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Title Investigation of the blockchain structure for hydroxyapatite-based scaffolds
Authors Чернобровченко, Вадим Сергійович
Чернобровченко, Вадим Сергеевич
Chernobrovchenko, Vadym Serhiiovych
Diadiura, Kostiantyn Oleksandrovych  
Panda, A.
Keywords life cycle assessment
clinical trials
biomaterial
implant
risk assessment
transaction
Type Article
Date of Issue 2021
URI https://essuir.sumdu.edu.ua/handle/123456789/87047
Publisher Sumy State University
License Creative Commons Attribution 4.0 International License
Citation Chernobrovchenko V. S., Dyadyura K. О., Panda A. (2021). Investigation of the blockchain structure for hydroxyapatite-based scaffolds. Journal of Engineering Sciences, Vol. 8(2), pp. C30-C35, doi: 10.21272/jes.2021.8(2).c5
Abstract Regenerative biomechanics provides exciting technologies for developing functional substitutes, intending to restore and regenerate damaged tissues and organs. Scaffolds are in great demand. However, there are risks of biocompatibility when using scaffolds. Each bone substitute has its chemical composition, and other characteristics have advantages and disadvantages. Reproducibility, data sharing, privacy concerns, and patient participation in clinical trials are significant problems in modern clinical trials. In the era of the Internet, data is collected constantly. Today we need applications that ensure the privacy of users’ data. Blockchain technology helps to compensate for severe data management problems (e.g., patient recruitment, ongoing monitoring) in clinical trials (CT). The article examines the principles of blockchain operation and approaches to bone substitutes’ design. Based on this data, a blockchain model for biomaterial surgery has been created, facilitating interaction between the parties and reducing errors.
Appears in Collections: Journal of Engineering Sciences / Журнал інженерних наук

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