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TEST BANK RADIATION PROTECTION IN MEDICALRADIOGRAPHY 9TH EDITION By Mary Alice Statkiewicz Sherer TABLEOF CONTENT Chapter 1. Introduction to Radiation Protection

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TEST BANK RADIATION PROTECTION IN MEDICALRADIOGRAPHY 9TH EDITION By Mary Alice Statkiewicz Sherer TABLEOF CONTENT Chapter 1. Introduction to Radiation Protection

Instelling
RADIATION PROTECTION IN MEDICAL
Vak
RADIATION PROTECTION IN MEDICAL

Voorbeeld van de inhoud

TEST BANK
RADIATION PROTECTION IN MEDICALRADIOGRAPHY 9TH EDITION
By Mary Alice Statkiewicz Sherer

, TABLEOF CONTENT
Chapter 1. Introduction to Radiation Protection
Chapter5h2.5hRadiation:5hTypes,5hSources,5hand5hDoses5hReceived 5 h C ig




hapter5h3.5hInteraction5hof5hX-Radiation5hwith5hMatter
Chapter5h4.5hRadiation5hQuantities5hand5hUnits 5 h Cha ig




pter5h5.5hRadiation5hMonitoring
Chapter5h6.5 h Overview5hof5hCell5hBiology
Chapter5h7.5hMolecular5hand5hCellular5hRadiation5hBiology
Chapter5h8.5hEarly5hTissue5hReactions5hand5hTheir5hEffects5hon5hOrgan5hSystems5hC
hapte5hr5h9.5hStochastic5hEffects5hand5hLate5hTissue5hReactions5hof5hRadiation5hin5hOr
gan System5hs
ig




Chapter5h10.5hDose5hLimits5hfor5hExposure5hto5hIonizing5hRadiation 5 h C ig




hapter5h11.5hEquipmentDesign5hfor5hRadiation5hProtection
Chapter5h12.5hManagement5hof5hPatient5hRadiation5hDose5hDuring5hDiagnostic5hX-
RayProcedures
5h


Chapter5h13.5hRadiation5hSafety5hin5hComputed5hTomography5hand5hMammograp
hy 5 h Chapter5h14.5hManagement5hof5hImaging5hPersonnel5hRadiation5hDose5hDur
ig




ing5hDiag5hnostic5hX-Ray5hProcedures
Chapter5h15.5hRadioisotopes5hand5hRadiation5h Protection



Chapter 01:5 h Introduction5 h to5 h Radiation5 h Protection
Sherer:5 h Radiation5 h Protection5hin5hMedical5 h Radiography, 9th5 h Edition

MULTIPLE5 h CHOICE

1. Consequences5hof5hionization5 h in5hhuman5 h cells5 h include
1. creation5hof5hunstable5 h atoms.
2. production5 h of5hfree5 h electrons.
3. creation5hof5hhighly5hreactive free5hmolecules5h(called5hfree5hradicals)5hcapable5hof5hproducin
gi


g subs5htances5 h poisonous5 h to5hthe5hcell.
ig


4. creation5hof5hnew5hbiologic5 h molecules5 h detrimental5 h to5hthe5hliving5 h cell.
5. injury5hto5hthe5hcell5hthat5hmay5hmanifest5 h itself5 h as5habnormal5 h function5 h or5hloss5 h of5hfunction.
6. production5hof5hlow-energy5 h x-ray5hphotons.
a. 1,5h2,5h3,5hand5h45honly
b. 2,5h3,5h4,5hand5h55honly
c. 3,5h4,5h5,5hand5h65honly
d. All5hthe5hoptions
ANS:5hD

,2. Which5hof5hthe5hfollowing5his5ha5hform5hof5hradiation that5his5hcapable5 h of5hcreating5helectrically5hc
gi


harged p5harticles by5hremoving5horbital5helectrons5hfrom the5hatom5hof5hnormal5hmatter5hthrough5h
ig gi gi


which5hit5hpasses?
a. Ionizing5hradiation
b. Nonionizing5hradiation
c. Subatomic5 h radiation
d. Ultrasonic5h radiation
ANS:5hA

3. Regarding5 h exposure5h to5hionizing5 h radiation,5hpatients5 h who5hare5heducated5hto5hunderstand5 h th
e5hmedic5hal benefit5 h of5han5himaging5 h procedure5 h are5hmore5hlikely5 h to
gi


a. assume5ha5hsmall5hchance5hof5hbiologic damage5hbut5hnot suppress5hany5hradiation5hphob
gi gi


ia the5hy5hmay5hhave.
ig


b. cancel5 h their5 h scheduled5hprocedure5 h because5 h they5hare5hnot5hwilling5hto5hassum
e5 h asma5hll chance5 h of5hbiologic5hdamage.
gi


c. suppress5hany5hradiation5hphobia5 h but5hnot5hrisk5ha5hsmall5 h chance5hof5hpossible5h
biologi5hc damage. ig


d. suppress5h any5hradiation phobia5 h and5hbe5hwilling5hto5hassume5 h a5hsmall5hchance5 h of
gi


possibl5he biologic5hdamage.
ig




ANS:5hD

4. The5hmillisievert5 h (mSv)5h is5hequal5hto
a. 1/105hof5ha5hsievert.
b. 1/1005hof5ha5hsievert.
c. 1/10005hof5ha5hsievert.
d. 1/10,0005hof5ha5hsievert.
ANS:5hC


5. The5hadvantages5hof5hthe5 h BERT5 h method5 h are
1. BERT5hdoes5hnot5himply5hradiation5 h risk;5hit5 his5 h simply5 h a5hmeans5 h for5hcomparison.
2. BERT5h emphasizes5 h that5h radiation5 h is5 h an5hinnate5 h part5hof5hthe5henvironment.
3. BERT5 h provides5 h an5hanswer5 h that5 h is5 h easy5hfor5 h the5hpatient5 h to comprehend.
gi


a. 15hand5h25honly
b. 15hand5h35honly
c. 2 and 35honly
gi gi


d. All5hthe5hoptions
ANS:5hD

6. If5ha5hpatient5hasks5ha5hradiographer5ha5hquestion5habout5hhow5hmuch5hradiation5hhe5hor5hshe5hwill5hre
ceive fro5hm5 h a5hspecific5hx-ray5hprocedure,5 h the5 h radiographer5 h can
ig


a. respond5 h by5husing5han5hestimation5hbased5hon5hthe5 h comparison5 h of5hradiation5hreceived
5 h from 5 h the5hx-ray5hto5hnatural5 h background5 h radiation5 h received.
ig


b. avoid5hthe5hpatient’s5 h question5 h by5hchanging5 h the5hsubject.
c. tell5hthe5hpatient5hthat5hit5his5hunethical5 h to5hdiscuss5 h such5hconcerns.
d. refuse5 h to5hanswer5 h the5hquestion5 h and recommend5hthat5h he5hor5hshe5 h speak
gi


5hwith5 h t5hhe referring5 h physician.
gi



ANS:5hA

7. Why5hshould5 h the5h selection5hof5htechnical5 h exposure5 h factors5 h for5hall5hmedical5 h imaging5
h procedu5hres always5 h follow5hALARA?
ig


a. So5hthat5hreferring5hphysicians5hordering imaging procedures5hdo5hnot5hhave5hto5hacc
gi gi


ept r5hesponsibility5 h for5hpatient5 h radiation5 h safety.
gi


b. So5hthat5hradiographers5hand5hradiologists do not5hhave5 h to5haccept5hresponsibility5 h for
gi

, patient5hradiation5 h safety.
c. Because5 h radiation-
induced5 h cancer5 h does5hnot5 h appear5hto5hhave5 h a fixed5 h threshold,
gi


that5 h is, a5hdose5hlevel5h
ig


bel5how5hwhich5ha5hperson5hwould5hhave5hno5hchance5hof5hdeveloping5hthis5hdisease.
d. Because5 h radiation-
induced5hcancer5h does5hhave5 h a5hdose level5 h at5hwhich5 h individuals would5 h have5
gi ig


h a5hc5hhance5 h of5hdeveloping5 h this5 h disease.


ANS:5hC

8. The5hcardinal5hprinciples5 h of radiation5hprotection5hinclude5 h which5hof5hthe following?
gi gi


a. Time
b. Distance
c. Shielding
d. All5hthe5hoptions
ANS:5hD

9. In5ha5hhospital5hsetting,5hwhich5 h of5hthe5hfollowing5hprofessionals5his5hexpressly5 h charged5 h by5hth
e5hhospit5hal administration5hwith5hbeing5hdirectly5hresponsible5hfor5hthe5hexecution,5henforcemen
gi


t,5hand5hmainten5hance5 h of5hthe5 h ALARA5 h program?
a. Assistant5hadministrator5 h of5hthe5 h facility
b. Chief5hof5hstaff
c. Radiation5h Safety5hOfficer
d. Student5hradiologic5htechnologist
ANS:5hC

10. Why5his5ha5hquestion5hconcerning5hthe5hamount5 h of5hradiation5ha5hpatient5 h will5 h receive5 h durin
g a5hspecifi5hc x-ray5hprocedure5 h difficult5hto5hanswer?
gi ig


1. Because5hthe5hreceived5 h dose5his5 h specified5hin5ha5hnumber5 h of5hdifferent5 h units5 h of5hmeasure.
2. Because5 h the5 h scientific5 h units5 h for5 h radiation5 h dose are5hnormally5 h not5 h comprehensible
gi


by5ha patie
gi


n5ht.
3. Because5hthe5h patient5 h should5 h not5hreceive5 h any5hinformation5 h about5hradiation5 h dose.
a. 15hand 25honly
gi


b. 15hand 35honly
gi


c. 2 and 35honly
gi gi


d. All5hthe5hoptions
ANS:5hA

11. X-rays5hare5ha5hform5h of5hwhich5 h of5hthe5hfollowing5 h kinds5 h of5hradiation?
a. Environmental
b. Ionizing
c. Internal
d. Nonionizing
ANS:5hB

12. What5hunit5 h is5h used5hto5hmeasure5 h radiation5 h exposure5 h in5 h the5hmetric5 h International5 h System5h
of5hUnits?
a. Coulomb5hper5hkilogram
b. Milligray
c. Millisievert
d. Sievert
ANS:5hA

13. What5horganization5hwas5hfounded5hin5h20075hthat5hcontinues5htheir5hpursuit5hto5hraise5hawareness5

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Instelling
RADIATION PROTECTION IN MEDICAL
Vak
RADIATION PROTECTION IN MEDICAL

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