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Fluttering of growing leaves as a way to reach flatness : experimental evidence on Persea americana

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2018

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Derr, Julien
Couturier, Étienne
Douady, Stéphane

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Interface : Journal of the Royal Society. 2018, 15(138), 20170595. ISSN 1742-5689. eISSN 1742-5662. Available under: doi: 10.1098/rsif.2017.0595

Zusammenfassung

Simple leaves show unexpected growth motions: the midrib of the leaves swings periodically in association with buckling events of the leaf blade, giving the impression that the leaves are fluttering. The quantitative kinematic analysis of this motion provides information about the respective growth between the main vein and the lamina. Our three-dimensional reconstruction of an avocado tree leaf shows that the conductor of the motion is the midrib, presenting continuous oscillations and inducing buckling events on the blade. The variations in the folding angle of the leaf show that the lamina is not passive: it responds to the deformation induced by the connection to the midrib to reach a globally flat state. We model this movement as an asymmetric growth of the midrib, which directs an inhomogeneous growth of the lamina, and we suggest how the transition from the folded state to the flat state is mechanically organized.

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570 Biowissenschaften, Biologie

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ISO 690DERR, Julien, Renaud BASTIEN, Étienne COUTURIER, Stéphane DOUADY, 2018. Fluttering of growing leaves as a way to reach flatness : experimental evidence on Persea americana. In: Interface : Journal of the Royal Society. 2018, 15(138), 20170595. ISSN 1742-5689. eISSN 1742-5662. Available under: doi: 10.1098/rsif.2017.0595
BibTex
@article{Derr2018-01Flutt-41500,
  year={2018},
  doi={10.1098/rsif.2017.0595},
  title={Fluttering of growing leaves as a way to reach flatness : experimental evidence on Persea americana},
  number={138},
  volume={15},
  issn={1742-5689},
  journal={Interface : Journal of the Royal Society},
  author={Derr, Julien and Bastien, Renaud and Couturier, Étienne and Douady, Stéphane},
  note={Article Number: 20170595}
}
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    <dcterms:abstract xml:lang="eng">Simple leaves show unexpected growth motions: the midrib of the leaves swings periodically in association with buckling events of the leaf blade, giving the impression that the leaves are fluttering. The quantitative kinematic analysis of this motion provides information about the respective growth between the main vein and the lamina. Our three-dimensional reconstruction of an avocado tree leaf shows that the conductor of the motion is the midrib, presenting continuous oscillations and inducing buckling events on the blade. The variations in the folding angle of the leaf show that the lamina is not passive: it responds to the deformation induced by the connection to the midrib to reach a globally flat state. We model this movement as an asymmetric growth of the midrib, which directs an inhomogeneous growth of the lamina, and we suggest how the transition from the folded state to the flat state is mechanically organized.</dcterms:abstract>
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