The energetic cost of diving in marine mammals is a difficult value to derive given the problems of assessing metabolic rate for an animal at sea. Nevertheless, it is fundamental to our understanding of the foraging strategies of air-breathers exploiting underwater food sources. We measured the metabolic rates of eight captive grey seals, voluntarily diving in a quasi-natural setting. Oxygen consumption during post-dive surface periods was measured using open-flow respirometry, and dive behaviour of the seals was recorded using time depth recorders (TDRs). Mean diving metabolic rate (DMR) for both adults and juveniles was 1.7 times the predicted standard metabolic rate of terrestrial animals of equal size. For all animals, DMR was lower tha...
Marine mammals are characterized as having physiological specializations that maximize the use of ox...
Although energetics is fundamental to animal ecology, traditional methods of determining metabolic r...
Although energetics is fundamental to animal ecology, traditional methods of determining metabolic r...
When at sea, phocids dive for long periods and spend a high percentage of their time submerged. This...
When at sea, phocids dive for long periods and spend a high percentage of their time submerged. This...
Heart rate, swimming speed and diving depth data were collected from free-ranging grey seals, Halich...
Oxygen consumption of captive grey seals was measured over a period of 2.5 years at the captive fac...
Physiology may limit the ability for marine mammals to adapt to changing environments. Depth and dur...
Heart rate, swimming speed and diving depth data were collected from free-ranging grey seals, Halich...
Accurate estimates of diving metabolic rate are central to assessing the energy needs of marine mamm...
Diving animals offer a unique opportunity to study the importance of physiological constraint and th...
Diving animals must endeavor to increase their dive depths and prolong the time they spend exploitin...
Metabolic replacement rates (Ra) for glucose and free fatty acids (FFA) were determined during rest,...
Diving animals must endeavor to increase their dive depths and prolong the time they spend exploitin...
Heart rates, respiratory frequencies, field metabolic rates (FMR) and body temperatures of northern...
Marine mammals are characterized as having physiological specializations that maximize the use of ox...
Although energetics is fundamental to animal ecology, traditional methods of determining metabolic r...
Although energetics is fundamental to animal ecology, traditional methods of determining metabolic r...
When at sea, phocids dive for long periods and spend a high percentage of their time submerged. This...
When at sea, phocids dive for long periods and spend a high percentage of their time submerged. This...
Heart rate, swimming speed and diving depth data were collected from free-ranging grey seals, Halich...
Oxygen consumption of captive grey seals was measured over a period of 2.5 years at the captive fac...
Physiology may limit the ability for marine mammals to adapt to changing environments. Depth and dur...
Heart rate, swimming speed and diving depth data were collected from free-ranging grey seals, Halich...
Accurate estimates of diving metabolic rate are central to assessing the energy needs of marine mamm...
Diving animals offer a unique opportunity to study the importance of physiological constraint and th...
Diving animals must endeavor to increase their dive depths and prolong the time they spend exploitin...
Metabolic replacement rates (Ra) for glucose and free fatty acids (FFA) were determined during rest,...
Diving animals must endeavor to increase their dive depths and prolong the time they spend exploitin...
Heart rates, respiratory frequencies, field metabolic rates (FMR) and body temperatures of northern...
Marine mammals are characterized as having physiological specializations that maximize the use of ox...
Although energetics is fundamental to animal ecology, traditional methods of determining metabolic r...
Although energetics is fundamental to animal ecology, traditional methods of determining metabolic r...