From geometric optics to plants: the eikonal equation for buckling.
basic_science · Level V
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- Record sourced from PubMed, PMID 28120994.
- Also identified by DOI 10.1039/c6sm02438f.
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Abstract
Optimal buckling of a tissue, e.g. a plant leaf, growing by means of exponential division of its peripheral cells, is considered in the framework of a conformal approach. It is shown that the boundary profile of a tissue is described by the 2D eikonal equation, which provides the geometric optic approximation for the wavefront propagating in a medium with an inhomogeneous refraction coefficient. A variety of optimal surfaces embedded in 3D is controlled by spatial dependence of the refraction coefficient which, in turn, is dictated by the local growth protocol.
Medical subject headings
- Mechanical Phenomena
- Models, Biological
- Optical Phenomena
- Plant Development