Student’s Attention Monitoring System in Learning Environments based on Artificial Intelligence
Test-Friendly Data-Selectable Self-Gating (DSSG)
Text Mining and Emotion Classification on Monkey pox Twitter Dataset A Deep Learning Natural Language Processing NLP Approach
The Effect of Fake Reviews on e-Commerce during and After Covid-19 Pandemic: SKL-Based Fake Reviews Detection
Time Series Forecasting and Modeling of Food Demand Supply Chain Based on Regressors Analysis
Toward Fast and Accurate Violence Detection for Automated Video Surveillance Applications
Toward Improving Breast Cancer Classification Using an Adaptive Voting Ensemble Learning Algorithm
Toward Improving Breast Cancer Classification Using an Adaptive Voting Ensemble Learning Algorithm
Toward Verifiable Phrase Search Phrase Search Over Encrypted Cloud IOT Data
Traffic Signs Recognition using CNN and Keras
Transchain: Blockchain-Based Management of Allografts for Enhancing Data Provenance
Aim:
Ā Ā Ā Ā Ā The aim of this project is to develop a secure, transparent, and tamper-proof blockchain-based system for managing allografts throughout their entire lifecycleāfrom donor registration to tissue processing, storage, distribution, and transplantation. The system seeks to ensure authenticity, complete data provenance, regulatory compliance, and real-time traceability by leveraging decentralized ledgers, smart contracts, and digital tagging technologies. This helps enhance patient safety, reduce fraud, and build trust among medical institutions and regulatory authorities.




