Support and deformability in insect wings

Robin J. Wootton

Journal of Zoology · 1981 · 327 citations · 10 references

Concepts

TL;DR

Insect wing studies reveal that wing morphology—including venation, relief, and flexion lines—plays a key role in controlling three‑dimensional shape during flight, with distinct regions specialized for deformability and support. The authors describe and illustrate structural adaptations that provide support and limit deformation while allowing wing flexibility. High‑speed imaging shows that most insect wings deform in a consistent, orderly manner during flight, and the authors identify common deformation patterns and discuss their aerodynamic relevance.

Abstract

Coupled investigations of insect wing movements and detailed wing morphology are in progress, and some functional principles underlying wing design are emerging. High speed cine and still photography and stroboscopy indicate that most wings undergo orderly deformation in flight. Common patterns are described and their significance discussed in the light of recent aerodynamic studies. Many aspects of wing morphology–venational features, relief, thickened areas, flexionlines and vein fractures–may be related to the control of three‐dimensional shape while beating. It is usually possible to distinguish areas specialized for deformability, and for support and the limiting of deformation. Some structural adaptations for these roles are described and illustrated.

References

10