International audienceMany climbing plants have microspines on their stems, which facilitate attachment and prevent slipping and falling from host plant supports. Extending via growth through complex environments and anchoring stems to substrates with minimal contact forces are key benefits for climbing plants. Microspines are also highly desirable features for new technologies and applications in soft robotics. Using a novel sled-like device, we investigated static and sliding attachment forces generated by stems in 10 species of tropical climber from French Guiana differing in size and climbing habit. Eight species showed higher static and sliding forces when their stems were pulled in the basal direction against a standard surface than i...
Mechanical architectures of a wide range of climbing plants are reviewed from a wide phylogenetic ra...
Climbing plants have evolved over millions of years and have adapted to unpredictable scenarios in u...
International audienceTropical vines and lianas have evolved mechanisms to avoid mechanical damage d...
International audienceMany climbing plants have microspines on their stems, which facilitate attachm...
International audienceClimbing plants need to reach supports and position their leaves for light cap...
International audienceClimbing plants need to reach supports and position their leaves for light cap...
Climbing plants need to reach supports and position their leaves for light capture. Vines and lianas...
International audienceClimbing plants are being increasingly viewed as models for bioinspired growin...
Data supporting article describing mechanical and structural organisation of a climin g plant trelli...
Climbing plants can be extremely adaptable to diverse habitats and capable of colonizing perturbed, ...
Applications in remote inspection and medicine have motivated the recent development of innovative t...
Although plants are essentially sessile in nature, these organisms are very much in tune with their ...
International audienceClimbing plants can be extremely adaptable to diverse habitats and capable of ...
Mechanical architectures of a wide range of climbing plants are reviewed from a wide phylogenetic ra...
Climbing plants have evolved over millions of years and have adapted to unpredictable scenarios in u...
International audienceTropical vines and lianas have evolved mechanisms to avoid mechanical damage d...
International audienceMany climbing plants have microspines on their stems, which facilitate attachm...
International audienceClimbing plants need to reach supports and position their leaves for light cap...
International audienceClimbing plants need to reach supports and position their leaves for light cap...
Climbing plants need to reach supports and position their leaves for light capture. Vines and lianas...
International audienceClimbing plants are being increasingly viewed as models for bioinspired growin...
Data supporting article describing mechanical and structural organisation of a climin g plant trelli...
Climbing plants can be extremely adaptable to diverse habitats and capable of colonizing perturbed, ...
Applications in remote inspection and medicine have motivated the recent development of innovative t...
Although plants are essentially sessile in nature, these organisms are very much in tune with their ...
International audienceClimbing plants can be extremely adaptable to diverse habitats and capable of ...
Mechanical architectures of a wide range of climbing plants are reviewed from a wide phylogenetic ra...
Climbing plants have evolved over millions of years and have adapted to unpredictable scenarios in u...
International audienceTropical vines and lianas have evolved mechanisms to avoid mechanical damage d...