Reference health

Just what is the thermal niche?

https://doi.org/10.1111/oik.05563
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90/90 checkable references clean · checked 2026-07-22

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.

5 without a DOI — not checked. A reference deposited without a DOI is never matched by title or guessed at; it stays outside the checked set, and this line discloses that.

The 90 checked references that resolve
resolves10.1086/663677
A Framework for Elucidating the Temperature Dependence of Fitness
resolves10.1186/1471-2148-11-157
Does thermoregulatory behavior maximize reproductive fitness of natural isolates of Caenorhabditis elegans?
resolves10.1093/acprof:oso/9780198570875.001.1
Thermal Adaptation
resolves10.1086/499990
Coadaptation: A Unifying Principle in Evolutionary Thermal Biology
resolves10.1093/icb/32.2.194
Measurement and Application of Operative and Standard Operative Temperatures in Ecology
resolves10.1371/journal.pone.0128155
Can Newts Cope with the Heat? Disparate Thermoregulatory Strategies of Two Sympatric Species in Water
resolves10.1890/13-1977.1
Direct and indirect effects of warming on aphids, their predators, and ant mutualists
resolves10.1111/j.1558-5646.1993.tb01194.x
EVOLUTIONARY ADAPTATION TO TEMPERATURE II. THERMAL NICHES OF EXPERIMENTAL LINES OF <i>ESCHERICHIA COLI</i>
resolves10.1242/jeb.00820
<i>In situ</i>cardiac performance of Pacific bluefin tuna hearts in response to acute temperature change
resolves10.1016/bs.aecr.2017.12.005
Advances in Monitoring and Modelling Climate at Ecologically Relevant Scales
resolves10.1086/523949
Linking Traits to Energetics and Population Dynamics to Predict Lizard Ranges in Changing Environments
resolves10.1086/319931
Constraints on the Evolution of Thermal Sensitivity of Foraging in <i>Trichogramma</i>: Genetic Trade‐Offs and Plasticity in Maternal Selection
resolves10.1007/s00360-013-0776-x
Lizard thermal trait variation at multiple scales: a review
resolves10.1007/s10682-006-9124-x
Low repeatability of preferred body temperature in four species of Cordylid lizards: Temporal variation and implications for adaptive significance
resolves10.1098/rstb.2010.0293
A stochastic, evolutionary model for range shifts and richness on tropical elevational gradients under Quaternary glacial cycles
resolves10.1111/j.0014-3820.2001.tb00606.x
EVOLUTION OF THERMAL DEPENDENCE OF GROWTH RATE OF ESCHERICHIA COLI POPULATIONS DURING 20,000 GENERATIONS IN A CONSTANT ENVIRONMENT
resolves10.1046/j.1365-2389.2003.00539.x
Relationship between thermal conductivity and water content of soils using numerical modelling
resolves10.1111/j.1420-9101.2005.00914.x
Male sterility at extreme temperatures: a significant but neglected phenomenon for understanding <i>Drosophila</i> climatic adaptations
resolves10.1126/science.351.6270.234-a
Weather stations lack forest data
resolves10.1111/gcb.12868
Forecasted coral reef decline in marine biodiversity hotspots under climate change
resolves10.1093/icb/19.1.195
Significance of Skewness in Ectotherm Thermoregulation
resolves10.1016/j.jtherbio.2008.11.007
Thermal preference in Drosophila
resolves10.1111/j.1439-0310.2009.01633.x
Oviposition Preferences in Newts: Does Temperature Matter?
resolves10.1111/jbi.12237
Integrating phylogeography, physiology and habitat modelling to explore species range determinants
resolves10.1242/jeb.024034
Do mitochondrial properties explain intraspecific variation in thermal tolerance?
resolves10.1111/gcb.13016
Thermal niche predicts tolerance to habitat conversion in tropical amphibians and reptiles
resolves10.1111/gcb.12917
Rapid adjustment of bird community compositions to local climatic variations and its functional consequences
resolves10.1111/j.1600-0706.2009.17630.x
I can't define the niche but I know it when I see it: a formal link between statistical theory and the ecological niche
resolves10.1086/680849
Patterns of Thermal Constraint on Ectotherm Activity
resolves10.1098/rspb.2015.0401
Plasticity in thermal tolerance has limited potential to buffer ectotherms from global warming
resolves10.1098/rsbl.2011.0960
Plasticity of preferred body temperatures as means of coping with climate change?
resolves10.1242/jeb.145573
Economic thermoregulatory response explains mismatch between thermal physiology and behavior in newts
resolves10.1086/658202
Seasonal Acclimation of Preferred Body Temperatures Improves the Opportunity for Thermoregulation in Newts
resolves10.1242/jeb.038463
Organismal climatology: analyzing environmental variability at scales relevant to physiological stress
resolves10.1086/285573
Evaluating Temperature Regulation by Field-Active Ectotherms: The Fallacy of the Inappropriate Question
resolves10.1111/gcb.12726
Temperature tracking by North Sea benthic invertebrates in response to climate change
resolves10.1242/jeb.037630
Physiological climatic limits in<i>Drosophila</i>: patterns and implications
resolves10.1086/285141
Physiological Consequences of Habitat Selection
resolves10.1086/409470
Cost and Benefits of Lizard Thermoregulation
resolves10.1093/icb/19.1.357
Integrating Thermal Physiology and Ecology of Ectotherms: A Discussion of Approaches
resolves10.1098/rstb.2012.0005
Predicting organismal vulnerability to climate warming: roles of behaviour, physiology and adaptation
resolves10.1101/SQB.1957.022.01.039
Concluding Remarks
resolves10.1086/284699
Estimation of the Thermal Niche of Drosophila melanogaster Using a Temperature-Sensitive Mutation
resolves10.1111/j.2006.0030-1299.14908.x
Habitat, environment and niche: what are we modelling?
resolves10.1111/j.1365-2435.2011.01917.x
Metabolic theory, life history and the distribution of a terrestrial ectotherm
resolves10.1111/ele.12192
Activity restriction and the mechanistic basis for extinctions under climate warming
resolves10.1890/03-0820
MAPPING THE FUNDAMENTAL NICHE: PHYSIOLOGY, CLIMATE, AND THE DISTRIBUTION OF A NOCTURNAL LIZARD
resolves10.1111/ecog.02360
NicheMapR – an R package for biophysical modelling: the microclimate model
resolves10.1073/pnas.0808913106
The potential for behavioral thermoregulation to buffer “cold-blooded” animals against climate warming
resolves10.1093/icb/43.3.470
Environmental Variation and Selection on Performance Curves
resolves10.1111/jzo.12157
Individual variation in amphibian metabolic rates during overwintering: implications for a warming world
resolves10.1371/journal.pone.0023842
Mothers Matter Too: Benefits of Temperature Oviposition Preferences in Newts
resolves10.1111/j.1365-2486.2006.01174.x
Thermal niche, large‐scale movements and implications of climate change for a critically endangered marine vertebrate
resolves10.1111/j.1095-8649.2010.02781.x
History and heroes: the thermal niche of fishes and long‐term lake ice dynamics<sup>*</sup>
resolves10.1093/icb/19.1.331
Temperature as an Ecological Resource
resolves10.1086/527502
Why “Suboptimal” Is Optimal: Jensen’s Inequality and Ectotherm Thermal Preferences
resolves10.1111/jbi.12032
Stitch the niche – a practical philosophy and visual schematic for the niche concept
resolves10.1890/ES11-00109.1
Discrete thermal windows cause opposite response of sympatric cold-water fish species to annual temperature variability
resolves10.1098/rspb.2014.1351
Evolutionary responses to environmental change: trophic interactions affect adaptation and persistence
resolves10.1111/ele.12022
Metabolic approaches to understanding climate change impacts on seasonal host‐macroparasite dynamics
resolves10.1086/693781
Toward a Periodic Table of Niches, or Exploring the Lizard Niche Hypervolume
resolves10.1016/j.jtherbio.2015.06.007
Thermoregulatory strategies in an aquatic ectotherm from thermally-constrained habitats: An evaluation of current approaches
resolves10.1016/j.cbpa.2016.07.003
Variation in winter metabolic reduction between sympatric amphibians
resolves10.1086/655977
Niche Dimensions in Fishes: An Integrative View
resolves10.1111/ele.12144
Rates of projected climate change dramatically exceed past rates of climatic niche evolution among vertebrate species
resolves10.1111/1365-2435.12869
Competition during thermoregulation altered the body temperatures and hormone levels of lizards
resolves10.1016/j.jtherbio.2009.09.001
The influence of temperature on diving behaviour in the alpine newt, Triturus alpestris
resolves10.1111/j.1365-2435.2010.01720.x
Inaccurate or disparate temperature cues? Seasonal acclimation of terrestrial and aquatic locomotor capacity in newts
resolves10.1371/journal.pone.0048163
Assessing the Congruence of Thermal Niche Estimations Derived from Distribution and Physiological Data. A Test Using Diving Beetles
resolves10.1098/rsbl.2014.0819
Microhabitats in the tropics buffer temperature in a globally coherent manner
resolves10.1111/j.1365-2486.2009.02122.x
Infra‐red thermometry of alpine landscapes challenges climatic warming projections
resolves10.1111/j.1365-2427.2005.01497.x
Pond canopy cover: a resource gradient for anuran larvae
resolves10.1093/icb/icr111
The World Is not Flat: Defining Relevant Thermal Landscapes in the Context of Climate Change
resolves10.1073/pnas.1604824113
Configuration of the thermal landscape determines thermoregulatory performance of ectotherms
resolves10.1038/nclimate2457
Physiological plasticity increases resilience of ectothermic animals to climate change
resolves10.1093/aesa/65.5.993
Population Growth of Drosophila melanogaster (Diptera: Drosophilidae) at Constant and Alternating Temperatures1
resolves10.1111/ele.12686
Can we predict ectotherm responses to climate change using thermal performance curves and body temperatures?
resolves10.1126/science.1184695
Erosion of Lizard Diversity by Climate Change and Altered Thermal Niches
resolves10.1086/695805
Toward a Mechanistic Understanding of Thermal Niche Partitioning
resolves10.1186/1742-9994-2-1
Linking biogeography to physiology: Evolutionary and acclimatory adjustments of thermal limits
resolves10.1086/284423
The Relative Importance of Behavioral and Physiological Adjustments Controlling Body Temperature in Terrestrial Ectotherms
resolves10.1126/science.1083073
Acclimation Capacity Underlies Susceptibility to Climate Change
resolves10.1098/rsbl.2014.0576
Stepping inside the niche: microclimate data are critical for accurate assessment of species' vulnerability to climate change
resolves10.1073/pnas.1316145111
Thermal-safety margins and the necessity of thermoregulatory behavior across latitude and elevation
resolves10.1098/rspb.2013.2612
Increased temperature variation poses a greater risk to species than climate warming
resolves10.1007/978-0-387-21706-2
Modern Applied Statistics with S
resolves10.1146/annurev.ecolsys.27.1.337
MECHANISMS CREATING COMMUNITY STRUCTURE ACROSS A FRESHWATER HABITAT GRADIENT
resolves10.1111/brv.12105
Cold truths: how winter drives responses of terrestrial organisms to climate change
resolves10.1038/s41598-017-06163-6
Population variation in the trophic niche of the Trinidadian guppy from different predation regimes
The 5 references without a DOI — listed, not checked
no DOI — not checkedInteraction of physiology and behavior under natural conditions
no DOI — not checkedEcophysiology: abiotic factors
no DOI — not checkedTemperature, physiology, and the ecology of reptiles
no DOI — not checkedThermoregulation
no DOI — not checkedEcological niches and geographic distributions
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