
a. Ionizing radiation
b. Nonionizing radiation
c. Subatomic radiation
d. Ultrasonic radiation
ANS: A
3. Regarding exposure to ionizing radiation, patients who are educated to understand the
medicalbenefit of an imaging procedure are more likely to
a. assume a small chance of biologic damage but not suppress any radiation
phobiathey may have.
b. cancel their scheduled procedure because they are not willing to assume a
smallchance of biologic damage.
c. suppress any radiation phobia but not risk a small chance of possible
biologicdamage.
d. suppress any radiation phobia and be willing to assume a small chance of
possiblebiologic damage.
ANS: D
4. The millisievert (mSv) is equal to
a. 1/10 of a sievert.
b. 1/100 of a sievert.
c. 1/1000 of a sievert.
d. 1/10,000 of a sievert.
ANS: C
5. The advantages of the BERT method are
1. it does not imply radiation risk; it is simply a means for comparison.
2. it emphasizes that radiation is an innate part of our environment.
3. it provides an answer that is easy for the patient to comprehend.
a. 1 and 2 only
b. 1 and 3 only
2|Page
, c. 2 and 3 only
d. 1, 2, and 3
ANS: D
6. If a patient asks a radiographer a question about how much radiation he or she will
receivefrom a specific x-ray procedure, the radiographer can
a. respond by using an estimation based on the comparison of radiation
receivedfrom the x-ray to natural background radiation received.
b. avoid the patient’s question by changing the subject.
c. tell the patient that it is unethical to discuss such concerns.
d. refuse to answer the question and recommend that he or she speak with
thereferring physician.
ANS: A
7. Why should the selection of technical exposure factors for all medical imaging
proceduresalways follow ALARA?
a. So that referring physicians ordering imaging procedures do not have to
acceptresponsibility for patient radiation safety.
b. So that radiographers and radiologists do not have to accept responsibility
forpatient radiation safety.
c. Because radiation-induced cancer does not appear to have a dose level
belowwhich individuals would have no chance of developing this disease.
d. Because radiation-induced cancer does have a dose level at which
individualswould have a chance of developing this disease.
ANS: C
8. The cardinal principles of radiation protection include which of the following?
1. Time
2. Distance
3. Shielding
a. 1 only
b. 2 only
c. 3 only
d. 1, 2, and 3
ANS: D
9. In a hospital setting, which of the following professionals is expressly charged by the hospital
administration with being directly responsible for the execution, enforcement, and
maintenance of the ALARA program?
a. Assistant administrator of the facility
b. Chief of staff
c. Radiation Safety Officer
d. Student radiologic technologist
ANS: C
10. Why is a question concerning the amount of radiation a patient will receive during a specific
x-ray procedure difficult to answer?
1. Because the received dose is specified in a number of different units of measure
2. Because the scientific units for radiation dose are normally not comprehensible by a patient
3. Because the patient should not receive any information about radiation dose
3|Page
, a. 1 and 2 only
b. 1 and 3 only
c. 2 and 3 only
d. 1, 2, and 3
ANS: A
11. X-rays are a form of which of the following kinds of radiation?
a. Environmental
b. Ionizing
c. Internal
d. Nonionizing
ANS: B
12. What unit is used to measure radiation exposure in the metric International System of Units?
a. Coulomb per kilogram
b. Milligray
c. Millisievert
d. Sievert
ANS: A
13. What organization was founded in 2007 that continues their pursuit to raise awareness of
the need for dose reduction protocols by promoting pediatric-specified scan protocols to be
usedfor both radiology and nonradiology users of CT?
a. U.S. Food and Drug Administration
b. Alliance for Radiation Safety in Pediatric Imaging.
c. American Registry of Radiologic Technologists
d. The Joint Commission
ANS: B
14. Which of the following provides the basis for determining whether an imaging procedure or
practice is justified?
a. ALARA concept
b. BERT method
c. Diagnostic efficacy
d. NEXT program
ANS: C
15. Which of the following is a method of explaining radiation to the public?
a. ALARA
b. BERT
c. ORP
d. NEXT
ANS: B
16. Radiology departments or individual radiologic technologists can “pledge” to image gently.
The pledge includes which of the following?
1. Make the image gently message a priority in staff communications each year.
2. Review the protocol recommendations and, when necessary, implement adjustments
topractice processes.
4|Page