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Related Concept Videos

Imaging Studies VII: Vascular Imaging01:19

Imaging Studies VII: Vascular Imaging

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DefinitionRenal angiography, also known as renal arteriography, is an imaging technique used to obtain a comprehensive view of blood flow and the vascular structure of blood vessels in the kidneys and surrounding areas.PurposeRenal angiography detects blood vessel abnormalities in the kidneys, such as aneurysms, stenosis, thrombosis, vascular tumors, and renal artery stenosis. It evaluates kidney function and guides interventional treatments like angioplasty or stent placement.Pre-Procedure...
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Ultrasonography is an imaging technique that uses high-frequency sound waves to visualize the body's internal structures. It is a non-invasive and safe procedure that does not involve the use of ionizing radiation, making it widely used in various medical fields. Ultrasonography is used to study heart function, blood flow in the neck or extremities, certain conditions such as gallbladder disease, and fetal growth and development.
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Bone Formation by Endochondral Ossification01:24

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Bone formation, or ossification, begins around the sixth to seventh week of embryonic development. Most bones develop from a cartilaginous template through the process of endochondral ossification. Cartilage formation begins when clusters of mesenchymal cells differentiate into chondrocytes. These chondrocytes proliferate rapidly and secrete an extracellular matrix that becomes encased in a membrane called the perichondrium. The resulting cartilage model provides a template that resembles the...
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Treatment for a fracture is based on the type of break, the bone affected, and the patient's age.
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Related Experiment Video

Updated: Mar 2, 2026

Anterior Cruciate Ligament Transection and Synovial Fluid Lavage in a Rodent Model to Study Joint Inflammation and Posttraumatic Osteoarthritis
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Imaging of osteochondral injuries.

R Loredo1, T G Sanders

  • 1Department of Radiology, University of Texas Health Science Center at San Antonio, San Antonio, Texas, USA.

Clinics in Sports Medicine
|June 12, 2001
PubMed
Summary

Magnetic Resonance (MR) imaging detects occult cartilage and bone injuries missed by X-rays. MR arthrography enhances visualization of joint surfaces and intra-articular bodies, aiding in lesion stability assessment.

Area of Science:

  • Orthopedics
  • Radiology
  • Sports Medicine

Background:

  • Acute injuries can result in cartilage or osteochondral fragments.
  • Radiography may miss subtle injuries, particularly those involving cartilage.
  • Osteochondritis dissecans requires accurate assessment of lesion stability.

Purpose of the Study:

  • To evaluate the role of MR imaging in detecting occult bone and cartilage injuries.
  • To assess the utility of MR imaging in analyzing lesion stability in osteochondritis dissecans.
  • To explore the benefits of MR arthrography for delineating chondral surfaces.

Main Methods:

  • Review of available data on MR imaging for acute joint injuries.
  • Comparison of MR imaging findings with radiographic analysis.

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  • Evaluation of MR arthrography with gadolinium contrast for intra-articular visualization.
  • Discussion of evolving MR imaging sequences for cartilage surface analysis.
  • Main Results:

    • MR imaging detects occult subchondral bone and cartilage injuries.
    • MR imaging shows potential in assessing osteochondritis dissecans stability.
    • Fluid at the cartilage-bone interface is indirect MR evidence of abnormality.
    • MR arthrography improves delineation of chondral surfaces and detection of intra-articular bodies.

    Conclusions:

    • MR imaging is valuable for detecting injuries missed by radiography.
    • Further research is needed to compare MR imaging with arthroscopy for lesion stability.
    • Advanced MR techniques are crucial for direct cartilage surface analysis.