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Cervical Spine Orthopedics II Practice Exam

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About this Exam

Prepare with the Cervical Spine Orthopedics II Practice Exam practice quiz. This question bank includes 10 questions covering stenosis, bakody, sign, canal, and typically. Use it to review important concepts, identify knowledge gaps, and build confidence for the related exam, course, or assessment.

Sample Questions

Question 1
What is Bakody's sign and what does it indicate?
Relief of radicular symptoms with arm elevation (shoulder abduction) indicating foraminal compression
Worsening of radicular symptoms with arm elevation indicating central stenosis
No change with arm movement
Relief with neck extension indicating facet arthropathy
Explanation:
Bakody's sign, or the shoulder abduction test, checks whether cervical radiculopathy is due to compression at the neural foramen. When the patient places the hand on top of the head, the arm is abducted, which reduces nerve root tension and can slightly widen the foraminal space. If the radicular pain or numbness decreases with this maneuver, it points to foraminal compression as the source of symptoms. If there’s no relief or symptoms worsen, central canal stenosis or another non-foraminal source is more likely. So, relief with arm elevation specifically indicates foraminal compression.
Question 2
Which statement about TOS evaluation is true?
A combination of clinical exam, imaging, EMG, and vascular studies is commonly used.
Only imaging is necessary.
Blood tests confirm the diagnosis.
Surgical exploration is first-line.
Explanation:
Diagnosing thoracic outlet syndrome relies on a broad, multimodal evaluation rather than a single test, because patients can have neurogenic, arterial, or venous compression and symptoms may mimic other conditions. The best approach combines thorough history and physical examination with targeted tests to uncover the type and location of compression and its functional impact. Clinical exam with provocative maneuvers helps reproduce symptoms and localize the suspected outlet. Nerve conduction studies and EMG can support neurogenic involvement, though they are not always definitive and may be normal in some cases. Imaging plays a critical role to identify anatomic causes and the presence of compression under dynamic conditions: X-rays can reveal bony abnormalities like cervical ribs; MRI can evaluate the brachial plexus and soft tissues; MR or CT angiography assesses arterial compromise, while duplex ultrasound can detect venous compression and flow changes. When vascular symptoms are present or suspected, dedicated vascular studies provide essential hemodynamic information to guide management. Blood tests do not confirm TOS and surgical exploration is not a first-line step; it’s reserved for specific vascular findings or after conservative measures and diagnostic studies have clarified the problem. In short, a combination of clinical evaluation, imaging, EMG, and vascular studies is the comprehensive approach commonly used to evaluate TOS.
Question 3
Central canal stenosis typically presents with which type of clinical presentation compared to foraminal stenosis?
Central canal stenosis presents with myelopathy (gait disturbance and brisk reflexes); foraminal stenosis presents with radicular pain and numbness
Central canal stenosis presents with isolated neck pain; foraminal stenosis presents with myelopathy
Central canal stenosis presents with radicular pain only; foraminal stenosis presents with gait disturbance
Central canal stenosis presents with lower motor neuron signs; foraminal stenosis presents with upper motor neuron signs
Explanation:
Central canal stenosis in the cervical spine compresses the spinal cord, leading to myelopathy. That means signs of upper motor neuron impairment such as gait disturbance and brisk reflexes. In contrast, foraminal stenosis narrows the exit for a nerve root, producing radiculopathy with radicular pain and numbness in a dermatomal distribution. So the classic contrast is central canal stenosis causing myelopathy and foraminal stenosis causing radicular symptoms. The described pattern—central canal stenosis with myelopathy and foraminal stenosis with radicular pain and numbness—fits this distinction. The other patterns don’t align with how cord versus nerve-root compression typically presents (central with UMN features; foraminal with radicular symptoms).
Question 4
Which statement describes reflexive SJD?
It is defined by insidious onset
It is caused by acute infection
It involves sustained nociceptive irritation triggering reflexive muscle guarding, and altered mechanics
It is identical to mechanical SJD
Explanation:
Reflexive SJD is driven by sustained nociceptive input that provokes a protective reflex contraction of the surrounding muscles, leading to guarding. That muscle guarding tightens the segment and alters its mechanics, so motion becomes limited and the joint appears dysfunctional even though there may not be a primary structural pathology. The key idea is that the dysfunction arises from a reflex protective response to pain, not from an intrinsic degenerative or infectious process. Because of this, it differs from a purely mechanical SJD, which implies a fixed structural problem in the joint. In short, ongoing nociception triggers reflex muscle guarding, which then changes the mechanics of the spine at that level.
Question 5
Which imaging modality is most informative for evaluating soft tissue and ligamentous injuries of the cervical spine?
MRI
CT scan
X-ray
Ultrasound
Explanation:
When evaluating soft tissue and ligamentous injuries in the cervical spine, the emphasis is on visualizing ligaments, discs, and neural structures, including edema or tears. MRI provides superior soft tissue contrast and can directly show ligaments (such as facet joints and posterior ligaments), intervertebral discs, the spinal cord, and surrounding soft tissues in multiple planes. It can detect edema, contusions, and partial tears that CT or X-ray cannot see, making it the most informative choice for these injuries. CT excels at detailing bone and complex fractures, but it lacks the soft tissue sensitivity needed to assess ligaments and discs. X-rays reveal alignment and gross instability but miss most soft tissue injuries. Ultrasound has limited utility for the deep cervical spine due to bone and depth, so it cannot reliably evaluate cervical spine ligaments. So, MRI is the best option for comprehensive soft tissue and ligamentous assessment in the cervical region.

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Additional Information

Cervical Spine Orthopedics II Practice Exam

This practice set contains 10 questions from the matching question bank and focuses on stenosis, bakody, sign, canal, and typically. Work through each question carefully, review the provided solutions, and revisit topics that need more study before your next attempt.

This is an independent study resource intended for practice and review; it is not an official examination or an endorsement by any organization named in the title.

Frequently Asked Questions

This quiz contains a total of 10 practice questions carefully selected to test your knowledge on this subject.
Yes, you will have exactly 0 minutes to complete the exam. A countdown timer will be visible once you start.
Yes, you can retake this practice test as many times as you need. The questions and options may be randomized on subsequent attempts to ensure comprehensive learning.

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