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Time-Resolved, Dynamic Computed Tomography Angiography for Characterization of Aortic Endoleaks and Treatment Guidance via 2D-3D Fusion-Imaging
Published on: December 9, 2021
Commercial artificial intelligence-assisted performance and interpretation time of first-on-call radiology residents
Xinyu Song1, Shuhao Wang2, Jiaoyan Wang3
1Institute of Diagnostic and Interventional Radiology, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Background:
Acute pulmonary embolism (PE) is characterized by sudden onset, high mortality, and a propensity for misdiagnosis. Although artificial intelligence (AI)-based software for PE detection has been shown to accurately identify thrombi on computed tomography pulmonary angiography (CTPA), its impact on the performance of first-on-call radiologists of varying experience levels during initial interpretation remains unclear. This study aimed to examine the performance and time of first-on-call radiology residents' interpretation of CTPA for acute PE with and without AI support.
Methods:
This retrospective study included 196 consecutive emergency CTPA examinations (55 PE-positive and 243 clots) from three centers between June 2023 and August 2023. Six residents (1-6 years' experience) independently interpreted all CTPA scans with and without National Medical Products Administration-approved AI assistance software that provided PE triage, clot detection, and quantification. The reference standard was established by two senior radiologists. Performance metrics (sensitivity, specificity, and Youden index) and interpretation time were compared. AI dependency was assessed by quantifying AI-induced decision changes.
Results:
AI support improved patient-level sensitivity (0.83 to 0.96) and Youden index (0.80 to 0.91), with more pronounced gains at the clot level (sensitivity: 0.75 to 0.95; Youden index: 0.56 to 0.81). Junior residents (<5 years) showed greater improvement than did seniors (≥5 years). Mean interpretation time decreased by 10 seconds (18%) per case (P<0.001), with greater reductions observed among junior residents and for non-PE cases. AI significantly reduced the risk of missed clots [odds ratio (OR) 0.11; 95% confidence interval (CI): 0.08-0.15; P<0.001] and increased the incidence of false positives, but not significantly so (OR 1.46; 95% CI: 0.85-2.52; P=0.17). Junior residents exhibited higher AI dependency, yet the overall rates of incorrect AI guidance remained low (1.6% in clot recall and 2.8% in negative screening).
Conclusions:
The AI system enhances diagnostic performance and efficiency of CTPA interpretation by first-on-call residents, substantially reducing missed PE and narrowing experience-based performance gaps.
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