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[Digital rotational angiography in the study of vascular diseases: technical note and initial clinical applications]
F Gattoni1, A Sacrini, M Tonolini
1Istituto di Scienze Radiologiche dell'Università, Cattedra di Radiologia dell'Ospedale San Paolo, Milano.
Insights
Digital rotational angiography offers diagnostic quality comparable or superior to conventional methods for vascular disease assessment. This technique uses less contrast agent and is shorter, proving beneficial for carotid and lower limb arteries.
Area of Science:
- Medical Imaging
- Vascular Surgery
- Radiology
Background:
- Digital rotational angiography involves a C-arm rotating around a patient to capture images.
- This technique's clinical potential for assessing vascular diseases in the abdominal aorta, carotid, lower limb, and renal arteries was investigated.
Purpose of the Study:
- To evaluate the clinical utility and diagnostic yield of digital rotational angiography compared to non-rotational angiography.
- To assess the impact on contrast agent volume, examination time, and image quality.
Main Methods:
- 108 patients with vascular diseases underwent both digital rotational and non-rotational angiography.
- Analysis included diagnostic yield, contrast agent volume, additional views, image review modes (cine-loop, frame-by-frame), magnification, and background noise.
Main Results:
- Digital rotational angiography demonstrated diagnostic quality equal to or better than non-rotational angiography.
- It provided superior 3D rendering, reduced examination time, and required less contrast agent.
- Increased image noise was noted in lateral/oblique views, and prolonged breath-hold was a challenge for elderly patients.
Conclusions:
- Digital rotational angiography is effective for evaluating carotid and lower limb vascular diseases, using less radiation and contrast.
- For abdominal aorta and renal arteries, it serves as a valuable adjunct to conventional angiography.
Introduction:
Digital rotational angiography is a technique characterized by a C-arm acquiring images as it rapidly rotates around the patient. We studied the clinical potentials of this technique in the assessment of vascular diseases of the abdominal aorta and of the carotid, lower limbs and renal arteries.
Material And Methods:
We examined 108 patients (66 men and 42 women; mean age: 54.3 years, range: 34-69): 42 had vascular diseases in the carotid arteries, 47 in the abdominal aorta and lower limbs and 19 in the renal arteries. All the patients underwent digital rotational and non-rotational angiography and we analyzed the diagnostic yield, amount of contrast agent and the utility of additional views for each technique. All the examinations were reviewed with(out) subtraction, in cine-loop mode and frame by frame, as well as with(out) magnification. Finally, we considered background noise in both rotational and non-rotational images.
Results:
The diagnostic quality of the digital rotational technique was always the same as or superior to that of the non-rotational technique. The former allows better 3D rendering, especially when viewed in the cine-loop mode; the examination is shorter and less contrast agent is needed. In contrast, image noise was increased, especially in lateral and oblique views. Digital rotational angiography was fairly well tolerated but the long breath-hold required was a problem especially to elderly patients.
Conclusions:
Digital rotational angiography is a useful tool to study vascular diseases in the carotid arteries and lower limbs using a lower radiation dose and less contrast agent than non-rotational examinations. As for the abdominal aorta and renal arteries, the rotational technique can be a valid adjunct to the conventional one.
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