Adhesion and Detachment of the Toe Pads of Tree Frogs
Open Access
- 1 January 1991
- journal article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 155 (1) , 103-125
- https://doi.org/10.1242/jeb.155.1.103
Abstract
The mechanisms by which the toe pads of tree frogs adhere to and detach from surfaces during climbing have been studied in Osteopilus septentrionalis and other tree frogs using a variety of techniques.The experiments on attachment lend general support to the theory that toe pads stick by wet adhesion. First, the presence of a meniscus surrounding the area of contact shows that pad and surface are connected by a fluid-filled joint. Second, experiments on single toe pads of anaesthetised frogs demonstrate that the pads exhibit the velocity-dependent resistance to shear forces expected of any system employing a fluid as an adhesive mechanism. Third, the largest adhesive forces that toe pads can generate (approx. 1.2mNmm−2, calculated from data on sticking ability) are within the range that can be produced by wet adhesion. Simple measurements of the forces needed to separate a pair of metal discs joined by mucus demonstrate that both viscous forces (Stefan adhesion) and surface tension (the two components of wet adhesion) are likely to play significant roles in the tree frog’s adhesive mechanism.The experiments on detachment demonstrate that toe pads are detached from surfaces by peeling, the pads being removed from the rear forwards during forward locomotion up a vertical surface. When the frogs were induced to walk backwards down this vertical slope, peeling occurred from the front of the pad rearwards. Use of a force platform to measure directly the forces exerted by the feet during climbing shows that, during forward locomotion up a vertical slope, this peeling is not accompanied by any detectable detachment forces. Such forces of detachment are seen, however, during backward walking down the slope and when belly skin comes into contact with the platform. That peeling occurs automatically during forward locomotion is supported both by observations of peeling in single toe pads of anaesthetised frogs and by the inability of frogs to adhere to vertical surfaces in a head-down orientation. Indeed, frogs on a rotating vertical surface were observed to adjust their orientations back towards the vertical whenever their deviation from the vertical reached 85.1 ±21.5°. During forward locomotion peeling seems to occur as a natural consequence of the way in which the toes are lifted off surfaces from the rear forwards, while during backward locomotion it is an active process involving the distal tendons of the toes.Keywords
This publication has 13 references indexed in Scilit:
- The adhesion of treefrog toe-pads to glass: cryogenic examination of a capillary adhesion systemJournal of Natural History, 1988
- Digital Microstructure in Ecologically Diverse Sympatric Microhylid Frogs, Genera Cophixalus and Sphenophryne (Amphibia, Anura), From Papua-New-GuineaAustralian Journal of Zoology, 1986
- Adhesion and the Toe-Pads of TreefrogsIchthyology & Herpetology, 1981
- Toe pad morphology and mechanisms of sticking in frogsBiological Journal of the Linnean Society, 1980
- Treefrog toe pads: comparative surface morphology using scanning electron microscopyCanadian Journal of Zoology, 1979
- The digital pads of the tree frog, Hyla cinerea. I. The epidermisTissue and Cell, 1973
- Histochemistry of mucus in the skin of the frog,Rana pipiensThe Anatomical Record, 1970
- Glycosaminoglycans of adult frog back skinBiochimica et Biophysica Acta (BBA) - General Subjects, 1968
- The comparative myology of the pelvic appendage in the salientiaJournal of Morphology, 1960
- The digital pads of the tree frogs. A study of the phylogenesis of an adaptive structureJournal of Morphology, 1928