International audienceIn order to progress in the understanding of mechanical stress generation, the mesoporosity of the cell wall and its changes during maturation of poplar (Populus deltoides x P. nigra) tension wood (TW) and opposite wood (OW) were measured by nitrogen adsorption–desorption. Variations in the thickness of the gelatinous layer (G-layer) were also measured to clarify whether the mesoporosity change simultaneously with the deposition of the G-layer in TW. Results show that mesoporous structures of TW and OW were very similar in early development stages before the deposition of G-layers. With the formation of the S2 layer in OW and the G-layer in TW, the mesopore volume decreased steeply before lignification. However, in TW ...
Le comportement du bois de tension aux niveaux microscopique et macroscopique a été observé et compa...
Les arbres sont des organismes de grande longévité qui se développent dans un environnement variable...
International audienceA key element of the biomechanical design of trees is their ability to generat...
International audienceIn order to progress in the understanding of mechanical stress generation, the...
International audienceTrees can control their shape and resist gravity thanks to their ability to pr...
International audienceThe mechanism for tree orientation in angiosperms is based on the production o...
Thèse réalisée en partie dans le cadre de l'ANR "Stress in Trees" (ANR-12- BS09-0004)Trees are long-...
International audienceTension wood is widespread in organs of woody plants. During its formation, it...
International audienceTo recover verticality after disturbance, angiosperm trees produce " tension w...
International audienceTrees control their posture by generating asymmetric mechanical stress around ...
Trees can control their shape and resist gravity thanks to their ability to produce wood under tensi...
Tension wood is widespread in the organs of woody plants. During its formation, it generates a large...
The mechanism of active stress generation in tension wood is still not fully understood. To characte...
Les arbres sont capables de contrôler leur forme et de résister à la gravité grâce à leur aptitude à...
International audienceTrees generate mechanical stresses at periphery of stem and branches to improv...
Le comportement du bois de tension aux niveaux microscopique et macroscopique a été observé et compa...
Les arbres sont des organismes de grande longévité qui se développent dans un environnement variable...
International audienceA key element of the biomechanical design of trees is their ability to generat...
International audienceIn order to progress in the understanding of mechanical stress generation, the...
International audienceTrees can control their shape and resist gravity thanks to their ability to pr...
International audienceThe mechanism for tree orientation in angiosperms is based on the production o...
Thèse réalisée en partie dans le cadre de l'ANR "Stress in Trees" (ANR-12- BS09-0004)Trees are long-...
International audienceTension wood is widespread in organs of woody plants. During its formation, it...
International audienceTo recover verticality after disturbance, angiosperm trees produce " tension w...
International audienceTrees control their posture by generating asymmetric mechanical stress around ...
Trees can control their shape and resist gravity thanks to their ability to produce wood under tensi...
Tension wood is widespread in the organs of woody plants. During its formation, it generates a large...
The mechanism of active stress generation in tension wood is still not fully understood. To characte...
Les arbres sont capables de contrôler leur forme et de résister à la gravité grâce à leur aptitude à...
International audienceTrees generate mechanical stresses at periphery of stem and branches to improv...
Le comportement du bois de tension aux niveaux microscopique et macroscopique a été observé et compa...
Les arbres sont des organismes de grande longévité qui se développent dans un environnement variable...
International audienceA key element of the biomechanical design of trees is their ability to generat...