Prepare for radiography examinations, quizzes, coursework, and certification-focused assessments with this comprehensive Test Bank for Radiographic Image Analysis, 6th Edition. This resource follows the chapter organization of Kathy McQuillen Martensen’s widely used radiography text and focuses on the skills needed to evaluate radiographic images, identify positioning and technical errors, and determine appropriate corrections.
The 6th edition provides updated coverage of digital imaging and incorporates changes reflecting current ARRT® content specifications, while emphasizing critical thinking and accurate image evaluation.
Complete 11-Chapter Coverage
Chapter 1: Guidelines for Image Analysis
Introduces the systematic approach to radiographic image analysis. Covers evaluation principles, image-quality considerations, positioning assessment, anatomical structures, and methods for identifying problems in radiographic projections.
Chapter 2: Visibility of Details
Examines the factors that affect visibility and recognition of anatomical details on radiographic images. Focuses on image quality, detail visibility, exposure-related considerations, and factors that can influence diagnostic interpretation.
Chapter 3: Image Analysis of the Chest and Abdomen
Covers evaluation of chest and abdominal radiographs, including positioning, anatomy, projection requirements, image quality, and recognition of common positioning or technical errors.
Chapter 4: Image Analysis of the Upper Extremity
Reviews radiographic evaluation of the upper extremity, including appropriate positioning, anatomical structures, projections, alignment, and identification of errors that can compromise diagnostic images.
Chapter 5: Image Analysis of the Shoulder
Focuses on shoulder imaging and the evaluation of common shoulder projections. Covers positioning accuracy, anatomical visualization, projection requirements, and correction of positioning-related problems.
Chapter 6: Image Analysis of the Lower Extremity
Examines radiographic images of the lower extremity, including positioning, anatomy, projection evaluation, alignment, and recognition of errors affecting image quality.
Chapter 7: Image Analysis of the Pelvis and Hip
Covers evaluation of pelvic and hip radiographs, with emphasis on positioning, anatomical structures, projection accuracy, alignment, and identification of common imaging errors.
Chapter 8: Image Analysis of the Cervical and Thoracic Vertebrae
Reviews image analysis of the cervical and thoracic spine. Focuses on positioning, vertebral anatomy, projection requirements, visualization, and correction of technical or positioning problems.
Chapter 9: Image Analysis of the Lumbar Vertebrae, Sacrum, and Coccyx
Covers evaluation of lumbar spine, sacral, and coccygeal radiographs. Emphasizes positioning, anatomical demonstration, projection quality, alignment, and recognition of image-analysis errors.
Chapter 10: Image Analysis of the Bony Thorax
Examines radiographic evaluation of the ribs and other structures of the bony thorax. Covers positioning, anatomical visualization, projection requirements, and identification of errors that may affect diagnostic quality.
Chapter 11: Image Analysis of the Cranium
Focuses on radiographic analysis of the cranium, including positioning, anatomical structures, projection evaluation, image quality, and recognition and correction of common positioning errors.
The official Elsevier table of contents confirms these 11 chapters.
Key Topics Covered
Radiographic image analysis
Systematic image evaluation
Image quality assessment
Visibility of anatomical details
Patient positioning
Projection evaluation
Positioning errors
Technical errors
Image correction
Digital imaging considerations
Chest and abdominal radiography
Upper-extremity imaging
Shoulder radiography
Lower-extremity imaging
Pelvis and hip imaging
Cervical and thoracic spine
Lumbar spine
Sacrum and coccyx
Bony thorax
Cranial radiography
Anatomical visualization
Diagnostic-quality radiographs
Critical thinking in image evaluation
ARRT-focused radiography concepts
Exam-Focused Preparation
This test bank is designed to reinforce the concepts and image-analysis skills covered throughout Radiographic Image Analysis, 6th Edition. It can be used alongside the textbook for structured review and assessment preparation.
Useful for:
Radiography exam preparation
Chapter-by-chapter study
Quiz preparation
Coursework review
Self-assessment
Image-analysis practice
Positioning review
Identifying common radiographic errors
Reviewing digital imaging concepts
ARRT® examination preparation
The textbook itself includes image-analysis guidelines, accurately positioned projections, examples of unacceptable images, questions for analyzing projections, chapter review questions, and summary tables, making image evaluation and critical-thinking skills central to the 6th edition.
Comprehensive Radiographic Review
From fundamental guidelines for image analysis and visibility of details to detailed evaluation of the chest, extremities, shoulder, pelvis, spine, bony thorax, and cranium, this resource provides broad coverage of the major anatomical and technical areas addressed in the 6th edition.
The updated edition also adds additional images for evaluating and correcting positioning errors and includes revamped digital-imaging chapters reflecting newer technology.
Whether you are reviewing individual chapters, strengthening image-analysis skills, or preparing for a comprehensive radiography assessment, this resource provides a structured way to reinforce the concepts, terminology, positioning principles, and critical-thinking skills emphasized throughout the textbook.
Get your Test Bank for Radiographic Image Analysis, 6th Edition and make your radiography exam preparation more focused, organized, and efficient.
Content preview
,Chapter 1: Guidelines for Image Analysis
Multiple-Choice Questions (1–70)
Question 1: The patient demographic requirements for radiographic images include all of the following
except:
A) Patient and facility identification
B) Time and date
C) Radiographic view and position
D) Technologist's identification
Correct Answer: D
Rationale: Patient demographic requirements typically include patient/facility identification, time/date,
and view/position. The technologist's identification is not a standard demographic requirement placed
on the image .
Question 2: Which of the following is true about image markers?
They are radiopaque.
They should be reversed before being placed on the IR.
They should be positioned as close to the median plane as possible.
They will be magnified if positioned on the imaging table or patient.
A) 1 and 3 only
B) 1 and 4 only
C) 2 and 3 only
D) 2 and 4 only
Correct Answer: B
Rationale: Image markers are radiopaque (1) and will be magnified if positioned away from the IR (4).
Markers should NOT be reversed (2 is false), and should be placed to indicate the correct side, not
necessarily near the median plane (3 is false) .
Question 3: What is the marker placement for a lateral projection of the vertebrae?
A) Laterally on the side being identified
B) Anteriorly, identifying the side positioned closer to the IR
C) Anywhere within the exposure field
D) Laterally, identifying the side situated closer to the IR
Correct Answer: B
Rationale: For lateral vertebrae projections, the marker is placed anteriorly, identifying the side
positioned closer to the IR .
Question 4: What is the marker placement for a PA projection of the cranium?
A) Anteriorly on the side being identified
,B) Posteriorly on the side being identified
C) Anywhere within the exposure field
D) Laterally on the side being identified
Correct Answer: A
Rationale: For a PA cranium projection, the marker is placed anteriorly to identify the side .
Question 5: Which guideline should be used to position the identification (ID) plate?
A) Place the ID plate within the collimated field whenever possible
B) Position the ID plate toward the direction in which the central ray was angled
C) Position the ID plate next to the narrowest anatomic structure
D) Position the ID plate outside the exposure field
Correct Answer: C
Rationale: The ID plate should be positioned next to the narrowest anatomic structure to minimize
obscuring anatomy .
Question 6: Elongation occurs in all of the following situations except when the:
A) Part is off-center
B) Central ray is angled with the part
C) Central ray and part are perpendicular but the IR is angled
D) Central ray and IR are perpendicular and the part is angled
Correct Answer: D
Rationale: Elongation does not occur when the central ray and IR are perpendicular and the part is
angled; this produces foreshortening or distortion, not elongation in the same manner .
Question 7: For an open joint space to be obtained, the central ray must be aligned _____ to the joint.
A) Perpendicular
B) Parallel
C) 5 degrees cephalic D) 5 degrees caudal
Correct Answer: B
Rationale: To demonstrate an open joint space, the central ray must be aligned parallel to the joint
surface .
Question 8: When the central ray is angled, the structure situated _____ is projected the most. A)
Farther away from the IR
B) Closer to the IR
C) Proximal to the tube
D) Distal to the tube
Correct Answer: A
Rationale: When the CR is angled, structures farther from the IR are projected more than those closer to
the IR .
, Question 9: Three images were obtained on the same structure with a computed radiography system.
Image 1 used a 48-inch SID and 5-inch OID; Image 2 used 48-inch SID and 3-inch OID; Image 3 used
48inch SID, 3-inch OID, and a larger IR. Which image will demonstrate the sharpest recorded detail?
A) Image 1
B) Image 2
C) Image 3
D) There will be no difference
Correct Answer: B
Rationale: The shortest OID produces the sharpest recorded detail. Image 2 (3-inch OID) will be sharper
than Image 1 (5-inch OID). A larger IR does not improve recorded detail .
Question 10: A small focal spot should be used for each of the following situations except when: A)
Fine detail demonstration is important
B) Extremities are imaged
C) The milliamperage setting is above 300
D) The patient can control motion
Correct Answer: C
Rationale: A small focal spot is not used when the mA setting exceeds the tube's rating for small focal
spot use, typically above 300 mA .
Question 11: An image demonstrating motion and adequate density was obtained using 100 mA at 0.5
seconds. If the time is changed to 0.25 seconds, what mA should be used to maintain the same density?
A) 50 mA
B) 100 mA
C) 200 mA
D) 400 mA
Correct Answer: C
Rationale: To maintain density, mAs must remain constant. 100 mA × 0.5 s = 50 mAs. 50 mAs ÷ 0.25 s =
200 mA .
Question 12: The most common shape distortion is:
A) Foreshortening
B) Elongation
C) Magnification
D) Minification
Correct Answer: B
Rationale: Elongation is the most common shape distortion in radiography .