Oxygen limitation of aerobic metabolism is hypothesized to drive organismal thermal tolerance limits. Differences in oxygen availability in air and water may underlie observed differences in upper thermal tolerance of intertidal limpets if oxygen is limiting in submerged environments. We explored how cardiac performance (heart rate, breakpoint temperature [BPT], flat-line temperature [FLT], and temperature sensitivity) was affected by hyperoxia and hypoxia in the finger limpet, Lottia digitalis, under air exposure and submersion. Upper thermal tolerance limits were unchanged by increasing availability of oxygen, although air-exposed limpets were able to maintain cardiac function to higher temperatures than submerged limpets. Maximum heart r...
Contains fulltext : 151227.pdf (publisher's version ) (Open Access
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Oxygen limitation of aerobic metabolism is hypothesized to drive organismal thermal tolerance limits...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Aquatic poikilothermic animals must either cope with or compensate for the mismatch in oxygen supply...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Over the last decade, numerous studies have investigated the role of oxygen in setting thermal toler...
Over the last decade, numerous studies have investigated the role of oxygen in setting thermal toler...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Thesis (Master's)--University of Washington, 2021Recent measurements of critical O2 thresholds (‘Pcr...
Over the last decade, numerous studies have investigated the role of oxygen in setting thermal toler...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
The minimum O2 needed to fuel the demand of aquatic animals is commonly observed to increase with te...
Contains fulltext : 151227.pdf (publisher's version ) (Open Access
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Oxygen limitation of aerobic metabolism is hypothesized to drive organismal thermal tolerance limits...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Aquatic poikilothermic animals must either cope with or compensate for the mismatch in oxygen supply...
Much of our understanding of the thermal physiology of intertidal organisms comes from experiments w...
Over the last decade, numerous studies have investigated the role of oxygen in setting thermal toler...
Over the last decade, numerous studies have investigated the role of oxygen in setting thermal toler...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Thesis (Master's)--University of Washington, 2021Recent measurements of critical O2 thresholds (‘Pcr...
Over the last decade, numerous studies have investigated the role of oxygen in setting thermal toler...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
Predicting ecological responses to climate change requires an understanding of the mechanisms that i...
The minimum O2 needed to fuel the demand of aquatic animals is commonly observed to increase with te...
Contains fulltext : 151227.pdf (publisher's version ) (Open Access
Understanding physiological responses of organisms to warming and ocean acidification is the first s...
Understanding physiological responses of organisms to warming and ocean acidification is the first s...