Literature DB >> 12794671

The role of energy availability in Mammalian hibernation: an experimental test in free-ranging eastern chipmunks.

Murray M Humphries1, Donald L Kramer, Donald W Thomas.   

Abstract

Reduced torpor expression by hibernating mammals is often attributed to physiological constraints that limit their hibernation ability but may instead reflect adaptive, plastic responses to surplus energy availability. We evaluated this hypothesis by supplementing the food hoards of free-ranging eastern chipmunks (Tamias striatus) before hibernation and then documenting their use of torpor during the subsequent winter. In both years of study, chipmunks that received additional food were euthermic more than twice as frequently as nonsupplemented individuals. Furthermore, when food-supplemented individuals did express torpor, their minimum collar temperature was 5 degrees -10 degrees C warmer than nonsupplemented animals. These results indicate that reduced torpor expression by hibernators can result from an absence of energetic necessity rather than a lack of physiological capability and suggest that even endotherms sequestered in a hibernaculum may benefit from maintaining an elevated body temperature whenever possible.

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Year:  2003        PMID: 12794671     DOI: 10.1086/367949

Source DB:  PubMed          Journal:  Physiol Biochem Zool        ISSN: 1522-2152            Impact factor:   2.247


  25 in total

1.  Warming up for dinner: torpor and arousal in hibernating Natterer's bats (Myotis nattereri) studied by radio telemetry.

Authors:  Paul R Hope; Gareth Jones
Journal:  J Comp Physiol B       Date:  2011-11-29       Impact factor: 2.200

2.  Higher origination and extinction rates in larger mammals.

Authors:  Lee Hsiang Liow; Mikael Fortelius; Ella Bingham; Kari Lintulaakso; Heikki Mannila; Larry Flynn; Nils Chr Stenseth
Journal:  Proc Natl Acad Sci U S A       Date:  2008-04-15       Impact factor: 11.205

Review 3.  Field evidence for a proximate role of food shortage in the regulation of hibernation and daily torpor: a review.

Authors:  Pauline Vuarin; Pierre-Yves Henry
Journal:  J Comp Physiol B       Date:  2014-05-22       Impact factor: 2.200

4.  Thermoregulatory variation among populations of bats along a latitudinal gradient.

Authors:  Miranda B Dunbar; R Mark Brigham
Journal:  J Comp Physiol B       Date:  2010-03-06       Impact factor: 2.200

5.  When to initiate torpor use? Food availability times the transition to winter phenotype in a tropical heterotherm.

Authors:  Pauline Vuarin; Melanie Dammhahn; Peter M Kappeler; Pierre-Yves Henry
Journal:  Oecologia       Date:  2015-05-08       Impact factor: 3.225

6.  Linking summer foraging to winter survival in yellow pine chipmunks (Tamias amoenus).

Authors:  Kellie M Kuhn; Stephen B Vander Wall
Journal:  Oecologia       Date:  2008-06-17       Impact factor: 3.225

Review 7.  Torpor induction in mammals: recent discoveries fueling new ideas.

Authors:  Richard G Melvin; Matthew T Andrews
Journal:  Trends Endocrinol Metab       Date:  2009-10-26       Impact factor: 12.015

8.  Seasonal torpor and normothermic energy metabolism in the Eastern chipmunk (Tamias striatus).

Authors:  Danielle L Levesque; Glenn J Tattersall
Journal:  J Comp Physiol B       Date:  2009-09-16       Impact factor: 2.200

9.  Hibernation patterns of Turkish hamsters: influence of sex and ambient temperature.

Authors:  Mariska Batavia; George Nguyen; Kristine Harman; Irving Zucker
Journal:  J Comp Physiol B       Date:  2012-09-16       Impact factor: 2.200

10.  Regulation of heart rate and rumen temperature in red deer: effects of season and food intake.

Authors:  Christopher Turbill; Thomas Ruf; Thomas Mang; Walter Arnold
Journal:  J Exp Biol       Date:  2011-03-15       Impact factor: 3.312

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