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Ultra-high-resolution CT angiography of the artery of Adamkiewicz: a feasibility study
Kunihiro Yoshioka1, Ryoichi Tanaka2, Hidenobu Takagi2
1Division of Cardiovascular Radiology, Department of Radiology, Iwate Medical University, 19-1 Uchimaru, Morioka, 020-8505, Japan. kyoshi@iwate-med.ac.jp.
Insights
Ultra-high-resolution CT with 0.25-mm slices improves visualization of the artery of Adamkiewicz in aortic aneurysm patients. This enhanced imaging helps prevent spinal cord injury during aortic repair surgery.
Area of Science:
- Vascular imaging
- Radiology
- Surgical planning
Background:
- Preoperative identification of the artery of Adamkiewicz is crucial for preventing spinal cord injury after aortic repair.
- Multi-detector row CT (MDCT) has shown feasibility but precise visualization remains challenging.
Purpose of the Study:
- To evaluate the usefulness of ultra-high-resolution CT (UHRCT) for visualizing the artery of Adamkiewicz.
- To compare 0.25 mm versus 0.5 mm slice thickness in patients with aortic aneurysms.
Main Methods:
- 24 patients with thoracic/thoracoabdominal aneurysms underwent UHRCT.
- Images were reconstructed at 0.25 mm and 0.5 mm slice thicknesses.
- Signal-to-noise ratio (SNR), contrast-to-noise ratio (CNR), and visualization scores were assessed by two independent observers.
Main Results:
- No significant differences in SNR of the aorta or CNR of the anterior spinal artery between slice thicknesses.
- Average visualization score was significantly higher for 0.25 mm slices (3.58 ± 0.78) vs 0.5 mm slices (3.13 ± 0.99) (p=0.01).
- Nondiagnostic image quality was significantly lower for 0.25 mm slices (8.3%) vs 0.5 mm slices (33.3%) (p=0.03).
Conclusions:
- UHRCT with 0.25 mm slices significantly improves visualization of the artery of Adamkiewicz.
- Thinner slices reduce the rate of nondiagnostic image quality in patients with aortic aneurysms.
Purpose:
Preoperative identification of the artery of Adamkiewicz can help prevent postoperative spinal cord injury following thoracic and thoracoabdominal aortic repair. Several studies have demonstrated the feasibility of evaluating the artery of Adamkiewicz using multi-detector row computed tomography (CT), but precise visualization remains a challenge. The present study was conducted to evaluate the usefulness of ultra-high-resolution CT for visualizing the artery of Adamkiewicz with a slice thickness of 0.25 versus 0.5 mm in patients with aortic aneurysms.
Methods:
Our institutional review board approved this study. Twenty-four patients with thoracic and thoracoabdominal aneurysms were scanned with beam collimation of 0.25 mm × 128. Images were reconstructed with slice thicknesses of 0.25 and 0.5 mm. The signal-to-noise ratio (SNR) of the aorta and contrast-to-noise ratio (CNR) between the anterior spinal artery and spinal cord were measured. Two independent observers evaluated visualization of the artery of Adamkiewicz and its continuity between the anterior spinal artery and the aorta using a four-point scale.
Results:
No significant differences in the SNR of the aorta or CNR of the anterior spinal artery were observed between 0.25- and 0.5-mm slices. The average visualization score was significantly higher for 0.25-mm slices (3.58 ± 0.78) than for 0.5-mm slices (3.13 ± 0.99) (p = 0.01). The percentage of patients with nondiagnostic image quality was significantly lower for 0.25-mm slices (8.3%) than for 0.5-mm slices (33.3%) (p = 0.03).
Conclusion:
In patients with aortic aneurysms, ultra-high-resolution CT with 0.25-mm slices significantly improves visualization of the artery of Adamkiewicz compared to 0.5-mm slices.
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