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127 peer-reviewed articles • 11,279 peer-reviewed citations • Sorted by year • Download PDF (PDF by citations)
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1Ecology: Why failure is success for an ecological theory
Current Biology, 2025, 35, R260-R262
2.50Citations (PDF)
2Dynamical theory of complex systems with two-way micro–macro causation5.311Citations (PDF)
3Defining an ecological equation of state: Response to Riera et al. (2023)
Ecological Modelling, 2023, 486, 110532
2.43Citations (PDF)
4Winters are changing: snow effects on Arctic and alpine tundra ecosystems
Arctic Science, 2022, 8, 572-608
1.7144Citations (PDF)
5Land use change through the lens of macroecology: insights from Azorean arthropods and the maximum entropy theory of ecology
Ecography, 2022, 2022,
3.116Citations (PDF)
6Information theory: A foundation for complexity science5.362Citations (PDF)
7An equation of state unifies diversity, productivity, abundance and biomass3.124Citations (PDF)
8DynaMETE: a hybrid MaxEnt‐plus‐mechanism theory of dynamic macroecology
Ecology Letters, 2021, 24, 935-949
4.337Citations (PDF)
9Relating the Strength of Density Dependence and the Spatial Distribution of Individuals1.85Citations (PDF)
10Shifting macroecological patterns and static theory failure in a stressed alpine plant community
Ecosphere, 2021, 12,
1.713Citations (PDF)
11Underestimating the Challenges of Avoiding a Ghastly Future1.3407Citations (PDF)
12Disturbance macroecology: a comparative study of community structure metrics in a high‐severity disturbance regime
Ecosphere, 2020, 11,
1.732Citations (PDF)
13Climate warming drives local extinction: Evidence from observation and experimentation
Science Advances, 2018, 4,
8.2109Citations (PDF)
14The Phenology of Wilderness Use: Backcountry Recreation in a Changing Climate0.24Citations (PDF)
15Upscaling biodiversity: estimating the species–area relationship from small samples
Ecological Monographs, 2018, 88, 170-187
7.068Citations (PDF)
16Building up biogeography: Pattern to process
Journal of Biogeography, 2018, 45, 1223-1230
2.128Citations (PDF)
17A method of alternating characteristics with application to advection-dominated environmental systems
Computational Geosciences, 2018, 22, 851-865
1.34Citations (PDF)
18Microbial community-level regulation explains soil carbon responses to long-term litter manipulations11.0144Citations (PDF)
19Metabolic partitioning across individuals in ecological communities3.816Citations (PDF)
20Consumption‐Based Conservation Targeting: Linking Biodiversity Loss to Upstream Demand through a Global Wildlife Footprint
Conservation Letters, 2017, 10, 531-538
3.151Citations (PDF)
21Temperature response of soil respiration largely unaltered with experimental warming5.3466Citations (PDF)
22Integrating macroecological metrics and community taxonomic structure
Ecology Letters, 2015, 18, 1068-1077
4.322Citations (PDF)
23Inferring Regional-Scale Species Diversity from Small-Plot Censuses
PLoS ONE, 2015, 10, e0117527
1.526Citations (PDF)
24Food security requires a new revolution0.832Citations (PDF)
25Convergent ecosystem responses to 23‐year ambient and manipulated warming link advancing snowmelt and shrub encroachment to transient and long‐term climate–soil carbon feedback
Global Change Biology, 2015, 21, 2349-2356
7.695Citations (PDF)
26Predicting extinction debt from community patterns
Ecology, 2015, 96, 2127-2136
2.431Citations (PDF)
27Population dynamics and competitive outcome derive from resource allocation statistics: The governing influence of the distinguishability of individuals1.08Citations (PDF)
28On the Importance of First Principles in Ecological Theory Development
BioScience, 2015, 65, 342-343
3.214Citations (PDF)
29Scale collapse and the emergence of the power law species–area relationship3.829Citations (PDF)
30Beyond the species–area relationship: improving macroecological extinction estimates3.334Citations (PDF)
31Gastrointestinal Dysbiosis1.17Citations (PDF)
32Ecology must seek universal principles
Nature, 2014, 508, 458-458
31.33Citations (PDF)
33Responses of high‐altitude graminoids and soil fungi to 20 years of experimental warming
Ecology, 2014, 95, 1918-1928
2.488Citations (PDF)
34On Theory in Ecology
BioScience, 2014, 64, 701-710
3.2242Citations (PDF)
35Empirical tests of within‐ and across‐species energetics in a diverse plant community
Ecology, 2014, 95, 2815-2825
2.428Citations (PDF)
36Changes in ant community composition caused by 20 years of experimental warming vs. 13 years of natural climate shift
Ecosphere, 2014, 5, 1-17
1.728Citations (PDF)
37Reading to the end of the last glacial epoch
Physics Today, 2012, 65, 13-13
0.20Citations (PDF)
38Persistence of soil organic matter in eroding versus depositional landform positions3.6162Citations (PDF)
39Carbon Cycle Uncertainty Increases Climate Change Risks and Mitigation Challenges
Journal of Climate, 2012, 25, 7660-7668
0.518Citations (PDF)
40Approaching a state shift in Earth’s biosphere
Nature, 2012, 486, 52-58
31.31,731Citations (PDF)
41Plot-scale evidence of tundra vegetation change and links to recent summer warming
Nature Climate Change, 2012, 2, 453-457
12.1925Citations (PDF)
42Global assessment of experimental climate warming on tundra vegetation: heterogeneity over space and time
Ecology Letters, 2012, 15, 164-175
4.3879Citations (PDF)
43The shape of a species' spatial abundance distribution
Global Ecology and Biogeography, 2012, 21, 1167-1178
3.812Citations (PDF)
44Invasion of non-native grasses causes a drop in soil carbon storage in California grasslands2.756Citations (PDF)
45Hubbell's local abundance distribution: insights from a simple colonization rule
Oikos, 2010, 119, 379-383
1.68Citations (PDF)
46Biodiversity scales from plots to biomes with a universal species–area curve
Ecology Letters, 2009, 12, 789-797
4.3188Citations (PDF)
47Improved abundance prediction from presence–absence data3.837Citations (PDF)
48Decline in Medicinal and Forage Species with Warming is Mediated by Plant Traits on the Tibetan Plateau
Ecosystems, 2008, 11, 775-789
1.794Citations (PDF)
49MAXIMUM ENTROPY AND THE STATE-VARIABLE APPROACH TO MACROECOLOGY
Ecology, 2008, 89, 2700-2711
2.4216Citations (PDF)
50Incipient criticality in ecological communities5.314Citations (PDF)
51Linking soil organic matter dynamics and erosion‐induced terrestrial carbon sequestration at different landform positions3.6155Citations (PDF)
52The debt of nations and the distribution of ecological impacts from human activities5.3178Citations (PDF)
53IMPACT OF CURVE CONSTRUCTION AND COMMUNITY DYNAMICS ON THE SPECIES–TIME RELATIONSHIP
Ecology, 2007, 88, 2145-2153
2.428Citations (PDF)
54A NEW CLASS OF MODELS OF SPATIAL DISTRIBUTION
Ecological Monographs, 2007, 77, 269-284
7.024Citations (PDF)
55Effects of Long-term Experimental Warming on Aphid Density in the Field0.428Citations (PDF)
56COMPENSATORY RESPONSES TO LOSS OF WARMING-SENSITIVE PLANT SPECIES
Ecology, 2007, 88, 740-748
2.464Citations (PDF)
57RESPONSE OF COMPLEX FOOD WEBS TO REALISTIC EXTINCTION SEQUENCES
Ecology, 2007, 88, 671-682
2.4174Citations (PDF)
58The Significance of the Erosion-induced Terrestrial Carbon Sink
BioScience, 2007, 57, 337-346
3.2429Citations (PDF)
59Reproductive and physiological responses to simulated climate warming for four subalpine species
New Phytologist, 2007, 173, 121-134
5.354Citations (PDF)
60Human population as a dynamic factor in environmental degradation
Population and Environment, 2007, 28, 223-236
1.3141Citations (PDF)
61Effect of community assembly and primary succession on the species-area relationship in disturbed ecosystems
Ecography, 2006, 29, 866-872
3.127Citations (PDF)
62Missing feedbacks, asymmetric uncertainties, and the underestimation of future warming
Geophysical Research Letters, 2006, 33, n/a-n/a
2.965Citations (PDF)
63Biophysical and Biogeochemical Responses to Climate Change Depend on Dispersal and Migration
BioScience, 2006, 56, 407
3.234Citations (PDF)
64Shifts in plant dominance control carbon-cycle responses to experimental warming and widespread drought2.740Citations (PDF)
65SUBALPINE FOREST CARBON CYCLING: SHORT- AND LONG-TERM INFLUENCE OF CLIMATE AND SPECIES
2005, 15, 1984-1999
51Citations (PDF)
66Dynamic and complex microclimate responses to warming and grazing manipulations
Global Change Biology, 2005, 11, 1440-1451
7.6116Citations (PDF)
67A THEORY OF SPATIAL STRUCTURE IN ECOLOGICAL COMMUNITIES AT MULTIPLE SPATIAL SCALES
Ecological Monographs, 2005, 75, 179-197
7.084Citations (PDF)
68RESPONSE OF PLANT PATHOGENS AND HERBIVORES TO A WARMING EXPERIMENT
Ecology, 2004, 85, 2570-2581
2.4170Citations (PDF)
69Experimental warming causes large and rapid species loss, dampened by simulated grazing, on the Tibetan Plateau
Ecology Letters, 2004, 7, 1170-1179
4.3525Citations (PDF)
70In situ photosynthetic freezing tolerance for plants exposed to a global warming manipulation in the Rocky Mountains, Colorado, USA
New Phytologist, 2004, 162, 331-341
5.359Citations (PDF)
71Estimating species richness at large spatial scales using data from small discrete plots
Ecography, 2004, 27, 637-642
3.137Citations (PDF)
72Convergence across biomes to a common rain-use efficiency
Nature, 2004, 429, 651-654
31.31,170Citations (PDF)
73A Decision Matrix Approach to Evaluating the Impacts of Land-Use Activities Undertaken to Mitigate Climate Change
Climatic Change, 2004, 63, 247-257
2.522Citations (PDF)
74Dead wood biomass and turnover time, measured by radiocarbon, along a subalpine elevation gradient
Oecologia, 2004, 141, 641-651
1.3148Citations (PDF)
75THE VALUE OF NULL THEORIES IN ECOLOGY
Ecology, 2004, 85, 1792-1794
2.436Citations (PDF)
76INTEGRATING EXPERIMENTAL AND GRADIENT METHODS IN ECOLOGICAL CLIMATE CHANGE RESEARCH
Ecology, 2004, 85, 904-916
2.4249Citations (PDF)
77Enhanced growth of sagebrush (Artemisia tridentata ) in response to manipulated ecosystem warming
Global Change Biology, 2003, 9, 736-742
7.659Citations (PDF)
78Changes in flowering and abundance of Delphinium nuttallianum (Ranunculaceae) in response to a subalpine climate warming experiment
Global Change Biology, 2003, 9, 885-894
7.6103Citations (PDF)
79Species richness, endemism, and abundance patterns: tests of two fractal models in a serpentine grassland
Ecology Letters, 2003, 6, 919-928
4.354Citations (PDF)
80Assessing the Response of Terrestrial Ecosystems to Potential Changes in Precipitation
BioScience, 2003, 53, 941
3.2732Citations (PDF)
81Plant community composition mediates both large transient decline and predicted long-term recovery of soil carbon under climate warming
Global Biogeochemical Cycles, 2002, 16, 3-1-3-18
4.1125Citations (PDF)
82Control of Litter Decomposition in a Subalpine Meadow-Sagebrush Steppe Ecotone under Climate Change
2001, 11, 1206
9Citations (PDF)
83Response of nitrogen cycling to simulated climate change: differential responses along a subalpine ecotone
Global Change Biology, 2001, 7, 193-210
7.6121Citations (PDF)
84PLANT RESPONSES TO EXPERIMENTAL WARMING IN A MONTANE MEADOW
Ecology, 2001, 82, 637-648
2.4148Citations (PDF)
85Letter
BioScience, 2001, 51, 333
3.21Citations (PDF)
86CONTROL OF LITTER DECOMPOSITION IN A SUBALPINE MEADOW–SAGEBRUSH STEPPE ECOTONE UNDER CLIMATE CHANGE
2001, 11, 1206-1223
46Citations (PDF)
87Self‐Similarity and the Relationship between Abundance and Range Size
American Naturalist, 2001, 157, 374-386
1.672Citations (PDF)
88Title is missing!
Plant Ecology, 2000, 146, 195-204
1.034Citations (PDF)
89Global Warming and Terrestrial Ecosystems: A Conceptual Framework for Analysis
BioScience, 2000, 50, 871
3.2628Citations (PDF)
90Finite Size Scaling in Ecology
Physical Review Letters, 1999, 83, 4212-4214
5.836Citations (PDF)
91The effect of experimental ecosystem warming on CO 2 fluxes in a montane meadow
Global Change Biology, 1999, 5, 125-141
7.6153Citations (PDF)
92Estimating Species-Area Relationships from Plot to Landscape Scale Using Species Spatial-Turnover Data
Oikos, 1999, 86, 45
1.690Citations (PDF)
93Selection of micro-organisms in a spatially explicit environment and implications for plant access to nitrogen
Journal of Ecology, 1998, 86, 841-853
3.023Citations (PDF)
94TERRESTRIAL ECOSYSTEM FEEDBACKS TO GLOBAL CLIMATE CHANGE2.080Citations (PDF)
95Changes in water relations for leaves exposed to a climate-warming manipulation in the Rocky Mountains of Colorado3.139Citations (PDF)
96Effects of manipulated soil microclimate on mesofaunal biomass and diversity7.970Citations (PDF)
97High-temperature tolerance of Artemisia tridentata and Potentilla gracilis under a climate change manipulation
Oecologia, 1996, 108, 224-231
1.344Citations (PDF)
98Feedbacks, thresholds and synergies in global change: population as a dynamic factor
Biodiversity and Conservation, 1996, 5, 1069-1083
1.911Citations (PDF)
99Methane consumption by montane soils: implications for positive and negative feedback with climatic change
Biogeochemistry, 1996, 32,
2.479Citations (PDF)
100Global Warming and Soil Microclimate: Results from a Meadow-Warming Experiment
1995, 5, 132-150
278Citations (PDF)
101Acidification and Salamander Recruitment
BioScience, 1994, 44, 125-126
3.22Citations (PDF)
102Salamander Recruitment in Rockies Revisited
BioScience, 1994, 44, 381-381
3.20Citations (PDF)
103On Reauthorization of the Endangered Species Act
Conservation Biology, 1994, 8, 1-3
3.027Citations (PDF)
104Mutualism and Competition between Plants and Decomposers: Implications for Nutrient Allocation in Ecosystems
American Naturalist, 1993, 141, 829-846
1.6118Citations (PDF)
105A celebration of birds
BioScience, 1989, 39, 492-493
3.21Citations (PDF)
106Possible Effects of Acidic Deposition on a Rocky Mountain Population of the Tiger Salamander Ambystoma tigrtinum
Conservation Biology, 1989, 3, 149-158
3.083Citations (PDF)
107Arctic aerosol and Arctic climate: Results from an energy budget model
Climatic Change, 1988, 13, 161-189
2.51Citations (PDF)
108WATER CONSTRAINTS ON ENERGY DEVELOPMENT: A FRAMEWORK FOR ANALYSIS1.42Citations (PDF)
109An investigation of acid precipitation in Qinghai province, China
Atmospheric Environment, 1983, 17, 403-408
0.926Citations (PDF)
110The responses of lake waters to organic matter additions
Hydrobiologia, 1983, 107, 203-212
1.30Citations (PDF)
111Energy Technologies and Natural Environments: The Search for Compatibility
Annual Review of Energy, 1978, 3, 101-146
1.025Citations (PDF)
112Energy and Water
Science, 1978, 199, 623-634
26.540Citations (PDF)
113Physics at enormous momentum transfers: An interpretation of the CERN ISR results
Nuclear Physics B, 1973, 61, 245-252
1.91Citations (PDF)
114Possible Bootstrap Origin of Thermodynamic Inclusive Spectra
Physical Review D, 1972, 6, 2522-2530
3.57Citations (PDF)
115Bootstraps and partons a field guide to composite hadrons
Nuclear Physics B, 1972, 50, 301-317
1.98Citations (PDF)
116Theory of Large-Momentum-Transfer Hadron Production in High-Energy, Inelastic Hadron-Hadron Scattering
Physical Review D, 1970, 1, 2603-2609
3.53Citations (PDF)
117Unified Treatment of Hadronic Processes Involving High-Mass Virtual Photons
Physical Review, 1969, 188, 2372-2377
2.65Citations (PDF)
118Bootstrap Prediction for the Wide-Angle Proton-Proton Scattering Amplitude
Physical Review, 1969, 184, 1948-1950
2.611Citations (PDF)
119Off-Mass-Shell Theory of the Bootstrap and Composite-Particle Scattering
Physical Review, 1969, 184, 1936-1947
2.69Citations (PDF)
120Crossing-Symmetric Bootstrap and Exponentially Falling Form Factors
Physical Review, 1968, 165, 1557-1564
2.636Citations (PDF)
121Possible Enhancement of Two-Photon-Exchange Effects in Large-Momentum-Transfer Electron-Proton Scattering
Physical Review, 1968, 171, 1832-1833
2.68Citations (PDF)
122Asymptotic Vertex Function in a Crossing-Symmetric Bootstrap Model of the Hadrons
Physical Review, 1968, 171, 1825-1831
2.616Citations (PDF)
123Kinematic Constraints for Infinitely Rising Regge Trajectories
Physical Review, 1967, 164, 1841-1844
2.617Citations (PDF)
124Mass Perturbations in a Bethe-Salpeter-Equation Model of the Nucleon
Physical Review, 1967, 158, 1521-1529
2.63Citations (PDF)
125Mixing Effects forφ,ω, andρ0Mesons
Physical Review, 1964, 135, B459-B466
2.626Citations (PDF)
126Developing a macroecology for human‐altered ecosystems
Ecography, 0, 2026,
3.10Citations (PDF)
127Experimental warming decouples plant–fungal symbiont interactions and leads to a more conservative ecosystem5.32Citations (PDF)