Plants sense their environment by producing electrical signals which in essence represent changes in underlying physiological processes. These electrical signals, when monitored, show both stochastic and deterministic dynamics. In this paper, we compute 11 statistical features from the raw non-stationary plant electrical signal time series to classify the stimulus applied (causing the electrical signal). By using different discriminant analysis-based classification techniques, we successfully establish that there is enough information in the raw electrical signal to classify the stimuli. In the process, we also propose two standard features which consistently give good classification results for three types of stimuli—sodium chloride (NaCl)...
Living organisms have evolved complex signaling networks to drive appropriate physiological processe...
This paper demonstrates the oscillatory characteristics of electrical signals acquired from two orna...
Plants have developed complex systems of perception and signaling to adapt to changing environmental...
Plants monitor their surrounding environment and control their physiological functions by producing ...
Plants monitor their surrounding environment and control their physiological functions by producing ...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Plants have sensing mechanisms which are employed to monitor their environment for optimal growth. T...
In order to exploit plants as environmental biosensors, previous researches have been focused on the...
In order to exploit plants as environmental biosensors, previous researches have been focused on the...
In order to exploit plants as environmental biosensors, previous researches have been focused on the...
The electrical signaling system in plants represents the most efficient means for rapidly transmitti...
(1) Background: Plant electrical signals are important physiological traits which reflect plant phys...
(1) Background: Plant electrical signals are important physiological traits which reflect plant phys...
The electrical activity of tomato plants subjected to fruit herbivory was investigated. The study ai...
Electrical signals are generated and transmitted through plants in response to stimuli caused by ext...
Living organisms have evolved complex signaling networks to drive appropriate physiological processe...
This paper demonstrates the oscillatory characteristics of electrical signals acquired from two orna...
Plants have developed complex systems of perception and signaling to adapt to changing environmental...
Plants monitor their surrounding environment and control their physiological functions by producing ...
Plants monitor their surrounding environment and control their physiological functions by producing ...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
Plants have sensing mechanisms which are employed to monitor their environment for optimal growth. T...
In order to exploit plants as environmental biosensors, previous researches have been focused on the...
In order to exploit plants as environmental biosensors, previous researches have been focused on the...
In order to exploit plants as environmental biosensors, previous researches have been focused on the...
The electrical signaling system in plants represents the most efficient means for rapidly transmitti...
(1) Background: Plant electrical signals are important physiological traits which reflect plant phys...
(1) Background: Plant electrical signals are important physiological traits which reflect plant phys...
The electrical activity of tomato plants subjected to fruit herbivory was investigated. The study ai...
Electrical signals are generated and transmitted through plants in response to stimuli caused by ext...
Living organisms have evolved complex signaling networks to drive appropriate physiological processe...
This paper demonstrates the oscillatory characteristics of electrical signals acquired from two orna...
Plants have developed complex systems of perception and signaling to adapt to changing environmental...