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Updated: Jun 13, 2025

Longitudinal In Vivo Imaging of the Cerebrovasculature: Relevance to CNS Diseases
Published on: December 6, 2016
[News on the imaging of large vessel vasculitis]
Valentin S Schäfer1, Simon M Petzinna2, Wolfgang A Schmidt3
1Sektion Rheumatologie und Klinische Immunologie, Medizinische Klinik III, Universitätsklinikum Bonn, Venusberg-Campus 1, 53127, Bonn, Deutschland. valentin.schaefer@ukbonn.de.
Insights
Giant cell arteritis (GCA) and Takayasu arteritis (TAK) are autoimmune diseases affecting major arteries. Advanced imaging like ultrasound, MRI, and PET-CT aids diagnosis and monitoring, improving patient prognosis.
Area of Science:
- Rheumatology and Immunology
- Vascular Medicine
- Diagnostic Imaging
Context:
- Large vessel vasculitis, including giant cell arteritis (GCA) and Takayasu arteritis (TAK), are autoimmune diseases affecting the aorta and its branches.
- GCA is the most common primary vasculitis, potentially leading to severe complications like stroke and aortic rupture.
- Polymyalgia rheumatica (PMR) shares inflammatory characteristics and can present with subclinical GCA.
Purpose:
- To highlight the integral role of imaging techniques in the diagnosis and monitoring of large vessel vasculitis (LVV) and polymyalgia rheumatica (PMR).
- To differentiate between GCA and TAK based on vascular distribution and specific arterial involvement.
- To emphasize the diagnostic utility of ultrasound, MRI, and PET-CT in assessing arterial inflammation and extra-articular manifestations.
Summary:
- Ultrasound is the primary diagnostic tool for GCA, often replacing temporal artery biopsy.
- MRI and PET-CT are crucial for visualizing aortic involvement and extra-articular inflammation in PMR.
- Subclinical GCA can be detected in PMR patients via ultrasound, necessitating GCA treatment.
Impact:
- Technological advancements in imaging, including new radiotracers and improved MRI, promise enhanced diagnosis and monitoring of LVV and PMR.
- Faster initiation of therapy through improved diagnostic capabilities can significantly improve patient prognosis.
- Non-invasive imaging techniques are becoming indispensable for managing these complex inflammatory conditions.
Abstract:
Large vessel vasculitis, including giant cell arteritis (GCA) and Takayasu arteritis (TAK), are autoimmune diseases primarily affecting the aorta and its branches. GCA is the most common primary vasculitis. Inflammatory changes in the vessel walls can cause serious complications such as amaurosis, stroke, and aortic dissection and rupture. Imaging techniques have become an integral part for the diagnosis and monitoring of large vessel vasculitis, allowing for effective disease monitoring. GCA and TAK exhibit similar patterns of vascular distribution. However, the temporal arteries are never involved in TAK, and axillary arteritis occurs more frequently in GCA. In most centers, ultrasound of the temporal and axillary arteries has replaced temporal artery biopsy as the primary diagnostic tool for GCA. In addition to ultrasound, magnetic resonance imaging (MRI), computed tomography (CT), and [18F]-FDG (fluorodeoxyglucose) positron emission tomography-computed tomography (PET) are important, particularly for visualizing the aorta. Moreover, PET-CT is now also capable of assessing the temporal arteries, although it is not yet widely available. In polymyalgia rheumatica (PMR), ultrasound of the shoulder and hip regions is part of the ACR/EULAR classification criteria. MRI allows detailed visualization of additional inflammatory extraarticular manifestations, showing characteristic inflammatory lesions in entheses, tendons, and ligaments. [18F]-FDG-PET-CT also enables the visualization of musculoskeletal inflammation, especially in the shoulder and hip regions, as well as paravertebral areas. Ultrasound can detect subclinical GCA in up to 23% of patients with PMR, which should be treated like GCA. Technological innovations such as new radiotracers and improved MRI imaging could further enhance the diagnosis and monitoring of large vessel vasculitis and PMR, thus playing a crucial role in improving the prognosis through faster initiation of therapy.
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