Traditional medicinal systems are integral to the healthcare practices of indigenous and local communities, especially in remote regions where modern healthcare may be inaccessible. Ethnobotany and ethnomedicine play vital roles in these systems, providing effective treatments derived from local flora. This study investigates the wealth of ethnomedicinal plant knowledge among the indigenous and saint communities of Chitrakoot, India. Participatory rural appraisal (PRA) and rapid rural appraisal tools were used to assess ethnobotanical information. Ethnic data were collected from saints and indigenous communities through interviews, discussions, and semi-structured questionnaires. Quantitative analysis was conducted via relative frequency citation (RFC), the informant consensus factor (IFC), and use value (UV). In the present study, a total of 205 individuals (168 males and 37 females) participated in interviews and discussions on ethnomedicine The research was conducted from June 2021 to December 2024. This study identified 119 ethnomedicinal plants, representing 107 genera and 50 families, used to treat various ailments categorized into 15 groups. Piper nigrum had the highest RFC value (1.00) and UV (1.20), followed by Allium sativum (0.84). The highest ICF value was found for the snake, scorpion, and insect bite categories (0.88), followed by the digestive system disorders category (0.84). The most common method of drug administration is the use of plant powder, with leaves being the most commonly used part of the plant. Chitrakoot saint and tribal communities hold rich ethnomedicinal knowledge rooted in their forests, underscoring the need to preserve this vital indigenous heritage.
Abhishek Kumar Pandey, Faiz Bux, Kamlesh Sonkar et al.· Journal of Ethnobiology and...· 0 citations
Digital identity verification is a critical security requirement in modern banking systems, where Know Your Customer (KYC) procedures are mandated to mitigate fraud and ensure regulatory compliance. Existing KYC solutions, such as blockchain-based and decentralized identity frameworks, are not suitable for long-term deployment in emerging 6G-enabled banking environments because they primarily rely on classical cryptographic primitives and architectural abstractions, which make them vulnerable to quantum attacks. Additionally, repeating KYC verification across institutions increases the vulnerability of sensitive customer data and creates operational inefficiencies. In this work, we present a KYC-as-a-Service-based quantum-resistant security protocol for digital identity verification, specifically designed for 6G-enabled financial applications. While a distributed ledger is only used as a verifiable trust anchor for managing KYC credentials and revocation status, the protocol uses encryption and post-quantum digital signatures to guarantee long-term security. The proposed method minimizes sensitive data exposure, which enables interoperable KYC reuse across many institutions, and is still practical for large-scale and low-latency banking systems. The proposed protocol supports scalable, privacy-preserving, and real-time identity verification across banking institutions and third-party KYC service providers.
A. K. Pandey, Debnath Ghosh, Mohammad S. Obaidat et al.· International Conference on...· 0 citations
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