| Literature DB >> 32518382 |
Binggwong Leung1, Nienke Bijma2, Emily Baird3, Marie Dacke4, Stanislav Gorb2, Poramate Manoonpong5,6.
Abstract
Dung beetles can perform a number of versatile behaviours, including walking and dung ball rolling. While different walking and running gaits of dung beetles have been described in previous literature, little is known about their ball rolling gaits. From behavioural experiments and video recordings of the beetle Scarabaeus (Kheper) lamarcki, we analysed and identified four underlying rules for leg coordination during ball rolling. The rules describe the alternation of the front legs and protraction waves of the middle and hind legs. We found that while rolling a ball backwards, the front legs are decoupled or loosely coupled from the other legs, resulting in a non-standard gait, in contrast to previously described tripod and gallop walking gaits in dung beetles. This provides insight into the principles of leg coordination in dung beetle ball rolling behaviour and its underlying rules. The proposed rules can be used as a basis for further investigation into ball rolling behaviours on more complex terrain (e.g., uneven terrain and slopes). Additionally, the rules can also be used to guide the development of control mechanisms for bio-inspired ball rolling robots.Entities:
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Year: 2020 PMID: 32518382 PMCID: PMC7283283 DOI: 10.1038/s41598-020-66248-7
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Dung beetle’s ball rolling behaviour. (a) Side view of ball rolling behaviour. (b) Top view of ball rolling behaviour. (c) Side view of a sequence of the ball rolling behaviour. The positions of the body and the front, middle, and hind legs of a dung beetle are marked with red, yellow, turquoise-blue, and green dots, respectively.
Figure 2Gait patterns and leg movements of dung beetle ball rolling behaviour with leg similarity percentages. (a) A schematic of side and top view of the ball rolling behaviour of the dung beetle Scarabaeus (Kheper) lamarcki (see also Supplementary Movie S1). (b) Leg trajectories of the front, middle, and hind legs. The blue trajectory indicates the swing phase and the black trajectory the stance phase. Light blue and grey trajectories show the statistics of the leg trajectories from multiple steps. The leg trajectories were obtained from one individual run of a beetle for a duration of 5 seconds (see Supplementary Movie S1). (c) Rolling gait of the dung beetle with highlights of the leg coordination rules. The white spaces in the gait pattern indicate the swing phase of the leg. The dashed enclosures which cover L2 and L3 and R3 and R2 indicate the protraction wave (swing phase) on the left and right sides of the dung beetle. The vertical dashed enclosures which cover L2 and R3 and L3 and R2 indicate the overlapping of the protraction wave between the left and right sides of the dung beetle. The ball rolling gait was selected from 8 individual runs (i.e., 8 gait diagrams) for a duration of 2 seconds each. (di) Leg gait and (dii) leg swing phase similarity percentages of each pair of legs. The labelled legs in (di) and (dii) are the references for the analysis pairs. Numbers in red and green indicate the lowest and highest similarity percentages, respectively. The leg similarity percentages were calculated from 8 individual runs for a duration of 2 seconds each.
Figure 3Comparison between the baseline and lighter dung ball conditions. (a) Rolling gait of the baseline condition. (b) Rolling gait of the lighter dung ball condition. Further details of the leg gait similarity percentages can be seen in Supplementary Fig. S2. The rolling gaits (a,b) are a mixture of at least a typical tripod gait (highlighted by blue bars) and the gait involving the ipsilateral front and middle legs and the contralateral hind leg (highlighted by orange bars). (c) Normalised density curve (using kernel density estimation) and histogram of the stance and swing phases of the baseline and lighter dung ball conditions (*p < 0.05 two-tailed, Mann-Whitney U test). (see also Supplementary Fig. S3 and Table S1). In each condition, we gathered a total of 21 individual runs from five different beetles with a duration of 2 seconds each.