4.5 Article

Warm bodies, cool wings: regional heterothermy in flying bats

Journal

BIOLOGY LETTERS
Volume 15, Issue 9, Pages -

Publisher

ROYAL SOC
DOI: 10.1098/rsbl.2019.0530

Keywords

muscle temperature; bat flight; flight performance; bat wings; muscle

Funding

  1. NSF [CMMI 1426338]
  2. AFOSR [FA9550-12-1-0301]
  3. Bushnell Research and Education Fund
  4. Department of Defense, AFOSR, NDSEG Fellowship [32 CFR 168a]
  5. [FA9550-11-C-0028]

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Many endothermic animals experience variable limb temperatures, even as they tightly regulate core temperature. The limbs are often cooler than the core at rest, but because the large locomotor muscles of the limbs produce heat during exercise, they are thought to operate at or above core temperature during activity. Bats, small-bodied flying mammals with greatly elongated forelimbs, possess wings with large surfaces lacking any insulating fur. We hypothesized that during flight the relatively small muscles that move the elbow and wrist operate below core body temperature because of elevated heat loss. We measured muscle temperature continuously in the small fruit bat Carollia perspicillata before and during wind tunnel flights, and discretely in diverse bats at rest in Belize. We found that bats maintained high rectal temperatures, but that there was a steep proximal-to-distal gradient in wing muscle temperature. Forearm muscles were 4-6 degrees C cooler than rectal temperature at rest and approximately 12 degrees C cooler during flights at an air temperature of 22 degrees C. These findings invite further study into how bats and other endotherms maintain locomotor performance in variable environments, when some muscles may be operating at low temperatures that are expected to slow contractile properties.

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