Blockchain and Internet of Medical Things for Resilient Healthcare

The COVID-19 pandemic exposed persistent weaknesses in health-data interoperability, cybersecurity, provenance, cross-organizational governance, and continuity of digital care. This short communication presents an updated focused narrative synthesis and a five-layer governance framework for integrating blockchain and the Internet of Medical Things (IoMT) in patient-centered digital health. The literature was updated through 10 August 2026, with recent peer-reviewed evidence complemented by authoritative standards and European regulatory sources. The synthesis positions blockchain primarily as a distributed governance, provenance, and audit layer rather than a clinical database or stand-alone security solution, while IoMT provides heterogeneous sensing infrastructure for continuous and distributed care. The framework separates: (1) device and data acquisition; (2) network and edge orchestration, including 5G/SDN where clinically justified; (3) blockchain-based governance; (4) privacy-enhancing data, analytics, and AI; and (5) application and service delivery. Homomorphic encryption, zero-knowledge proofs, secure aggregation, differential privacy, and federated learning are treated as complementary controls with distinct threat models and computational trade-offs. The revised framework also incorporates the European Health Data Space, the EU AI Act and its medical-device interplay, and NIS2 as a regulatory overlay. Across six use-case domains, evidence is strongest for technical feasibility, provenance, and programmable access control; evidence for clinical effectiveness, cost-effectiveness, equity, sustainability, and large-scale deployment remains limited. The proposed model therefore emphasizes standards-based interoperability, minimization of on-chain personal data, endpoint trust, auditable human oversight, and prospective real-world validation.

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Publication Details

Journal
Bioengineering
Published
2026-10-08
DOI
https://doi.org/10.3390/bioengineering13101173
Primary Topic
Blockchain Technology Applications and Security
Type
article
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article

Blockchain and Internet of Medical Things for Resilient Healthcare

Alfredo Clemente, Graziella Di Grezia, Emanuela Mari, Alessio Gili et al.
Bioengineering
Blockchain Technology Applications and Security
article

Blockchain and Internet of Medical Things for Resilient Healthcare

Alfredo Clemente, Graziella Di Grezia, Emanuela Mari, Alessio Gili, Antonio Baldassarre, Vincenzo Mattei, Fabrizio Urraro, Nicola Mucci, Stefano Dugheri
article en

Abstract

The COVID-19 pandemic exposed persistent weaknesses in health-data interoperability, cybersecurity, provenance, cross-organizational governance, and continuity of digital care. This short communication presents an updated focused narrative synthesis and a five-layer governance framework for integrating blockchain and the Internet of Medical Things (IoMT) in patient-centered digital health. The literature was updated through 10 August 2026, with recent peer-reviewed evidence complemented by authoritative standards and European regulatory sources. The synthesis positions blockchain primarily as a distributed governance, provenance, and audit layer rather than a clinical database or stand-alone security solution, while IoMT provides heterogeneous sensing infrastructure for continuous and distributed care. The framework separates: (1) device and data acquisition; (2) network and edge orchestration, including 5G/SDN where clinically justified; (3) blockchain-based governance; (4) privacy-enhancing data, analytics, and AI; and (5) application and service delivery. Homomorphic encryption, zero-knowledge proofs, secure aggregation, differential privacy, and federated learning are treated as complementary controls with distinct threat models and computational trade-offs. The revised framework also incorporates the European Health Data Space, the EU AI Act and its medical-device interplay, and NIS2 as a regulatory overlay. Across six use-case domains, evidence is strongest for technical feasibility, provenance, and programmable access control; evidence for clinical effectiveness, cost-effectiveness, equity, sustainability, and large-scale deployment remains limited. The proposed model therefore emphasizes standards-based interoperability, minimization of on-chain personal data, endpoint trust, auditable human oversight, and prospective real-world validation.

BioengineeringVol. 13(10)
University of Campania "Luigi Vanvitelli" (IT), Link Campus University (IT), University of Florence (IT)
Openalex Percentile: Top 5%
Blockchain Technology Applications and Security
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