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Mice Develop Efficient Strategies for Foraging and Navigation Using Complex Natural Stimuli

Overview
Journal Curr Biol
Publisher Cell Press
Specialty Biology
Date 2016 Apr 27
PMID 27112299
Citations 59
Authors
Affiliations
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Abstract

The ability to shift between multiple decision-making strategies during natural behavior allows animals to strike a balance between flexibility and efficiency. We investigated odor-guided navigation by mice to understand how decision-making strategies are balanced during a complex natural behavior. Mice navigated to odor sources in an open arena using naturally fluctuating airborne odor cues as their positions were recorded precisely in real time. When mice had limited prior experience of source locations, their search behavior was consistent with a gradient ascent algorithm that utilized directional cues in the plume to navigate to the odor source. Gradient climbing was effective because the arena size allowed animals to conduct their search mainly within the odor plume, with frequent odor contacts. With increased experience, mice shifted their strategy from this flexible, sensory-driven search behavior to a more efficient and stereotyped foraging approach that varied little in response to odor plumes. This study demonstrates that mice use prior knowledge to adaptively balance flexibility and efficiency during complex behavior guided by dynamic natural stimuli.

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References
1.
Whishaw I, Gorny B . Path integration absent in scent-tracking fimbria-fornix rats: evidence for hippocampal involvement in "sense of direction" and "sense of distance" using self-movement cues. J Neurosci. 1999; 19(11):4662-73. PMC: 6782623. View

2.
Maaswinkel H, Whishaw I . Homing with locale, taxon, and dead reckoning strategies by foraging rats: sensory hierarchy in spatial navigation. Behav Brain Res. 1999; 99(2):143-52. DOI: 10.1016/s0166-4328(98)00100-4. View

3.
Save E, Nerad L, Poucet B . Contribution of multiple sensory information to place field stability in hippocampal place cells. Hippocampus. 2000; 10(1):64-76. DOI: 10.1002/(SICI)1098-1063(2000)10:1<64::AID-HIPO7>3.0.CO;2-Y. View

4.
Shraiman , Siggia . Scalar turbulence. Nature. 2000; 405(6787):639-46. DOI: 10.1038/35015000. View

5.
Wallace D, Gorny B, Whishaw I . Rats can track odors, other rats, and themselves: implications for the study of spatial behavior. Behav Brain Res. 2002; 131(1-2):185-92. DOI: 10.1016/s0166-4328(01)00384-9. View