All Stories

  1. Species richness and trait diversity show parallel island- biogeographic patterns across Australian islands
  2. Cross-species applicability of a bone-ageing method in delphinids
  3. Balancing High Densities and Conservation Targets to Optimise Koala Management Strategies
  4. Trait-space disparity in fish communities spanning 380 million years from the Late Devonian to present
  5. A 150,000-year lacustrine record of the Indo-Australian monsoon from northern Australia
  6. Conservation Arks: Genomic Erosion and Inbreeding in an Abundant Island Population of Koalas
  7. A Guide for Developing Demo‐Genetic Models to Simulate Genetic Rescue
  8. Genomic erosion and inbreeding in an abundant island population of koalas
  9. Paleorecords Reveal Biological Mechanisms Crucial for Reliable Species Range Shift Projections Amid Rapid Climate Change
  10. Stochastic population models to identify optimal and cost‐effective harvest strategies for feral pig eradication
  11. Balancing overpopulation and conservation targets to optimize koala management strategies
  12. Large size of the Australian Indigenous population prior to its massive decline following European invasion
  13. Small populations of Palaeolithic humans in Cyprus hunted endemic megafauna to extinction
  14. Trait-space disparity in fish communities spanning 380 million years from the Late Devonian to present
  15. How to map biomes: Quantitative comparison and review of biome‐mapping methods
  16. Damage costs from invasive species exceed management expenditure in nations experiencing lower economic activity
  17. Environmental conditions associated with initial northern expansion of anatomically modern humans
  18. Demographic models predict end-Pleistocene arrival and rapid expansion of pre-agropastoralist humans in Cyprus
  19. Biological mechanisms are necessary to improve projections of species range shifts
  20. Developing demo-genetic models to simulate genetic rescue
  21. Mechanisms of hunting native megafauna to extinction by Palaeolithic humans on Cyprus
  22. Sea level rise drowned a vast habitable area of north-western Australia driving long-term cultural change
  23. Estimating extinction time using radiocarbon dates
  24. Stochastic metapopulation dynamics of a threatened amphibian to improve water delivery
  25. Forest mosaics, not savanna corridors, dominated in Southeast Asia during the Last Glacial Maximum
  26. Demographic models predict end-Pleistocene arrival and rapid expansion of pre-agropastoralist humans in Cyprus
  27. Predicting predator–prey interactions in terrestrial endotherms using random forest
  28. Estimating co‐extinction threats in terrestrial ecosystems
  29. Differential developmental rates and demographics in Red Kangaroo (Osphranter rufus) populations separated by the dingo barrier fence
  30. Stochastic population models to identify optimal and cost-effective harvest strategies for feral pig eradication
  31. Directionally supervised cellular automaton for the initial peopling of Sahul
  32. Modeling the effects of water regulation on the population viability of a threatened amphibian
  33. Accounting for uncertainties when mapping past species range shifts
  34. Dredging activity in a highly urbanised estuary did not affect the long-term occurrence of Indo-Pacific bottlenose dolphins and long-nosed fur seals
  35. Predicting predator-prey interactions in terrestrial endotherms using random forest
  36. On the rise: Climate change in New Zealand will cause sperm and blue whales to seek higher latitudes
  37. Sahul's megafauna were vulnerable to plant‐community changes due to their position in the trophic network
  38. Response: Commentary: Underestimating the Challenges of Avoiding a Ghastly Future
  39. Predicting targets and costs for feral‐cat reduction on large islands using stochastic population models
  40. Addendum: FosSahul 2.0, an updated database for the Late Quaternary fossil records of Sahul
  41. Commentary: Underestimating the Challenges of Avoiding a Ghastly Future
  42. Stochastic models support rapid peopling of Late Pleistocene Sahul
  43. Landscape rules predict optimal superhighways for the first peopling of Sahul
  44. Relative demographic susceptibility does not explain the extinction chronology of Sahul’s megafauna
  45. Using Holocene fossils to model the future: Distribution of climate suitability for tuatara, the last rhynchocephalian
  46. Underestimating the Challenges of Avoiding a Ghastly Future
  47. Relative demographic susceptibility does not explain the extinction chronology of Sahul’s megafauna
  48. Predicting targets and costs for feral-cat reduction on large islands using stochastic population models
  49. Climate-human interaction associated with southeast Australian megafauna extinction patterns
  50. FosSahul 2.0, an updated database for the Late Quaternary fossil records of Sahul
  51. Modeling the distribution of a wide‐ranging invasive species using the sampling efforts of expert and citizen scientists
  52. Climate‐driven shifts in the distribution of koala‐browse species from the Last Interglacial to the near future
  53. Early human settlement of Sahul was not an accident
  54. Minimum founding populations for the first peopling of Sahul
  55. The Australian National Rabbit Database: 50 yr of population monitoring of an invasive species
  56. High-quality fossil dates support a synchronous, Late Holocene extinction of devils and thylacines in mainland Australia
  57. Why decadal to century timescale palaeoclimate data are needed to explain present‐day patterns of biological diversity and change
  58. PaleoView: a tool for generating continuous climate projections spanning the last 21 000 years at regional and global scales
  59. Predicting and mitigating future biodiversity loss using long-term ecological proxies
  60. A comprehensive database of quality-rated fossil ages for Sahul’s Quaternary vertebrates
  61. How to find fossils
  62. What caused extinction of the Pleistocene megafauna of Sahul?
  63. Climate change not to blame for late Quaternary megafauna extinctions in Australia
  64. Criteria for assessing the quality of Middle Pleistocene to Holocene vertebrate fossil ages
  65. Uncertainties in dating constrain model choice for inferring extinction time from fossil records
  66. Modelling range dynamics under global change: which framework and why?
  67. How climate, migration ability and habitat fragmentation affect the projected future distribution of European beech
  68. Method synergy in the hunt for climate refugia
  69. Climate or migration: what limited European beech post-glacial colonization?
  70. The role of temperature on treeline migration for an eastern African mountain during the Last Glacial Maximum
  71. A phenomenological model without dispersal kernel to model species migration
  72. Modélisation de la dispersion à grande échelle : évolution de laire de répartition passée et future du hêtre commun (Fagus sylvatica) en réponse aux changements climatiques