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25 results on '"Hipsley, Christy A"'

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1. Comparative skull osteology of Amphisbaena arda and Amphisbaena vermicularis (Squamata: Amphisbaenidae)

2. Conditioning non-linear and infinite-dimensional diffusion processes

3. Simulating infinite-dimensional nonlinear diffusion bridges

4. 2023 BMC Ecology and Evolution image competition:the winning images

5. Ecomorphological correlates of inner ear shape in Australian limb-reduced skinks (Scincidae: Sphenomorphini)

6. Macroecological and biogeographical patterns of limb reduction in the world's skinks

7. Macroecological and biogeographical patterns of limb reduction in the world's skinks

8. 2023 BMC Ecology and Evolution image competition:the winning images

9. Ecomorphological correlates of inner ear shape in Australian limb-reduced skinks (Scincidae: Sphenomorphini)

10. Ontogenetic allometry underlies trophic diversity in sea turtles (Chelonioidea)

11. 2022 BMC Ecology and Evolution image competition:the winning images

12. 2022 BMC Ecology and Evolution image competition:the winning images

14. Herpetofaunal diversity changes with climate:evidence from the Quaternary of McEachern’s Deathtrap Cave, southeastern Australia

15. Ontogenetic allometry underlies trophic diversity in sea turtles (Chelonioidea)

17. Herpetofaunal diversity changes with climate:evidence from the Quaternary of McEachern’s Deathtrap Cave, southeastern Australia

18. Postnatal development in a marsupial model, the fat-tailed dunnart (Sminthopsis crassicaudata; Dasyuromorphia: Dasyuridae)

19. Postnatal development in a marsupial model, the fat-tailed dunnart (Sminthopsis crassicaudata; Dasyuromorphia: Dasyuridae)

20. First evidence of convergent lifestyle signal in reptile skull roof microanatomy

22. Evolutionary consequences of Cenozoic climate change on African lacertid lizards (Squamata: Lacertidae)

23. Evolutionary consequences of Cenozoic climate change on African lacertid lizards (Squamata: Lacertidae)

24. Integration of Bayesian molecular clock methods and fossil-based soft bounds reveals early Cenozoic origin of African lacertid lizards

25. Integration of Bayesian molecular clock methods and fossil-based soft bounds reveals early Cenozoic origin of African lacertid lizards

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