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We have developed autonomous and high precision sensor arrays to monitor growth of individual native plants along with local environmental conditions, coupled with wireless data loggers that can provide real-time data available to managers and the wider public. We deployed an experimental set of these sensors, integrated with a weather station, 2 webcams, and a live web portal (construction in progress) to showcase how this real time information can be useful to relevant managers while also raising awareness of the challenges of climate change adaptation and Hawaiian plant conservation in general. With the increasing popularity of wildlife web-cams, it has been shown that this type of technology has a strong ability...
Besides coral, Hawaiian forest birds are arguably one of the clearest examples of species vulnerable to climate change. A wealth of studies has recently detailed how both ongoing and projected warming allows for avian malaria to spread at higher elevation areas where most remaining native bird species persist. Temperature is a critical factor for the development of both the disease (Plasmodium relictum) and its vector (Culex quinquefasciatus). As such, their distribution and abundance across the landscape seem to vary across the landscape in response to changing monthly, seasonal and annual conditions. Standard and novel vector control options are increasingly being considered to safeguard forest birds from the...
In conservation, one challenge of climate change adaptation is that acting on projected long-term climatic threats requires two ‘leaps’ by managers: 1) Acting on climate-based information which rarely is considered by managers; and 2) Acting on projected impacts that have not yet materialized. A broader challenge to Hawaiian plant conservation is the disconnect between the public and the wao akua where efforts to preserve native plants are often concentrated in. We have recently developed autonomous and high precision sensor arrays to monitor growth of individual native plants along with local environmental conditions at 30 minute intervals. The developed sensor array is unobtrusive, autonomous and when coupled...