Matches in SemOpenAlex for { <https://semopenalex.org/work/W3036846933> ?p ?o ?g. }
- W3036846933 endingPage "140258" @default.
- W3036846933 startingPage "140258" @default.
- W3036846933 abstract "In recent decades, the relationships between species distributional shifts and climate change have been investigated at various geographic scales, yet there is still a gap in understanding the impacts of climate change on marine commercial fish species surrounding the Antarctic Peninsula. The dynamic bioclimate envelope model (DBEM) is a mechanistic model that encompass species distribution model and population dynamic model approaches to project the spatiotemporal change of marine commercial fish species driven by various climate change scenarios in the Southern Ocean. This paper focuses on the spatiotemporal changes of marine commercial fish species surrounding the Antarctic Peninsula under a high emissions scenario (RCP8.5) and a low emissions scenario (RCP2.6) from 1970 to 2060 following three different Earth System Models (ESMs), namely, the GFDL-ESM 2G, IPSL-CM5A-MR and MPI-ESM-MR. Results reveal that: i) The general latitudinal gradient patterns in species richness shifts poleward associated with a global abundance decrease ii) The Spp. richness in Eastern Antarctic Peninsula (EAP) is higher than in the Western Antarctic Peninsula (WAP) at the same latitude (>65°S latitude). iii) The reasons are that the krill-dependent predators in WAP could face a higher risk of depletion than that in EAP due to ocean warming and anthropogenic activities." @default.
- W3036846933 created "2020-06-25" @default.
- W3036846933 creator A5003330050 @default.
- W3036846933 creator A5007830198 @default.
- W3036846933 creator A5010644044 @default.
- W3036846933 creator A5013621620 @default.
- W3036846933 creator A5021901509 @default.
- W3036846933 creator A5036242152 @default.
- W3036846933 creator A5058255128 @default.
- W3036846933 creator A5080087599 @default.
- W3036846933 date "2020-10-01" @default.
- W3036846933 modified "2023-10-12" @default.
- W3036846933 title "Modelling spatiotemporal trends in range shifts of marine commercial fish species driven by climate change surrounding the Antarctic Peninsula" @default.
- W3036846933 cites W1490699044 @default.
- W3036846933 cites W1503832382 @default.
- W3036846933 cites W1592418946 @default.
- W3036846933 cites W1637132394 @default.
- W3036846933 cites W1805569181 @default.
- W3036846933 cites W1965533416 @default.
- W3036846933 cites W1966424485 @default.
- W3036846933 cites W1970377095 @default.
- W3036846933 cites W1972162246 @default.
- W3036846933 cites W1973950923 @default.
- W3036846933 cites W1980029786 @default.
- W3036846933 cites W1980106771 @default.
- W3036846933 cites W1980619188 @default.
- W3036846933 cites W1985936925 @default.
- W3036846933 cites W1992302374 @default.
- W3036846933 cites W1999491524 @default.
- W3036846933 cites W2000445697 @default.
- W3036846933 cites W2001092428 @default.
- W3036846933 cites W2006047569 @default.
- W3036846933 cites W2018291779 @default.
- W3036846933 cites W2027976201 @default.
- W3036846933 cites W2028787031 @default.
- W3036846933 cites W2029028922 @default.
- W3036846933 cites W2031488572 @default.
- W3036846933 cites W2051761224 @default.
- W3036846933 cites W2053110663 @default.
- W3036846933 cites W2055024990 @default.
- W3036846933 cites W2067877065 @default.
- W3036846933 cites W2081050205 @default.
- W3036846933 cites W2081656950 @default.
- W3036846933 cites W2081759880 @default.
- W3036846933 cites W2082455532 @default.
- W3036846933 cites W2085927787 @default.
- W3036846933 cites W2093124684 @default.
- W3036846933 cites W2093448711 @default.
- W3036846933 cites W2099879847 @default.
- W3036846933 cites W2102974620 @default.
- W3036846933 cites W2106105764 @default.
- W3036846933 cites W2108207007 @default.
- W3036846933 cites W2109515045 @default.
- W3036846933 cites W2110194779 @default.
- W3036846933 cites W2123299783 @default.
- W3036846933 cites W2124400340 @default.
- W3036846933 cites W2126179800 @default.
- W3036846933 cites W2131949257 @default.
- W3036846933 cites W2134027504 @default.
- W3036846933 cites W2140618833 @default.
- W3036846933 cites W2141446865 @default.
- W3036846933 cites W2143643595 @default.
- W3036846933 cites W2145085949 @default.
- W3036846933 cites W2151020544 @default.
- W3036846933 cites W2152387152 @default.
- W3036846933 cites W2153905523 @default.
- W3036846933 cites W2154803623 @default.
- W3036846933 cites W2158073743 @default.
- W3036846933 cites W2158924093 @default.
- W3036846933 cites W2164786531 @default.
- W3036846933 cites W2166337701 @default.
- W3036846933 cites W2166528958 @default.
- W3036846933 cites W2166807792 @default.
- W3036846933 cites W2168131408 @default.
- W3036846933 cites W2168909889 @default.
- W3036846933 cites W2170590389 @default.
- W3036846933 cites W2178030162 @default.
- W3036846933 cites W2220466036 @default.
- W3036846933 cites W2238813690 @default.
- W3036846933 cites W2328409123 @default.
- W3036846933 cites W2332044691 @default.
- W3036846933 cites W2346266000 @default.
- W3036846933 cites W2480691181 @default.
- W3036846933 cites W2524873123 @default.
- W3036846933 cites W2553053974 @default.
- W3036846933 cites W2553943761 @default.
- W3036846933 cites W2557219221 @default.
- W3036846933 cites W2563747423 @default.
- W3036846933 cites W2752254071 @default.
- W3036846933 cites W2754710967 @default.
- W3036846933 cites W2796410914 @default.
- W3036846933 cites W2805366996 @default.
- W3036846933 cites W2955461842 @default.
- W3036846933 cites W791392570 @default.
- W3036846933 doi "https://doi.org/10.1016/j.scitotenv.2020.140258" @default.
- W3036846933 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/32783853" @default.
- W3036846933 hasPublicationYear "2020" @default.
- W3036846933 type Work @default.