Level locomotion in wood ants: evidence for grounded running

Author:

Reinhardt Lars1,Blickhan Reinhard1

Affiliation:

1. Friedrich-Schiller-University, Germany

Abstract

Abstract In order to better understand the strategies of locomotion in small insects, we have studied continuous level locomotion of the wood ant species Formica polyctena. We determined the three-dimensional centre of mass kinematics during the gait cycle and recorded the ground reaction forces of single legs utilizing a self-developed test site. Our findings show that the animals used the same gait dynamics across a wide speed range without dissolving the tripodal stride pattern. To achieve higher velocities the ants proportionally increased stride length and stepping frequency. The centre of mass energetics indicated a bouncing gait, in which horizontal kinetic and gravitational potential energy fluctuated in close phase. We determined a high degree of compliance especially in the front legs, as the effective leg length was nearly halved during the contact phase. This leads to only small vertical oscillations of the body, which are important in maintaining ground contact. Bouncing gaits without aerial phases seem to be a common strategy in small runners and can be sufficiently described by the bipedal spring-loaded inverted pendulum model. Thus, with our results, we provide evidence that wood ants perform "grounded running".

Publisher

The Company of Biologists

Subject

Insect Science,Molecular Biology,Animal Science and Zoology,Aquatic Science,Physiology,Ecology, Evolution, Behavior and Systematics

Reference74 articles.

1. Walking and running in the red-legged running frog, Kassina maculata;Ahn;J. Exp. Biol.,2004

2. Rubber-like properties of the inner hinge-ligament of Pectinidae;Alexander;J. Exp. Biol.,1966

3. Vertical movements in walking and running;Alexander;J. Zool.,1978

4. Characterization of a new type of cross-linkage in resilin, a rubber-like protein;Andersen;Biochim. Biophys. Acta,1963

5. The cross-links in resilin identified as dityrosine and trityrosine;Andersen;Biochim. Biophys. Acta,1964

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