Systems and methods for a multi-system, multi-client, multi-directional, cyber- resilient, AI-enabled, permissioned block-chain precision medicine data exchange platform
Techniques are described herein for enhancing the privacy, confidentiality, cyber-resilience, and operational efficiency of multi-system, multi-client, multi-directional precision medicine data exchanges among client users, devices, servers, cloud environments, or other applications within one network or a system of networks by deploying a permissioned blockchain, that uses threshold cryptographic primitives and the key component of permissioned blockchains called Byzantine fault-tolerant (BFT) protocol, combined with fine-grained access control, publish/subscribe capabilities and a novel use of the private chaincode functionality during precision medicine exchange operations, which involves image sharing without sacrificing performance. Techniques, methods, processes, and systems described herein can enhance operational efficiency by increasing operational processing speed and reducing operational processing time for precision medicine data exchange operations within the precision medicine platform.
1 . A permissioned blockchain technology precision medicine system,
including:
a plurality of precision medicine data exchanges with off-chain image or biologic specimen or genomics storage, including precision medicine metadata that is cryptography hashed, and wherein the owner's digital signature is stored onchain;
an enclave isolated from the Operating System and Hypervisor;
a plurality of private channels connecting a plurality of blockchain networks;
identity management via e-consenting and self-sovereignty for image sharing and access control which provides control of precision medicine data access;
decentralized access control for zero-trust network identity protection during precision medicine data exchange operations by offering publication/subscribe functionality;
a permissioned blockchain that uses threshold cryptographic primitives and a Byzantine fault-tolerant (BFT) protocol, combined with private chaincode functionality for precision medicine exchange operations;
wherein said precision medicine data exchange operations are recorded to an immutable ledger;
wherein chaincodes executed on said enclave are isolated from the Operating System and Hypervisor;
wherein said precision medicine data exchanges include data provenance functionality, private chaincode functionality, secure and off-chain precision medicine data storage, and efficient multi-trust without complicated authentication through blockchain.
2 . A system for sharing medicine data comprising:
A plurality of clients;
a device;
a server;
network or system of networks;
a cloud computing platform;
a fabric permissioned blockchain network to provide ledger services to a variety of users and applications,
an enclave isolated from an operating system and hypervisor;
a node;
a hash;
a distributed ledger;
a private channel;
a smart contract;
a consensus algorithm;
a programming language;
an application programming interface; and
a user interface,
wherein said ledger is configured to commit only cryptographic hashes and metadata associated with precision medicine data while the precision medicine data remains off chain.