QUMA: Quantum Unified Medical Architecture Using Blockchain

Akoramurthy Balasubramaniam, B. Surendiran
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Abstract

A significant increase in the demand for quality healthcare has resulted from people becoming more aware of health issues. With blockchain, healthcare providers may safely share patient information electronically, which is especially important given the sensitive nature of the data contained inside them. However, flaws in the current blockchain design have surfaced since the dawn of quantum computing systems. The study proposes a novel quantum-inspired blockchain system (Qchain) and constructs a unique entangled quantum medical record (EQMR) system with an emphasis on privacy and security. This Qchain relies on entangled states to connect its blocks. The automated production of the chronology indicator reduces storage capacity requirements by connecting entangled BloQ (blocks with quantum properties) to controlled activities. We use one qubit to store the hash value of each block. A lot of information regarding the quantum internet is included in the protocol for the entangled quantum medical record (EQMR). The EQMR can be accessed in Medical Internet of Things (M-IoT) systems that are kept private and secure, and their whereabouts can be monitored in the event of an emergency. The protocol also uses quantum authentication in place of more conventional methods like encryption and digital signatures. Mathematical research shows that the quantum converged blockchain (QCB) is highly safe against attacks such as external attacks, intercept measure -repeat attacks, and entanglement measure attacks. We present the reliability and auditability evaluations of the entangled BloQ, along with the quantum circuit design for computing the hash value. There is also a comparison between the suggested approach and several other quantum blockchain designs.
QUMA:使用区块链的量子统一医疗架构
由于人们越来越关注健康问题,对优质医疗服务的需求大幅增加。有了区块链,医疗服务提供者可以安全地以电子方式共享患者信息,鉴于其中所含数据的敏感性,这一点尤为重要。然而,自量子计算系统问世以来,当前区块链设计中的缺陷已经浮出水面。本研究提出了一种新颖的量子启发区块链系统(Qchain),并构建了一个独特的纠缠量子医疗记录(EQMR)系统,重点关注隐私和安全。该 Qchain 依靠纠缠态连接其区块。通过将纠缠 BloQ(具有量子特性的区块)连接到受控活动,自动生成时序指示器降低了存储容量要求。我们使用一个量子比特来存储每个区块的哈希值。纠缠量子医疗记录(EQMR)协议中包含了大量有关量子互联网的信息。EQMR可在医疗物联网(M-IoT)系统中访问,该系统保持私密和安全,在紧急情况下可监控其行踪。该协议还使用量子认证取代加密和数字签名等传统方法。数学研究表明,量子融合区块链(QCB)具有很高的安全性,可以抵御外部攻击、拦截措施-重复攻击和纠缠措施攻击。我们介绍了纠缠 BloQ 的可靠性和可审计性评估,以及计算哈希值的量子电路设计。我们还比较了所建议的方法和其他几种量子区块链设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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