id	author	title	date	pages	extension	mime	words	sentence	flesch	summary	cache	txt
biht-379	Roosan, Don; Khan, Rubayat; Nirzhor, Saif; Hai, Fahmida	Post-Quantum Cryptography Resilience in Telehealth Using Quantum Key Distribution 	2025	10	.pdf	application/pdf	7099	291	29	Cryptography resilience in telehealth ensure that patient rights and ethical considerations are respected throughout the data lifecycle, including collec- tion, storage, analytics, and eventual archival or deletion.4 Overall, the proposed architecture paves the way for a new era of telehealth data security, one that anticipates the impending reality of quantum computing while adhering to stringent privacy demands. Although the incorporation of PQC-based algorithms and QKD channels introduces additional computational overhead, the outcomes clearly underscore the efficacy of this design in protecting sensitive healthcare data from unauthorized access or tampering.7 As shown in Figure 1 and Figure 2 in the preceding Results section, the interdependence of the DAG-based ledger, QKD key management mod- ules, and privacy-preserving cryptographic libraries not only fortifies transaction confidentiality but also ensures that on-chain and off-chain components are harmoni- ously managed.13 Given the inherently sensitive nature of telehealth data, which frequently includes diagnostic images, laboratory results, and personal patient identifi- ers, the heightened security offered by post-quantum tech- niques is a compelling factor driving the feasibility of this architecture.	cache/biht-379.pdf	txt/biht-379.txt
