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1.
J. venom. anim. toxins incl. trop. dis ; 18(1): 97-102, 2012. ilus
Article in English | LILACS | ID: lil-618195

ABSTRACT

Members of the subfamily Crotalinae are considered to be essentially nocturnal and most of the data about these snakes have been collected from the field. Information on how nutritional status affects the movement rate and activity patterns is a key point to elucidating the ecophysiology of snakes. In this study, we distributed 28 lancehead Bothrops moojeni into three groups under distinct feeding regimens after a month of fasting. Groups were divided as follows: ingestion of meals weighing (A) 40 percent, (B) 20 percent, or (C) 10 percent of the snake body mass. Groups were monitored for five days before and after food intake and the activity periods and movement rates were recorded. Our results show that B. moojeni is prevalently nocturnal, and the activity peak occurs in the first three hours of the scotophase. After feeding, a significant decrease in activity levels in groups A and B was detected. The current results corroborate previous field data that describe B. moojeni as a nocturnal species with low movement rates. The relationship between motion and the amount of food consumed by the snake may be associated with its hunting strategy.


Subject(s)
Animals , Circadian Rhythm/physiology , Viperidae/physiology
2.
J. venom. anim. toxins incl. trop. dis ; 17(3): 287-292, 2011. ilus, graf
Article in English | LILACS | ID: lil-597227

ABSTRACT

Snakes that can ingest prey that are proportionally large have high metabolic rates during digestion. This great increase in metabolic rate (specific dynamic action - SDA) may create a significant augment in the animal's body temperature. The present study investigated postprandial thermogenesis in Bothrops moojeni. Briefly, two groups of snakes were fed meals equivalent to 17 ± 3 percent and 32 ± 5 percent of their body weight and were observed for 72 hours, in which thermal images of each snake were taken with an infrared camera in a thermostable environment with a constant air temperature of 30ºC. The results showed a significant increase in snake surface temperature, with a thermal peak between 33 and 36 hours after feeding. The meal size had a great impact on the intensity and duration of the thermogenic response. Such increase in temperature appears to be connected with the huge increase in metabolic rates during digestion of relatively large prey by snakes that feed infrequently. The ecologic implication of the thermogenic response is still not well understood; however, it is possible that its presence could affect behaviors associated with the snake digestion, such as postprandial thermophily.


Subject(s)
Animals , Bothrops/metabolism , Digestion , Feeding Behavior , Thermogenesis/physiology
3.
Braz. j. med. biol. res ; 28(11/12): 1241-7, Nov.-Dec. 1995. graf
Article in English | LILACS | ID: lil-161526

ABSTRACT

A number of amphibians and reptiles have cyclic behavior, becoming inactive with the coming of the dry season. In South America this pattern of activity is common, particularly in savannah-like vegetation. During the dry season amphibians burrow into the mud or soil, and either form a cocoon or increase the osmotic concentration of body fluids to reduce evaporative water loss. Some phyllomedusid tree frogs coat their body surface with skin secretion and excrete uric acid to minimize water loss. Reptiles also retreat into shelter deep enough to avoid temperature fluctuation during estivation or reduce metabolic response to temperature. Reduction of temperature sensitivity of the metabolism seems to be a strategy common to estivating amphibians and reptiles. Despite seasonal change of the environment, some species of reptiles are active all year round.


Subject(s)
Animals , Amphibians/physiology , Behavior, Animal/physiology , Estivation/physiology , Reptiles/physiology , Body Temperature Regulation/physiology , South America , Water-Electrolyte Balance/physiology
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