Electronic nose technology has recently been applied to the detection of several plant diseases and pests, with promising results. However, in spite of its numerous advantages, including operational simplicity, non-destructivity, and bulk sampling, drawbacks include a low sensitivity and specificity in comparison with microbiological and molecular methods. A critical review of the use of an electronic nose for plant disease diagnosis and pest detection is presented, describing the instrumental and procedural advances of sensorial analysis, for the improvement of discrimination between healthy and infected or infested plants. In conclusion, the use of electronic nose technology is suggested to assist, direct, and optimise traditionally adopt...
Work carried out at the beginning of this century on improvements in semiconductor materials, transd...
ELECTRONIC NOSE AS A RAPID AND INNOVATIVE TOOL FOR THE DIAGNOSIS OF GRAPEVINE CROWN GALL The elect...
Electronic noses can be applied as a rapid, cost-effective option for several applications. This pap...
Electronic nose technology has recently been applied to the detection of several plant diseases and ...
This paper reviews artificial intelligent noses (or electronic noses) as a fast and noninvasive appr...
The electronic-nose instrumentation has advanced rapidly during the past decade, since the need for ...
Infectious plant diseases are caused by pathogenic microorganisms, such as fungi, oomycetes, bacteri...
The volatile organic compounds (VOCs) profile emitted from plants often changes in response to envir...
In this paper, we evaluate the use of an electronic nose (EN) containing 13 conducting polymer gas s...
A rapid and effective identification of fungal species is essential for numerous applications, and e...
The profiles of volatile compounds emitted by plants varies in response to different damage. The pot...
The development of electronic-nose (e-nose) technologies for disease diagnostics was initiated in th...
An electronic nose (E-nose) system equipped with a gas sensor array and real-time control panel was ...
Work carried out at the beginning of this century on improvements in semiconductor materials, transd...
ELECTRONIC NOSE AS A RAPID AND INNOVATIVE TOOL FOR THE DIAGNOSIS OF GRAPEVINE CROWN GALL The elect...
Electronic noses can be applied as a rapid, cost-effective option for several applications. This pap...
Electronic nose technology has recently been applied to the detection of several plant diseases and ...
This paper reviews artificial intelligent noses (or electronic noses) as a fast and noninvasive appr...
The electronic-nose instrumentation has advanced rapidly during the past decade, since the need for ...
Infectious plant diseases are caused by pathogenic microorganisms, such as fungi, oomycetes, bacteri...
The volatile organic compounds (VOCs) profile emitted from plants often changes in response to envir...
In this paper, we evaluate the use of an electronic nose (EN) containing 13 conducting polymer gas s...
A rapid and effective identification of fungal species is essential for numerous applications, and e...
The profiles of volatile compounds emitted by plants varies in response to different damage. The pot...
The development of electronic-nose (e-nose) technologies for disease diagnostics was initiated in th...
An electronic nose (E-nose) system equipped with a gas sensor array and real-time control panel was ...
Work carried out at the beginning of this century on improvements in semiconductor materials, transd...
ELECTRONIC NOSE AS A RAPID AND INNOVATIVE TOOL FOR THE DIAGNOSIS OF GRAPEVINE CROWN GALL The elect...
Electronic noses can be applied as a rapid, cost-effective option for several applications. This pap...