These tools will no longer be maintained as of December 31, 2024. Archived website can be found here. PubMed4Hh GitHub repository can be found here. Contact NLM Customer Service if you have questions.
142 related articles for article (PubMed ID: 37427350)
1. Deep convolutional neural network based on CT images of pulmonary nodules in the lungs of adolescent and young adult patients with osteosarcoma. Ni YL; Zheng XC; Shi XJ; Xu YF; Li H Oncol Lett; 2023 Aug; 26(2):344. PubMed ID: 37427350 [TBL] [Abstract][Full Text] [Related]
2. Deep Convolutional Neural Network-based Software Improves Radiologist Detection of Malignant Lung Nodules on Chest Radiographs. Sim Y; Chung MJ; Kotter E; Yune S; Kim M; Do S; Han K; Kim H; Yang S; Lee DJ; Choi BW Radiology; 2020 Jan; 294(1):199-209. PubMed ID: 31714194 [TBL] [Abstract][Full Text] [Related]
3. Differentiation of Benign from Malignant Pulmonary Nodules by Using a Convolutional Neural Network to Determine Volume Change at Chest CT. Ohno Y; Aoyagi K; Yaguchi A; Seki S; Ueno Y; Kishida Y; Takenaka D; Yoshikawa T Radiology; 2020 Aug; 296(2):432-443. PubMed ID: 32452736 [TBL] [Abstract][Full Text] [Related]
4. Multiplanar analysis for pulmonary nodule classification in CT images using deep convolutional neural network and generative adversarial networks. Onishi Y; Teramoto A; Tsujimoto M; Tsukamoto T; Saito K; Toyama H; Imaizumi K; Fujita H Int J Comput Assist Radiol Surg; 2020 Jan; 15(1):173-178. PubMed ID: 31732864 [TBL] [Abstract][Full Text] [Related]
5. Extravalidation and reproducibility results of a commercial deep learning-based automatic detection algorithm for pulmonary nodules on chest radiographs at tertiary hospital. Koo YH; Shin KE; Park JS; Lee JW; Byun S; Lee H J Med Imaging Radiat Oncol; 2021 Feb; 65(1):15-22. PubMed ID: 33090731 [TBL] [Abstract][Full Text] [Related]
6. Diagnosis of thyroid cancer using deep convolutional neural network models applied to sonographic images: a retrospective, multicohort, diagnostic study. Li X; Zhang S; Zhang Q; Wei X; Pan Y; Zhao J; Xin X; Qin C; Wang X; Li J; Yang F; Zhao Y; Yang M; Wang Q; Zheng Z; Zheng X; Yang X; Whitlow CT; Gurcan MN; Zhang L; Wang X; Pasche BC; Gao M; Zhang W; Chen K Lancet Oncol; 2019 Feb; 20(2):193-201. PubMed ID: 30583848 [TBL] [Abstract][Full Text] [Related]
7. Deep learning-enabled pelvic ultrasound images for accurate diagnosis of ovarian cancer in China: a retrospective, multicentre, diagnostic study. Gao Y; Zeng S; Xu X; Li H; Yao S; Song K; Li X; Chen L; Tang J; Xing H; Yu Z; Zhang Q; Zeng S; Yi C; Xie H; Xiong X; Cai G; Wang Z; Wu Y; Chi J; Jiao X; Qin Y; Mao X; Chen Y; Jin X; Mo Q; Chen P; Huang Y; Shi Y; Wang J; Zhou Y; Ding S; Zhu S; Liu X; Dong X; Cheng L; Zhu L; Cheng H; Cha L; Hao Y; Jin C; Zhang L; Zhou P; Sun M; Xu Q; Chen K; Gao Z; Zhang X; Ma Y; Liu Y; Xiao L; Xu L; Peng L; Hao Z; Yang M; Wang Y; Ou H; Jia Y; Tian L; Zhang W; Jin P; Tian X; Huang L; Wang Z; Liu J; Fang T; Yan D; Cao H; Ma J; Li X; Zheng X; Lou H; Song C; Li R; Wang S; Li W; Zheng X; Chen J; Li G; Chen R; Xu C; Yu R; Wang J; Xu S; Kong B; Xie X; Ma D; Gao Q Lancet Digit Health; 2022 Mar; 4(3):e179-e187. PubMed ID: 35216752 [TBL] [Abstract][Full Text] [Related]
8. A deep residual learning network for predicting lung adenocarcinoma manifesting as ground-glass nodule on CT images. Gong J; Liu J; Hao W; Nie S; Zheng B; Wang S; Peng W Eur Radiol; 2020 Apr; 30(4):1847-1855. PubMed ID: 31811427 [TBL] [Abstract][Full Text] [Related]
9. Development, Validation, and Comparison of Image-Based, Clinical Feature-Based and Fusion Artificial Intelligence Diagnostic Models in Differentiating Benign and Malignant Pulmonary Ground-Glass Nodules. Wang X; Gao M; Xie J; Deng Y; Tu W; Yang H; Liang S; Xu P; Zhang M; Lu Y; Fu C; Li Q; Fan L; Liu S Front Oncol; 2022; 12():892890. PubMed ID: 35747810 [TBL] [Abstract][Full Text] [Related]
10. Clinical value of a new generation adaptive statistical iterative reconstruction (ASIR-V) in the diagnosis of pulmonary nodule in low-dose chest CT. Tang H; Liu Z; Hu Z; He T; Li D; Yu N; Jia Y; Shi H Br J Radiol; 2019 Nov; 92(1103):20180909. PubMed ID: 31469289 [TBL] [Abstract][Full Text] [Related]
11. The effect of deep convolutional neural networks on radiologists' performance in the detection of hip fractures on digital pelvic radiographs. Mawatari T; Hayashida Y; Katsuragawa S; Yoshimatsu Y; Hamamura T; Anai K; Ueno M; Yamaga S; Ueda I; Terasawa T; Fujisaki A; Chihara C; Miyagi T; Aoki T; Korogi Y Eur J Radiol; 2020 Sep; 130():109188. PubMed ID: 32721827 [TBL] [Abstract][Full Text] [Related]
12. Deep learning with ultrasonography: automated classification of liver fibrosis using a deep convolutional neural network. Lee JH; Joo I; Kang TW; Paik YH; Sinn DH; Ha SY; Kim K; Choi C; Lee G; Yi J; Bang WC Eur Radiol; 2020 Feb; 30(2):1264-1273. PubMed ID: 31478087 [TBL] [Abstract][Full Text] [Related]
13. An Artificial Intelligence-Based Chest X-ray Model on Human Nodule Detection Accuracy From a Multicenter Study. Homayounieh F; Digumarthy S; Ebrahimian S; Rueckel J; Hoppe BF; Sabel BO; Conjeti S; Ridder K; Sistermanns M; Wang L; Preuhs A; Ghesu F; Mansoor A; Moghbel M; Botwin A; Singh R; Cartmell S; Patti J; Huemmer C; Fieselmann A; Joerger C; Mirshahzadeh N; Muse V; Kalra M JAMA Netw Open; 2021 Dec; 4(12):e2141096. PubMed ID: 34964851 [TBL] [Abstract][Full Text] [Related]
14. Deep convolutional neural network-based detection of meniscus tears: comparison with radiologists and surgery as standard of reference. Fritz B; Marbach G; Civardi F; Fucentese SF; Pfirrmann CWA Skeletal Radiol; 2020 Aug; 49(8):1207-1217. PubMed ID: 32170334 [TBL] [Abstract][Full Text] [Related]
15. Computer-aided diagnosis of prostate cancer using a deep convolutional neural network from multiparametric MRI. Song Y; Zhang YD; Yan X; Liu H; Zhou M; Hu B; Yang G J Magn Reson Imaging; 2018 Dec; 48(6):1570-1577. PubMed ID: 29659067 [TBL] [Abstract][Full Text] [Related]
16. Deep Convolutional Neural Network Based on Computed Tomography Images for the Preoperative Diagnosis of Occult Peritoneal Metastasis in Advanced Gastric Cancer. Huang Z; Liu D; Chen X; He D; Yu P; Liu B; Wu B; Hu J; Song B Front Oncol; 2020; 10():601869. PubMed ID: 33224893 [TBL] [Abstract][Full Text] [Related]
17. A Novel Model Based on Deep Convolutional Neural Network Improves Diagnostic Accuracy of Intramucosal Gastric Cancer (With Video). Tang D; Zhou J; Wang L; Ni M; Chen M; Hassan S; Luo R; Chen X; He X; Zhang L; Ding X; Yu H; Xu G; Zou X Front Oncol; 2021; 11():622827. PubMed ID: 33959495 [TBL] [Abstract][Full Text] [Related]
18. Validation of a Deep Learning Algorithm for the Detection of Malignant Pulmonary Nodules in Chest Radiographs. Yoo H; Kim KH; Singh R; Digumarthy SR; Kalra MK JAMA Netw Open; 2020 Sep; 3(9):e2017135. PubMed ID: 32970157 [TBL] [Abstract][Full Text] [Related]
19. [The performance of digital chest radiographs in the detection and diagnosis of pulmonary nodules and the consistency among readers]. Liang M; Zhao SJ; Zhou LN; Xu XJ; Wang YW; Niu L; Wang HH; Tang W; Wu N Zhonghua Zhong Liu Za Zhi; 2023 Mar; 45(3):265-272. PubMed ID: 36944548 [No Abstract] [Full Text] [Related]
20. A system based on deep convolutional neural network improves the detection of early gastric cancer. Feng J; Yu SR; Zhang YP; Qu L; Wei L; Wang PF; Zhu LJ; Bao Y; Lei XG; Gao LL; Feng YH; Yu Y; Huang XJ Front Oncol; 2022; 12():1021625. PubMed ID: 36620563 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]