Performance and clinical utility of an artificial intelligence-enabled tool for pulmonary embolism detection

被引:8
作者
Ayobi, Angela [1 ]
Chang, Peter D. [2 ,3 ]
Chow, Daniel S. [2 ,3 ]
Weinberg, Brent D. [4 ]
Tassy, Maxime [1 ]
Franciosini, Angelo [1 ]
Scudeler, Marlene [1 ]
Quenet, Sarah [1 ]
Avare, Christophe [1 ]
Chaibi, Yasmina [1 ]
机构
[1] Avicenna AI, 375 Ave Mistral, F-13600 La Ciotat, France
[2] Univ Calif Irvine, Dept Radiol Sci, Irvine, CA 92697 USA
[3] Univ Calif Irvine, Ctr Artificial Intelligence Diagnost Med, Irvine, CA 92697 USA
[4] Emory Univ, Dept Radiol & Imaging Sci, Atlanta, GA 30322 USA
关键词
Pulmonary embolism; Artificial intelligence; Computed tomography angiography; Deep learning tool; Computer-assisted detection; INTEROBSERVER AGREEMENT; COMPUTED-TOMOGRAPHY; ANGIOGRAPHY; RADIOLOGISTS; RESIDENTS;
D O I
10.1016/j.clinimag.2024.110245
中图分类号
R8 [特种医学]; R445 [影像诊断学];
学科分类号
1002 ; 100207 ; 1009 ;
摘要
Purpose: Diagnosing pulmonary embolism (PE) is still challenging due to other conditions that can mimic its appearance, leading to incomplete or delayed management and several inter-observer variabilities. This study evaluated the performance and clinical utility of an artificial intelligence (AI)-based application designed to assist clinicians in the detection of PE on CT pulmonary angiography (CTPA). Patients and methods: CTPAs from 230 US cities acquired on 57 scanner models from 6 different vendors were retrospectively collected. Three US board certified expert radiologists defined the ground truth by majority agreement. The same cases were analyzed by CINA-PE, an AI-driven algorithm capable of detecting and highlighting suspected PE locations. The algorithm's performance at a per-case and per-finding level was evaluated. Furthermore, cases with PE not mentioned in the clinical report but correctly detected by the algorithm were analyzed. Results: A total of 1204 CTPAs (mean age 62.1 years +/- 16.6[SD], 44.4% female, 14.9 % positive) were included in the study. Per-case sensitivity and specificity were 93.9 % (95%CI: 89.3 %-96.9 %) and 94.8 % (95%CI: 93.3 %-96.1 %), respectively. Per-finding positive predictive value was 89.5 % (95%CI: 86.7 %-91.9 %). Among the 196 positive cases, 29 (15.6 %) were not mentioned in the clinical report. The algorithm detected 22/29 (76 %) of these cases, leading to a reduction in the miss rate from 15.6 % to 3.8 % (7/186). Conclusions: The AI-based application may improve diagnostic accuracy in detecting PE and enhance patient outcomes through timely intervention. Integrating AI tools in clinical workflows can reduce missed or delayed diagnoses, and positively impact healthcare delivery and patient care.
引用
收藏
页数:7
相关论文
共 50 条
[21]   Artificial Intelligence-Enabled ECG Algorithm for the Prediction of Coronary Artery Calcification [J].
Han, Changho ;
Kang, Ki-Woon ;
Kim, Tae Young ;
Uhm, Jae-Sun ;
Park, Je-Wook ;
Jung, In Hyun ;
Kim, Minkwan ;
Bae, SungA ;
Lim, Hong-Seok ;
Yoon, Dukyong .
FRONTIERS IN CARDIOVASCULAR MEDICINE, 2022, 9
[22]   Smart Infrastructures: Artificial Intelligence-Enabled Lifecycle Automation [J].
Fortuna, Carolina ;
Yetgin, Halil ;
Mohorcic, Mihael .
IEEE INDUSTRIAL ELECTRONICS MAGAZINE, 2023, 17 (02) :37-47
[23]   Privacy Preservation in Artificial Intelligence-Enabled Healthcare Analytics [J].
Li, Shancang ;
Iqbal, Muddesar ;
Bashir, Ali Kashif ;
Wang, Xinheng .
HUMAN-CENTRIC COMPUTING AND INFORMATION SCIENCES, 2025, 15 :1-15
[24]   Improving detection of obstructive coronary artery disease with an artificial intelligence-enabled electrocardiogram algorithm [J].
Lee, Yin-Hao ;
Hsieh, Ming-Tsung ;
Chang, Chun-Chin ;
Tsai, Yi-Lin ;
Chou, Ruey-Hsing ;
Lu, Henry Hong-Shing ;
Huang, Po-Hsun .
ATHEROSCLEROSIS, 2023, 381
[25]   Assessing the Utility, Impact, and Adoption Challenges of an Artificial Intelligence-Enabled Prescription Advisory Tool for Type 2 Diabetes Management: Qualitative Study [J].
Yoon, Sungwon ;
Goh, Hendra ;
Lee, Phong Ching ;
Tan, Hong Chang ;
Teh, Ming Ming ;
Lim, Dawn Shao Ting ;
Kwee, Ann ;
Suresh, Chandran ;
Carmody, David ;
Swee, Du Soon ;
Tan, Sarah Ying Tse ;
Wong, Andy Jun-Wei ;
Choo, Charlotte Hui -Min ;
Wee, Zongwen ;
Bee, Yong Mong .
JMIR HUMAN FACTORS, 2024, 11
[26]   High-performance piezoelectric yarns for artificial intelligence-enabled wearable sensing and classification [J].
Kim, Dabin ;
Yang, Ziyue ;
Cho, Jaewon ;
Park, Donggeun ;
Kim, Dong Hwi ;
Lee, Jinkee ;
Ryu, Seunghwa ;
Kim, Sang-Woo ;
Kim, Miso .
ECOMAT, 2023, 5 (08)
[27]   Artificial intelligence-enabled prediction model of student academic performance in online engineering education [J].
Pengcheng Jiao ;
Fan Ouyang ;
Qianyun Zhang ;
Amir H. Alavi .
Artificial Intelligence Review, 2022, 55 :6321-6344
[28]   Artificial Intelligence-Enabled Electrocardiogram in the Detection of Patients at Risk of Atrial Secondary Mitral Regurgitation [J].
Naser, Jwan A. ;
Lee, Eunjung ;
Michelena, Hector I. ;
Lin, Grace ;
Pellikka, Patricia A. ;
Nkomo, Vuyisile T. ;
Noseworthy, Peter A. ;
Friedman, Paul A. ;
Attia, Zachi I. ;
Pislaru, Sorin V. .
CIRCULATION-ARRHYTHMIA AND ELECTROPHYSIOLOGY, 2023, 16 (09) :552-554
[29]   Artificial Intelligence-Enabled DDoS Detection for Blockchain-Based Smart Transport Systems [J].
Liu, Tong ;
Sabrina, Fariza ;
Jang-Jaccard, Julian ;
Xu, Wen ;
Wei, Yuanyuan .
SENSORS, 2022, 22 (01)
[30]   Artificial Intelligence-Enabled Quantitative Coronary Plaque and Hemodynamic Analysis for Predicting Acute Coronary Syndrome [J].
Koo, Bon-Kwon ;
Yang, Seokhun ;
Jung, Jae Wook ;
Zhang, Jinlong ;
Lee, Keehwan ;
Hwang, Doyeon ;
Lee, Kyu-Sun ;
Doh, Joon-Hyung ;
Nam, Chang-Wook ;
Kim, Tae Hyun ;
Shin, Eun-Seok ;
Chun, Eun Ju ;
Choi, Su-Yeon ;
Kim, Hyun Kuk ;
Hong, Young Joon ;
Park, Hun-Jun ;
Kim, Song-Yi ;
Husic, Mirza ;
Lambrechtsen, Jess ;
Jensen, Jesper M. ;
Norgaard, Bjarne L. ;
Andreini, Daniele ;
Maurovich-Horvat, Pal ;
Merkely, Bela ;
Penicka, Martin ;
de Bruyne, Bernard ;
Ihdayhid, Abdul ;
Ko, Brian ;
Tzimas, Georgios ;
Leipsic, Jonathon ;
Sanz, Javier ;
Rabbat, Mark G. ;
Katchi, Farhan ;
Shah, Moneal ;
Tanaka, Nobuhiro ;
Nakazato, Ryo ;
Asano, Taku ;
Terashima, Mitsuyasu ;
Takashima, Hiroaki ;
Amano, Tetsuya ;
Sobue, Yoshihiro ;
Matsuo, Hitoshi ;
Otake, Hiromasa ;
Kubo, Takashi ;
Takahata, Masahiro ;
Akasaka, Takashi ;
Kido, Teruhito ;
Mochizuki, Teruhito ;
Yokoi, Hiroyoshi ;
Okonogi, Taichi .
JACC-CARDIOVASCULAR IMAGING, 2024, 17 (09) :1062-1076