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dc.contributor.authorMilles, Alexander
dc.contributor.authorBielcik, Milos
dc.contributor.authorBanitz, Thomas
dc.contributor.authorGallagher, Cara A.
dc.contributor.authorJeltsch, Florian
dc.contributor.authorJepsen, Jane Uhd
dc.contributor.authorOro, Daniel
dc.contributor.authorRadchuk, Viktoriia
dc.contributor.authorGrimm, Volker
dc.date.accessioned2024-01-09T11:31:40Z
dc.date.available2024-01-09T11:31:40Z
dc.date.created2024-01-02T14:57:44Z
dc.date.issued2023
dc.identifier.issn0169-5347
dc.identifier.urihttps://hdl.handle.net/11250/3110571
dc.description.abstractIn their response letter, Gascoigne et al. propose a relevant approach to characterizing ecological buffer mechanisms, akin to the study of buffer mechanisms in chemistry [1]. Their chemistry-inspired viewpoint enables them to pinpoint opportunities for further advances in the population buffering framework. We welcome the authors' response and concur with their belief that ecology stands to gain significantly from increased crosstalk with chemistry and other more mechanistic, first-principles-driven fields of natural sciences.en_US
dc.language.isoengen_US
dc.rightsNavngivelse 4.0 Internasjonal*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/deed.no*
dc.titleDefining ecological buffer mechanisms should consider diverse approachesen_US
dc.title.alternativeDefining ecological buffer mechanisms should consider diverse approachesen_US
dc.typePeer revieweden_US
dc.typeJournal articleen_US
dc.description.versionacceptedVersionen_US
dc.rights.holder© 2023 The Authorsen_US
dc.subject.nsiVDP::Økologi: 488en_US
dc.subject.nsiVDP::Ecology: 488en_US
dc.source.journalTrends in Ecology & Evolutionen_US
dc.identifier.doi10.1016/j.tree.2023.12.008
dc.identifier.cristin2219147
dc.relation.projectAndre: German Research Foundationen_US
dc.relation.projectNorges forskningsråd: 160022en_US
cristin.ispublishedtrue
cristin.fulltextpostprint
cristin.qualitycode1


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