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51. Enhancing Pulmonary Embolism Detection in COVID-19 Patients Through Advanced Deep Learning Techniques.

52. Advancing Cardiovascular Mortality Trend Analysis: A Machine Learning Approach to Predict Future Health Policy Needs.

53. Comparative Analysis of Macular and Optic Disc Perfusion Pre and Post Silicone Oil Removal: A Machine Learning Approach.

54. Evaluating ChatGPT 4.0's User Satisfaction Among Doctors Across Different Medical Departments.

55. Artificial Intelligence in Urologic Robotic Oncologic Surgery: A Narrative Review.

59. ACCURACY OF CONVOLUTIONAL NEURAL NETWORKS FOR THE HISTOLOGIC CHARACTERIZATION OF COLORECTAL POLYPS USING CURRENTLY WIDESPREAD WHITE LIGHT ENDOSCOPY IN RESPECT TO ENDOSCOPIC AND HISTOPATHOLOGIC EVALUATION

61. A 2-Year Audit on Antibiotic Resistance Patterns from a Urology Department in Greece.

62. Admission and Discharge Following Ambulance Transport to the Emergency Department

63. Training ChatGPT Models in Assisting Urologists in Daily Practice.

64. Acceptance of Artificial Intelligence in Supporting Cancer Patients.

65. A Deep Learning Model for Classifying Histological Types of Colorectal Polyps.

66. Automated ML Techniques for Predicting COVID-19 Mortality in the ICU.

67. Evaluating the interactions of Medical Doctors with chatbots based on large language models: Insights from a nationwide study in the Greek healthcare sector using ChatGPT.

70. MP09-19 USE AND APPLICABILITY OF MACHINE LEARNING ALGORITHMS IN PREDICTING SURGICAL OUTCOME FOR PATIENTS WITH BENIGN PROSTATIC ENLARGEMENT. WHICH MODEL TO USE?

71. From Affect Regulation to BMI: Unveiling Childhood Obesity Patterns Through Advanced Clustering Techniques.

72. Machine Learning for Antibiotic Resistance Prediction: A Prototype Using Off-the-Shelf Techniques and Entry-Level Data to Guide Empiric Antimicrobial Therapy

74. Using Machine Learning Techniques to Aid Empirical Antibiotic Therapy Decisions in the Intensive Care Unit of a General Hospital in Greece

76. A 2-Year Single-Centre Audit on Antibiotic Resistance of Pseudomonas aeruginosa, Acinetobacter baumannii and Klebsiella pneumoniae Strains from an Intensive Care Unit and Other Wards in a General Public Hospital in Greece

78. Using Machine Learning to Predict Antimicrobial Resistance of Acinetobacter Pseudomonas Aeruginosa Strains Baumannii, Klebsiella Pneumoniae and.

80. Using Machine Learning Algorithms to Predict Antimicrobial Resistance and Assist Empirical Treatment.

81. Local Distortion Hiding Algorithm in Medical Data: A Case Study sing CART.

82. Setting up an Easy-to-Use Machine Learning Pipeline for Medical Decision Support: Case Study for COVID-19 Diagnosis Based on Deep Learning with CT Scans.

84. Corneal changes after large (9mm) lateral rectus muscle recession measured with Pentacam®.

86. Hiding Decision Tree Rules in Medical Data: A Case Study.

87. Using Microbiological Data Analysis to Tackle Antibiotic Resistance of Klebsiella Pneumoniae.

89. Deep Learning for Melanoma Detection: A Deep Learning Approach to Differentiating Malignant Melanoma from Benign Melanocytic Nevi.

90. Growth Hormone Therapy in Chronic Heart Failure: a Systematic Review and Meta-Analysis of Randomized Controlled Trials.

91. Using Machine Learning for Predicting the Hospitalization of Emergency Department Patients.

92. Exploratory Clustering for Emergency Department Patients.

93. Discovering Association Rules in Antimicrobial Resistance in Intensive Care Unit.

94. Using Association Rules in Antimicrobial Resistance in Stone Disease Patients.

95. Cluster Analysis Assessment in Proposing a Surgical Technique for Benign Prostatic Enlargement.

96. Prediction of Hospitalization Using Machine Learning for Emergency Department Patients.

97. Admission and Discharge Following Ambulance Transport to the Emergency Department.

98. Predicting Hospital Admission for Emergency Department Patients: A Machine Learning Approach.

99. Inference Control in a Diabetes Data Set Using a Java-Based Prototype of LDH Algorithm.

100. Analyzing Acute Care Surgery Patient Flow in the Emergency Department During COVID-19 Pandemic.

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