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- W2254254676 abstract "ARTICLESCutaneous gas exchange in bats Herreid CF 2nd, WL Bretz, and K Schmidt-Nielsen Herreid CF 2nd, WL Bretz, and K Schmidt-NielsenPublished Online:01 Aug 1968https://doi.org/10.1152/ajplegacy.1968.215.2.506MoreSectionsPDF (635 KB)Download PDF ToolsExport citationAdd to favoritesGet permissionsTrack citations ShareShare onFacebookTwitterLinkedInWeChat Previous Back to Top Next Download PDF FiguresReferencesRelatedInformation Cited ByEcology and impacts of white-nose syndrome on bats18 January 2021 | Nature Reviews Microbiology, Vol. 15From metabolism and behavior to respiratory physiology: an educational and research perspectiveEvelyn Heymann Schlenker3 September 2020 | Advances in Physiology Education, Vol. 44, No. 4BATS RECOVERING FROM WHITE-NOSE SYNDROME ELEVATE METABOLIC RATE DURING WING HEALING IN SPRINGJournal of Wildlife Diseases, Vol. 54, No. 3Interruption to cutaneous gas exchange is not a likely mechanism of WNS-associated death in batsJournal of Experimental Biology, Vol. 218, No. 13White-nose syndrome initiates a cascade of physiologic disturbances in the hibernating bat host9 December 2014 | BMC Physiology, Vol. 14, No. 1Pathophysiology of white-nose syndrome in bats: a mechanistic model linking wing damage to mortality23 August 2013 | Biology Letters, Vol. 9, No. 4Bat flight with bad wings: is flight metabolism affected by damaged wings?Journal of Experimental Biology, Vol. 216, No. 8Metabolism, Temperature, and Ventilation1 October 2011Free-Ranging Little Brown Myotis (Myotis lucifugus) Heal from Wing Damage Associated with White-Nose Syndrome16 September 2011 | EcoHealth, Vol. 8, No. 2Hibernation and Gas Exchange1 January 2011Wing pathology of white-nose syndrome in bats suggests life-threatening disruption of physiology11 November 2010 | BMC Biology, Vol. 8, No. 1White-Nose Syndrome Inflicts Lasting Injuries to the Wings of Little Brown Myotis ( Myotis lucifugus )Acta Chiropterologica, Vol. 11, No. 2The structural design of the bat wing web and its possible role in gas exchangeJournal of Anatomy, Vol. 211, No. 6Intermittent Ventilation in Hibernating Dormice — Is Ventilation always Necessary to Meet Metabolic Demands?Apneic Oxygen Uptake in the Torpid Pocket Mouse Perognathus parvusPhysiological Zoology, Vol. 71, No. 6Apneic Oxygen Uptake in the Torpid Bat, Eptesicus Fuscus1 December 1992 | Journal of Experimental Biology, Vol. 173, No. 1CUTANEOUS GAS EXCHANGE IN VERTEBRATES: DESIGN, PATTERNS, CONTROL AND IMPLICATIONSBiological Reviews, Vol. 60, No. 1The contribution of non-pulmonary surfaces to CO2 loss in 6 species of turtles at 20°CComparative Biochemistry and Physiology Part A: Physiology, Vol. 55, No. 3 More from this issue > Volume 215Issue 2August 1968Pages 506-508 Copyright & PermissionsCopyright © 1968 by American Physiological Societyhttps://doi.org/10.1152/ajplegacy.1968.215.2.506PubMed5665184History Published online 1 August 1968 Published in print 1 August 1968 Metrics" @default.
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