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Your search keyword '"Apostolopoulos, Ioannis D."' showing total 132 results

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132 results on '"Apostolopoulos, Ioannis D."'

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1. ChatGPT: ascertaining the self-evident. The use of AI in generating human knowledge

5. Industrial object, machine part and defect recognition towards fully automated industrial monitoring employing deep learning. The case of multilevel VGG19

6. A Fuzzy Cognitive Map Learning Approach for Coronary Artery Disease Diagnosis in Nuclear Medicine

7. State Space Advanced Fuzzy Cognitive Map approach for automatic and non Invasive diagnosis of Coronary Artery Disease

8. Extracting possibly representative COVID-19 Biomarkers from X-Ray images with Deep Learning approach and image data related to Pulmonary Diseases

9. Investigating the Synthetic Minority class Oversampling Technique (SMOTE) on an imbalanced cardiovascular disease (CVD) dataset

10. Covid-19: Automatic detection from X-Ray images utilizing Transfer Learning with Convolutional Neural Networks

11. Experimenting with Convolutional Neural Network Architectures for the automatic characterization of Solitary Pulmonary Nodules' malignancy rating

15. An IoT Integrated Air Quality Monitoring Device Based on Microcomputer Technology and Leading Industry Low-Cost Sensor Solutions

16. A Multi-Modal Machine Learning Methodology for Predicting Solitary Pulmonary Nodule Malignancy in Patients Undergoing PET/CT Examination.

21. Calibration and Inter-Unit Consistency Assessment of an Electrochemical Sensor System Using Machine Learning.

22. Integrating Machine Learning in Clinical Practice for Characterizing the Malignancy of Solitary Pulmonary Nodules in PET/CT Screening.

26. A Medical Decision Support System for the Prediction of the Coronary Artery Disease Using Fuzzy Cognitive Maps

28. Prediction of the Concentration and Source Contributions of PM 2.5 and Gas-Phase Pollutants in an Urban Area with the SmartAQ Forecasting System.

29. Explainable Deep Fuzzy Cognitive Map Diagnosis of Coronary Artery Disease: Integrating Myocardial Perfusion Imaging, Clinical Data, and Natural Language Insights.

33. Explainable Artificial Intelligence Method (ParaNet+) Localises Abnormal Parathyroid Glands in Scintigraphic Scans of Patients with Primary Hyperparathyroidism.

40. Uncovering the Black Box of Coronary Artery Disease Diagnosis: The Significance of Explainability in Predictive Models.

47. A Deep Learning Methodology for the Detection of Abnormal Parathyroid Glands via Scintigraphy with 99m Tc-Sestamibi.

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