Excited to share that our paper on alpine vegetation dynamics on Australian mountain summits is out now! 🏔️ Huge thanks to coauthors @jwmorganecology.bsky.social, @susannavenn.bsky.social, and @jcamac.bsky.social
#Newarticle Hickman et al.’s long-term study finds that alpine summit vegetation responds multi-directionally to different, co-occurring drivers, with outcomes contingent on life history characteristics: doi.org/10.1080/15230430.2024.2429864
doi.org
Long-term alpine summit vegetation cover change: Divergent trajectories driven by climate warming and fire
Alpine summit vegetation, the highest point of species geographical distributions, is vulnerable to climate change (thermal niche contraction), and there is evidence of change in Northern Hemispher...