Three-dimensional tissular morphology and two-dimensional cellular characteristics for the snapping mechanism of the Venus flytrap
Author:
Affiliation:
1. Osaka University,Graduate School of Engineering,Osaka,Japan
Funder
School of Medicine
Osaka University
Publisher
IEEE
Link
http://xplorestaging.ieee.org/ielx8/10639541/10639542/10639890.pdf?arnumber=10639890
Reference15 articles.
1. Stretch-activated ion channels identified in the touch-sensitive structures of carnivorous Droseraceae plants
2. A unique inventory of ion transporters poises the Venus flytrap to fast-propagating action potentials and calcium waves
3. Calcium dynamics during trap closure visualized in transgenic Venus flytrap
4. DYSCALCULIA, a Venus flytrap mutant without the ability to count action potentials
5. The Venus Flytrap Dionaea muscipula Counts Prey-Induced Action Potentials to Induce Sodium Uptake
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