Showing results (1-10 of 16) with videos related to
Sort By:
Pageof 2
Marine Environmental Research|September 10, 2020
Thermal tolerance in the amphipod Sunamphitoe parmerong from a global warming hotspot, acclimatory carryover effects within generationHamish Campbell, Janine Ledet, Alistair G B Poore, et al.Marine Pollution Bulletin|January 1, 2021
Effects of marine heatwave conditions across the metamorphic transition to the juvenile sea urchin (Heliocidaris erythrogramma)Mailie L Gall, Sebastian P Holmes, Hamish Campbell, et al.The Science of the Total Environment|August 4, 2021
Differential tolerance of species alters the seasonal response of marine epifauna to extreme warmingJanine Ledet, Hamish Campbell, Maria Byrne, et al.Global Change Biology|February 2, 2022
Staying in place and moving in space: Contrasting larval thermal sensitivity explains distributional changes of sympatric sea urchin species to habitat warmingMaria Byrne, Mailie L Gall, Hamish Campbell, et al.Global Change Biology|August 4, 2022
Live-fast-die-young: Carryover effects of heatwave-exposed adult urchins on the development of the next generationJay J Minuti, Maria Byrne, Hamish Campbell, et al.Cancer Research|December 4, 2016
A Study of TP53 RNA Splicing Illustrates Pitfalls of RNA-seq MethodologySunali Mehta, Peter Tsai, Annette Lasham, et al.Molecular Ecology|December 5, 2021
Environmental resistance and habitat quality influence dispersal of the saltwater crocodileYusuke Fukuda, Craig Moritz, Namchul Jang, et al.EMBO Reports|November 15, 2021
Adaptive homeostasis and the p53 isoform networkSunali Mehta, Hamish Campbell, Catherine J Drummond, et al.British Journal of Haematology|June 13, 2002
A novel inherited mutation of the transcription factor RUNX1 causes thrombocytopenia and may predispose to acute myeloid leukaemiaLogan C Walker, Jane Stevens, Hamish Campbell, et al.Blood|March 18, 2011
Hyperproliferation, cancer, and inflammation in mice expressing a Δ133p53-like isoformTania L Slatter, Noelyn Hung, Hamish Campbell, et al.Pageof 2