The size, shape and structure of insect wings are intimately linked to their ability to fly. However, there are few systematic studies of the variability of the natural patterns in wing morphology across insects. We have assembled a dataset of 789 insect wings with representatives from 25 families and performed a comprehensive computational analysis of their morphology using topological and geometric notions in terms of (i) wing size and contour shape, (ii) vein topology, and (iii) shape and distribution of wing membrane domains. These morphospaces are complementary to existing methods for quantitatively characterizing wing morphology and are likely to be useful for investigating wing function and evolution. This Methods and Techniques paper is accompanied by a set of computational tools for open use.
CITATION STYLE
Salcedo, M. K., Hoffmann, J., Donoughe, S., & Mahadevan, L. (2019). Computational analysis of size, shape and structure of insect wings. Biology Open, 8(10). https://doi.org/10.1242/bio.040774
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