Improving Healthcare Data Storage by Enhance the Blockchain Scaling Using Snake Optimization Method (SOM)
Computer Science Engineering and Technology · 2025
Blockchain (BC) is a new technology that has been utilized to create innovative approaches in a variety of industries inclusive of healthcare. The Blockchain Network (BCN) is utilized in the HealthCare Sector (HCS) to protect and communicate patient data across hospitals, pharmacies, clinicians and diagnostic laboratories. The BC applications are capable of identifying serious as well as deadly errors in the healthcare sector. As a result, it is potential to revolutionize the performance, transparency and security of medical details sharing in the HCS. This kind of technology allows medical organizations to acquire knowledge and improve the medical record analysis. Scalability is a significant challenge to Blockchain Technology (BCT) that restricts its capacity for widespread adoption in large-scale transactions applications. This research provides a novel solution to this problem by incorporating the Snake Optimization Algorithm (SOA) into a BCT to improve the rate of transactions and reduce delay. A detailed literature study situates our approach within the present state of BC scalability initiatives which offer a mechanism for incorporating SOA towards the transaction authentication process in BCN. The findings reveal a significant reduction of latency using optimized system has attained faster average transaction rates through a range of transaction amount. The results of this research show that SOA is extremely effective in batch transactions events that exhibit a reverse scalability trend than traditional BCN and substantial contribution to BC scalability with consequences for the creation of improved and scalable BCN ideal for high-volume business applications.