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1. A Machine Learning Model to Predict Citation Counts of Scientific Papers in Otology Field.

2. Symptom-Based COVID-19 Prognosis through AI-Based IoT: A Bioinformatics Approach.

3. Empirical Method for Thyroid Disease Classification Using a Machine Learning Approach.

4. Integrated Learning Model-Based Assessment of Enteral Nutrition Support in Neurosurgical Intensive Care Patients.

5. Enhanced Watershed Segmentation Algorithm-Based Modified ResNet50 Model for Brain Tumor Detection.

6. Healthcare Biclustering-Based Prediction on Gene Expression Dataset.

7. On the Prediction of Biogas Production from Vegetables, Fruits, and Food Wastes by ANFIS- and LSSVM-Based Models.

8. An Immune-Related Gene Panel for Preoperative Lymph Node Status Evaluation in Advanced Gastric Cancer.

9. ML-Based Texture and Wavelet Features Extraction Technique to Predict Gastric Mesothelioma Cancer.

10. Development and Internal Validation of Machine Learning Algorithms for Determining Sodium Valproate Concentrations below the Standard Level Using a Risk Prediction Model of Children with Epilepsy.

11. A Novel Approach for Best Parameters Selection and Feature Engineering to Analyze and Detect Diabetes: Machine Learning Insights.

12. A Novel Study on Machine Learning Algorithm-Based Cardiovascular Disease Prediction.

13. Development of Deep Learning Technique of Features for the Analysis of Clinical Images Integrated with CANN.

14. System Construction of Athlete Health Information Protection Based on Machine Learning Algorithm.

15. Improved Artificial Neural Network with State Order Dataset Estimation for Brain Cancer Cell Diagnosis.

16. Transient Noise Reduction Using a Deep Recurrent Neural Network: Effects on Subjective Speech Intelligibility and Listening Comfort.

17. On the Evaluation of Rhamnolipid Biosurfactant Adsorption Performance on Amberlite XAD-2 Using Machine Learning Techniques.

18. A Noninvasive Prediction Model for Hepatitis B Virus Disease in Patients with HIV: Based on the Population of Jiangsu, China.

19. Machine Learning Readmission Risk Modeling: A Pediatric Case Study.

20. Deep Neural Network-Based Method for Detecting Central Retinal Vein Occlusion Using Ultrawide-Field Fundus Ophthalmoscopy.