Plants are able to sense and respond to a myriad of external stimuli, using different signal transduction pathways, including electrical signaling. The ability to monitor plant responses is essential not only for fundamental plant science, but also to gain knowledge on how to interface plants with technology. Still, the field of plant electrophysiology remains rather unexplored when compared to its animal counterpart. Indeed, most studies continue to rely on invasive techniques or on bulky inorganic electrodes that oftentimes are not ideal for stable integration with plant tissues. On the other hand, few studies have proposed novel approaches to monitor plant signals, based on non-invasive conformable electrodes or even organic transistors....
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Living organisms have evolved complex signaling networks to drive appropriate physiological processe...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
The electrical signals in plant's physiological processes are of great interest in biology, biohybri...
Abstract Plant electrostimulation is a very efficient method for evaluation of biologically closed e...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Plants have sensing mechanisms which are employed to monitor their environment for optimal growth. T...
For a long time, electrical signaling was neglected at the expense of signaling studies in plants be...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Living organisms have evolved complex signaling networks to drive appropriate physiological processe...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Plants are able to sense and respond to a myriad of external stimuli, using different signal transdu...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
Electrical signals in plants are mediators of long-distance signaling and correlate with plant movem...
The electrical signals in plant's physiological processes are of great interest in biology, biohybri...
Abstract Plant electrostimulation is a very efficient method for evaluation of biologically closed e...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Plants have sensing mechanisms which are employed to monitor their environment for optimal growth. T...
For a long time, electrical signaling was neglected at the expense of signaling studies in plants be...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
We provide here a detailed protocol for studying the changes in electrical surface potential of leav...
Living organisms have evolved complex signaling networks to drive appropriate physiological processe...