1. Introduction to Radiation Protection
2. Radiation: Types, Sources, and Doses Received
3. Interaction of X-Radiation with Matter
4. Radiation Quantities and Units
5. Radiation Monitoring
6. Overview of Cell Biology
7. Molecular and Cellular Radiation Biology
8. Early Tissue Reactions and T...
,TABLE OF CONTENTS
1. Introduction to Radiation Protection
2. Radiation: Types, Sources, and Doses Received
3. Interaction of X-Radiation with Matter
4. Radiation Quantities and Units
5. Radiation Monitoring
6. Overview of Cell Biology
7. Molecular and Cellular Radiation Biology
8. Early Tissue Reactions and Their Effects on Organ Systems
9. Stochastic Effects and Late Tissue Reactions of Radiation in Organ Systems
10. Equipment Design for Radiation Protection
11. Management of Patient Radiation Dose During Diagnostic X-Ray Procedures
12. Radiation Safety in Computed Tomography and Mammography
13. Management of Imaging Personnel Radiation Dose During Diagnostic X-Ray Procedures
14. Radioisotopes and Radiation Protection
,Chapter 01: Introduction to Radiation Protection
Sherer: Radiation Protection in Medical Radiography, 9th Edition
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
ANSWER: D
2. Which of the following is a form of radiation that is capable of creating electrically
chargedparticles 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
ANSWER: 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.
ANSWER: 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.
ANSWER: C
, Radiation Protection in Medical Radiography 8th Edition Sherer Test Bank
5. The qadvantages qof qthe qBERT qmethod qare
1. it qdoes qnot qimply qradiation qrisk; qit qis qsimply qa qmeans qfor qcomparison.
2. it qemphasizes qthat qradiation qis qan qinnate qpart qof qour qenvironment.
3. it qprovides qan qanswer qthat qis qeasy qfor qthe qpatient qto qcomprehend.
a. 1 qand q2 qonly
b. 1 qand q3 qonly
c. 2 qand q3 qonly
d. 1, q2, qand q3
ANSWER: q D
8. The qcardinal qprinciples qof qradiation qprotection qinclude qwhich qof qthe qfollowing?
1. Time
2. Distance
3. Shielding
a. 1 qonly
b. 2 qonly
c. 3 qonly
d. 1, q2, qand q3
ANSWER: q D
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