@prefix dcterms: . @prefix foaf: . @prefix np: . @prefix npx: . @prefix nt: . @prefix orcid: . @prefix prov: . @prefix rdfs: . @prefix schema1: . @prefix sub1: . @prefix this: . @prefix xsd: . sub1:Head { this: a np:Nanopublication; np:hasAssertion sub1:assertion; np:hasProvenance sub1:provenance; np:hasPublicationInfo sub1:pubinfo . } sub1:assertion { dcterms:audience "Biodiversity research domains including species distribution modeling, conservation planning, population genetics, ecological network analysis, and ecosystem dynamics simulation"; dcterms:description "What quantum computing and quantum-inspired approaches have been applied or proposed for biodiversity research and conservation, and what evidence exists for their computational advantages over classical methods?"; dcterms:relation "Classical computational methods including traditional machine learning, simulated annealing, genetic algorithms, and standard statistical approaches (MCMC, maximum likelihood, Bayesian methods)"; dcterms:subject "Quantum computing approaches and quantum-inspired algorithms, including quantum machine learning, quantum optimization (e.g., quantum annealing, QAOA), quantum-enhanced MCMC, and quantum community detection methods"; dcterms:title "Quantum Computing Applications for Biodiversity Research and Conservation: A Scoping Review"; dcterms:type ; schema1:expectedResult "Characterization of application domains, computational advantages demonstrated, hardware requirements, scalability assessments, and readiness for operational biodiversity research and conservation practice"; rdfs:comment "Quantum computing is emerging as a potential paradigm shift for ecology (Sherley et al. 2023, Clenet et al. 2025). Applications include conservation planning optimization (Microsoft/Marxan), species distribution modeling, population genetics, and ecological network analysis. This scoping review maps the current landscape to identify promising directions and gaps for the biodiversity research community." . } sub1:provenance { sub1:assertion prov:wasAttributedTo orcid:0000-0002-1784-2920 . } sub1:pubinfo { orcid:0000-0002-1784-2920 foaf:name "Anne Fouilloux" . this: dcterms:created "2025-12-24T17:06:38+00:00"^^xsd:dateTime; dcterms:creator orcid:0000-0002-1784-2920; dcterms:license ; npx:wasCreatedAt ; rdfs:label "PICO Research Question: Quantum Computing Applications for Biodiversity Research and Conservation..."; nt:wasCreatedFromProvenanceTemplate ; nt:wasCreatedFromPubinfoTemplate , ; nt:wasCreatedFromTemplate . sub1:sig npx:hasAlgorithm "RSA"; npx:hasPublicKey "MIIBIjANBgkqhkiG9w0BAQEFAAOCAQ8AMIIBCgKCAQEAosxbitQQzLXi1949Zd9JmSkGfYHHlj/CZZ7iiYs1TrZ5/Jk/wGA7kHEv7f9NtsinOdBo9EtHj/jgHE5W2Vv404JbOAY280PvH5Jns5ObWdVZmtHeCw0ZIdPEqNrurrEweKhzcTJW/YRpYWPwVPo47XyIW6IAcmx6gfdtmdPddMpplqExrP6G99ksXfXlZI0InQtZJRSGK5lYLLNzaofFtupPI5OAAGjooDyHijp0Ap2HIXH6WpO4S44cFPKU34pH2xhIY4/XT5DG1X5UoiVHs2Yoo30BHFudj/kAFwdzcy6Yh4tMDaB3ox6p7pi267d7n0y7kypC0Nt+hfgHQ1FpgwIDAQAB"; npx:hasSignature "h8Mfuiu037tO+v67pyxwCYU4MMVv1rEKmOj2zA6fqtmkLOc0tu8kH+/IfodBrGqMk1cbkWv5+u4jd+V3bnGw4vMUlf7lIGfmRC+ADchmMt1pcgHtgTv3Q6jOXvnjuJoR2ozL/3//uPYba+0BsvgNsBqRrwKXRPf2nguYsvBkzdL1Xmvon5xw2s4nkJoWPp2yG16mxsWN9BvHQfCvwnZ8vAY0hgHBoOmitWEtRYs8EuemE3pSqRgRllWauypVMTg60//pORarXTtZMBluMnXf02E/0LJZzgF7kcugWiQ2UiJVRB2C8pgasaelX9gt6SKSZXuCWRiI8xPlyKHyYCwVtA=="; npx:hasSignatureTarget this:; npx:signedBy orcid:0000-0002-1784-2920 . }