Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 57 checked references that resolve
resolves10.1093/mollus/eyx013Temperature modulates spatio-temporal variability of the functional reproductive maturation of Octopus maya (Cephalopoda) on the shelf of the Yucatan Peninsula, Mexico
resolves10.1016/j.jtherbio.2020.102753Exploring the effects of warming seas by using the optimal and pejus temperatures of the embryo of three Octopoda species in the Gulf of Mexico
resolves10.1016/j.ecss.2021.107502Climate change effect on Octopus maya (Voss and Solís-Ramírez, 1966) suitability and distribution in the Yucatan Peninsula, Gulf of Mexico: A correlative and mechanistic approach
resolves10.1017/S0025315419000419Biomass and distribution of the red octopus (Octopus maya) in the north-east of the Campeche Bank
resolves10.1007/s10452-020-09778-6Octopus americanus: a cryptic species of the O. vulgaris species complex redescribed from the Caribbean
resolves10.2307/1540350VARIATION IN TEMPERATURE-SALINITY TOLERANCE BETWEEN TWO ESTUARINE POPULATIONS OF<i>PAGURUS LONGICARPUS</i>SAY (CRUSTACEA:ANOMURA)
resolves10.2307/1931333Experimental Background to the Study of the Distribution and Abundance of Insects: I. The Influence of Temperature, Moisture and Food on the Innate Capacity for Increase of Three Grain Beetles
resolves10.1016/0022-0981(86)90133-4Combined effects of temperature and salinity on the survival and duration of larval stages of Paguruscriniticornis (Dana) (Crustacea, Paguridae)
resolves10.1086/284267On the Relationship between Abundance and Distribution of Species
resolves10.1016/0022-0981(92)90078-OThe effects of temperature and salinity on survival and development of early life stage Florida stone crabs Menippe mercenaria (Say)
resolves10.1111/ele.12860Species are not most abundant in the centre of their geographic range or climatic niche
resolves10.1111/ecog.05164The influence of stochasticity, landscape structure and species traits on abundant–centre relationships
resolves10.56369/tsaes.1537ECOLOGICAL NICHE MODELING AND WILDLIFE MANAGEMENT UNITS (UMAS): AN APPLICATION TO DEER IN CAMPECHE, MEXICO
resolves10.1111/gcb.12231Modelling the effects of climate change on the distribution and production of marine fishes: accounting for trophic interactions in a dynamic bioclimate envelope model
resolves10.2983/035.034.0232Spatial Analysis of the Abundance and Catchability of the Red Octopus<i>Octopus maya</i>(Voss and Solís-Ramírez, 1966) on the Continental Shelf of the Yucatan Peninsula, Mexico
resolves10.1073/pnas.0905137106Bringing the Hutchinsonian niche into the 21st century: Ecological and evolutionary perspectives
resolves10.1890/07-0559.1THE ECOLOGICAL NICHE OF<i>DAPHNIA MAGNA</i>CHARACTERIZED USING POPULATION GROWTH RATE
resolves10.21425/F53212408opinion: Relationship between local population density and environmental suitability estimated from occurrence data
resolves10.1111/ele.12959Appropriate application of information from biodiversity databases is critical when investigating species distributions and diversity: a comment on Dallas <i>et al</i>. ()
resolves10.3354/meps13486Global climate changes over time shape the environmental niche distribution of Octopus insularis in the Atlantic Ocean
resolves10.1086/282827Niche Response Structure and the Analytical Potentials of Its Relationship to the Habitat
resolves10.1017/S0025315416001132Seasonal and spatial trends of Mayan octopus, <i>Octopus maya</i>, population dynamics from Campeche, Mexico
resolves10.1016/j.onehlt.2016.07.004Climatic suitability influences species specific abundance patterns of Australian flying foxes and risk of Hendra virus spillover
resolves10.1111/ddi.12662Niche centrality and human influence predict rangewide variation in population abundance of a widespread mammal: The collared peccary (<i>Pecari tajacu</i>)
resolves10.1111/ele.13453Relationships between population densities and niche‐centroid distances in North American birds
resolves10.1016/j.rmb.2016.07.001Sobre la relación entre idoneidad del hábitat y la abundancia poblacional bajo diferentes escenarios de dispersión
resolves10.3389/fphys.2019.00739Sea Surface Temperature Modulates Physiological and Immunological Condition of Octopus maya
resolves10.1111/ecog.01961NicheA: creating virtual species and ecological niches in multivariate environmental scenarios
resolves10.1007/BF00386591Combined effects of temperature and salinity on the survival and growth of the larvae of Pandalus jordani (Decapoda: Pandalidae)
resolves10.1016/j.ecolind.2016.08.043Thermal sensitivity of O. maya embryos as a tool for monitoring the effects of environmental warming in the Southern of Gulf of Mexico
resolves10.1111/ecog.04027Addressing common pitfalls does not provide more support to geographical and ecological abundant‐centre hypotheses
resolves10.17161/bi.v2i0.4Interpretation of Models of Fundamental Ecological Niches and Species’ Distributional Areas
resolves10.1111/j.1472-4642.2012.00892.xCan species distribution modelling provide estimates of population densities? A case study with jaguars in the Neotropics
resolves10.1371/journal.pone.0131452Using Range-Wide Abundance Modeling to Identify Key Conservation Areas for the Micro-Endemic Bolson Tortoise (Gopherus flavomarginatus)
resolves10.1086/600087Abundance and the Environmental Niche: Environmental Suitability Estimated from Niche Models Predicts the Upper Limit of Local Abundance
resolves10.1111/ele.13222The shape of abundance distributions across temperature gradients in reef fishes
resolves10.1111/j.1600-0706.2012.20350.xModelling geographic patterns of population density of the white‐tailed deer in central Mexico by implementing ecological niche theory
resolves10.17161/bi.v15i2.13218The Abundant Niche-centroid Hypothesis: Key Points About Unfilled Niches and the Potential Use of Supraspecfic Modeling Units
The 18 references without a DOI — listed, not checked
no DOI — not checkedClimate change and the rise of the octopus fishery in the Campeche Bank, México
no DOI — not checkedHow marine shelf fisheries are depending of mangrove ecosystems: The Campeche Bank, Mexico, an example
no DOI — not checkedFishery resource management challenges facing climate change
no DOI — not checked10.1016/j.jembe.2021.151609_bb0100
no DOI — not checkedMechanisms driving a coastal dynamic upwelling
no DOI — not checkedSuperposición espacial de los pulpos Octopus vulgaris tipo II y Octopus maya al noreste del banco de Campeche
no DOI — not checked10.1016/j.jembe.2021.151609_bb0180
no DOI — not checkedHidrodinámica del Golfo de México
no DOI — not checkedNtbox: an R package with graphical user interface for modeling and evualting multidimensional ecological niches. Methods Ecol
no DOI — not checked10.1016/j.jembe.2021.151609_bb0240
no DOI — not checkedProcesses and history of Terminos lagoon, Mexico
no DOI — not checked10.1016/j.jembe.2021.151609_bb0255
no DOI — not checkedOctopus maya
no DOI — not checkedNiches and distributional areas: concepts, methods, and assumptions
no DOI — not checkedSensibilidad a las oscilaciones térmicas de las especies de importancia ecológica y pesquera de la Península de Yucatán ante escenarios de calentamiento global
no DOI — not checkedOctopus maya, a new species from the bay of Campeche, Mexico
no DOI — not checkedPredicting the density and abundance of white-tailed deer based on ecological niche theory
no DOI — not checkedTopography and coral community of the sisal reefs, Campeche Bank, Yucatán, México
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