Lauren B. Buckley
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American ecologist
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Lauren B. Buckleybiology Degrees
Biology
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#18075
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#2829
USA Rank
Ecology
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World Rank
#1133
Historical Rank
#264
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Biology
Lauren B. Buckley's Degrees
- PhD Ecology Stanford University
- Masters Ecology Stanford University
- Bachelors Biology University of California, Santa Cruz
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Why Is Lauren B. Buckley Influential?
(Suggest an Edit or Addition)According to Wikipedia, Lauren B. Buckley is an evolutionary ecologist and professor of biology at the University of Washington. She researches the relationship between organismal physiological and life history features and response to global climate change.
Lauren B. Buckley's Published Works
Published Works
- Global imprint of climate change on marine life (2013) (1480)
- Niche conservatism as an emerging principle in ecology and conservation biology. (2010) (1397)
- The Pace of Shifting Climate in Marine and Terrestrial Ecosystems (2011) (1084)
- Can mechanism inform species' distribution models? (2010) (492)
- Geographical limits to species-range shifts are suggested by climate velocity (2014) (453)
- Complex life cycles and the responses of insects to climate change. (2011) (369)
- Environmental and historical constraints on global patterns of amphibian richness (2007) (332)
- Macrosystems ecology: understanding ecological patterns and processes at continental scales (2014) (280)
- Fine-grain modeling of species' response to climate change: holdouts, stepping-stones, and microrefugia. (2014) (276)
- Heat stress and the fitness consequences of climate change for terrestrial ectotherms (2013) (276)
- Linking global turnover of species and environments (2008) (260)
- Broad-scale ecological implications of ectothermy and endothermy in changing environments (2012) (246)
- Phylogeny, niche conservatism and the latitudinal diversity gradient in mammals (2010) (243)
- Linking Traits to Energetics and Population Dynamics to Predict Lizard Ranges in Changing Environments (2007) (242)
- Thermoregulatory behaviour limits local adaptation of thermal niches and confers sensitivity to climate change (2015) (197)
- Species' traits predict phenological responses to climate change in butterflies. (2011) (194)
- Abiotic and biotic constraints across reptile and amphibian ranges (2016) (188)
- Functional and Phylogenetic Approaches to Forecasting Species' Responses to Climate Change (2012) (185)
- Phylogenetic diversity as a window into the evolutionary and biogeographic histories of present-day richness gradients for mammals (2011) (150)
- Ecological and methodological drivers of species’ distribution and phenology responses to climate change (2016) (145)
- Conservatism of lizard thermal tolerances and body temperatures across evolutionary history and geography (2013) (129)
- Quantitative approaches in climate change ecology (2011) (129)
- Temperature extremes: geographic patterns, recent changes, and implications for organismal vulnerabilities (2016) (115)
- Insularity and the determinants of lizard population density. (2007) (106)
- How Extreme Temperatures Impact Organisms and the Evolution of their Thermal Tolerance. (2016) (101)
- Resolving the life cycle alters expected impacts of climate change (2015) (100)
- Does including physiology improve species distribution model predictions of responses to recent climate change? (2011) (96)
- Quantifying thermal extremes and biological variation to predict evolutionary responses to changing climate (2017) (89)
- Different evolutionary histories underlie congruent species richness gradients of birds and mammals (2012) (87)
- Biological Impacts of Thermal Extremes: Mechanisms and Costs of Functional Responses Matter. (2016) (79)
- The influence of past and present climate on the biogeography of modern mammal diversity (2011) (70)
- Biodiversity conservation: Effects of changes in climate and land use (2004) (69)
- Understanding Evolutionary Impacts of Seasonality: An Introduction to the Symposium. (2017) (67)
- The demographic impacts of shifts in climate means and extremes on alpine butterflies (2012) (64)
- Climate change and marine life (2012) (61)
- Approaches to advance scientific understanding of macrosystems ecology (2014) (58)
- Footprints of climate change in US national park visitation (2012) (56)
- Thermal and energetic constraints on ectotherm abundance: a global test using lizards. (2008) (55)
- Ectotherm thermal stress and specialization across altitude and latitude. (2013) (54)
- Can terrestrial ectotherms escape the heat of climate change by moving? (2013) (54)
- The range implications of lizard traits in changing environments. (2010) (52)
- Climate variability slows evolutionary responses of Colias butterflies to recent climate change (2015) (51)
- Phenotypic clines, energy balances and ecological responses to climate change. (2014) (49)
- Geographic differences and microevolutionary changes in thermal sensitivity of butterfly larvae in response to climate (2014) (49)
- Elevational differences in developmental plasticity determine phenological responses of grasshoppers to recent climate warming (2015) (48)
- Evolution of plasticity and adaptive responses to climate change along climate gradients (2017) (48)
- Exploring the phylogenetic history of mammal species richness (2012) (47)
- Strengthening confidence in climate change impact science (2015) (43)
- Insect Development, Thermal Plasticity and Fitness Implications in Changing, Seasonal Environments. (2017) (42)
- Ontogeny constrains phenology: opportunities for activity and reproduction interact to dictate potential phenologies in a changing climate. (2016) (41)
- Lizards fail to plastically adjust nesting behavior or thermal tolerance as needed to buffer populations from climate warming (2017) (37)
- Lizard community structure along environmental gradients. (2010) (33)
- Get real: putting models of climate change and species interactions in practice (2013) (33)
- Using museum specimens to track morphological shifts through climate change (2018) (32)
- Effect of species interactions on landscape abundance patterns (2005) (30)
- Ontogenetic variation in thermal sensitivity shapes insect ecological responses to climate change. (2020) (29)
- Moving forward in global-change ecology: capitalizing on natural variability (2013) (27)
- Climate, competition, and the coexistence of island lizards (2006) (25)
- Does metabolism constrain bird and mammal ranges and predict shifts in response to climate change? (2018) (25)
- A global test of the cold‐climate hypothesis for the evolution of viviparity of squamate reptiles (2018) (25)
- Lizard habitat partitioning on islands: the interaction of local and landscape scales (2005) (23)
- How do phenology, plasticity, and evolution determine the fitness consequences of climate change for montane butterflies? (2018) (23)
- Geographic divergence in upper thermal limits across insect life stages: does behavior matter? (2016) (22)
- A dynamically downscaled projection of past and future microclimates (2016) (22)
- A hump‐shaped density–area relationship for island lizards (2006) (20)
- Leveraging Organismal Biology to Forecast the Effects of Climate Change. (2018) (20)
- Heat tolerance is more variable than cold tolerance across species of Iberian lizards after controlling for intraspecific variation (2020) (18)
- Diminishing returns limit energetic costs of climate change. (2017) (18)
- Evolution of Thermal Sensitivity in Changing and Variable Climates (2021) (17)
- Historical changes in thermoregulatory traits of alpine butterflies reveal complex ecological and evolutionary responses to recent climate change (2016) (16)
- Elevational clines in the temperature dependence of insect performance and implications for ecological responses to climate change (2014) (14)
- Biological buffers and the impacts of climate change. (2018) (14)
- Environmental variability shapes evolution, plasticity and biogeographic responses to climate change (2019) (13)
- Morphological and physiological determinants of local adaptation to climate in Rocky Mountain butterflies (2016) (13)
- Latitudinal embryonic thermal tolerance and plasticity shape the vulnerability of oviparous species to climate change (2021) (9)
- Grasshopper phenological responses to climate gradients, variability, and change (2019) (8)
- Toward linking ocean models to fish population dynamics (2010) (8)
- Growth, developmental and stress responses of larvae of the clouded sulphur butterfly Colias eriphyle to repeated exposure to high, sub‐lethal temperatures (2015) (7)
- Grasshopper species' seasonal timing underlies shifts in phenological overlap in response to climate gradients, variability, and change. (2021) (6)
- Shifts in the relative fitness contributions of fecundity and survival in variable and changing environments (2021) (6)
- Response to Hulme - The Pace Of Shifting Climate In Marine And Terrestrial Ecosystems Science (2012) (6)
- Asymmetry of thermal sensitivity and the thermal risk of climate change (2022) (5)
- Temperature-sensitive development shapes insect phenological responses to climate change. (2022) (5)
- Do different rates of gene flow underlie variation in phenotypic and phenological clines in a montane grasshopper community? (2019) (4)
- Designing a Seasonal Acclimation Study Presents Challenges and Opportunities (2022) (4)
- Place and process in conservation planning for climate change: a reply to Keppel and Wardell-Johnson. (2015) (4)
- Invasive species unchecked by climate - response (2012) (4)
- High-Elevation Populations of Montane Grasshoppers Exhibit Greater Developmental Plasticity in Response to Seasonal Cues (2021) (3)
- Body size shapes thermal stress (2020) (3)
- Mechanistic forecasts of species responses to climate change: The promise of biophysical ecology (2022) (3)
- Species Responses to Climate Change (2014) (2)
- Morphological and physiological determinants of local adaptation to climate in Rocky Mountain butter fl ies (2016) (2)
- Climate change biology as a predictive science (2012) (1)
- Ocean warming is projected to speed development and decrease survival of crab larvae (2021) (1)
- METABOLIC CONSTRAINTS AND CURRENCIES IN ANIMAL ECOLOGY Phenotypic clines, energy balances and ecological responses to climate change (2014) (1)
- Variable impacts on reproductive energetics may render oviparous squamates more vulnerable to climate warming than viviparous species (2022) (0)
- How can we fully realize the potential of mathematical and biological models to reintegrate biology? (2021) (0)
- A guide and tools for selecting and accessing microclimate data for mechanistic niche modeling (2023) (0)
- ANALYSIS Strengthening confidence in the climate change impact science (2014) (0)
- A global imprint of climate change on marine biological systems (2011) (0)
- Meeting report Climate change and marine life (2016) (0)
- Geographic divergence in upper thermal limits across insect life stages: does behavior matter? (2016) (0)
- THE FACULTY AND THEIR RESEARCH (2008) (0)
- Metabolism constrains bird and mammal ranges and predicts shifts in response to climate change (2017) (0)
- Embryonic Thermal Tolerance Shapes the Vulnerability of lizards to Climate Change (2021) (0)
- CHAPTER SIXTEEN: Temperate and Boreal Responses to Climate Change (2019) (0)
- of modern mammal diversity The influence of past and present climate on the biogeography (2011) (0)
- Oviparous squamates are more vulnerable to climate warming than viviparous species in sympatric zones (2019) (0)
- gradient in mammals Phylogeny , niche conservatism and the latitudinal diversity (2010) (0)
- How can we fully realize the potential of mathematical and biological model systems to re-integrate biology? (2019) (0)
- Improving range shift predictions: enhancing the power of traits (2021) (0)
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