The interaction of plants with their environment is very dynamic. Studying the underlying processes is important for understanding and modeling plant response to changing environmental conditions. Photosynthesis varies largely between different plants and at different locations within a canopy of a single plant. Thus, continuous and spatially distributed monitoring is necessary to assess the dynamic response of photosynthesis to the environment. Limited scale of observation with portable instrumentation makes it difficult to examine large numbers of plants under different environmental conditions. We report here on the application of a recently developed technique, laser-induced fluorescence transient (LIFT), for continuous remote measureme...
The prototype light-induced fluorescence transient (LIFT) instrument provides continuous, minimally ...
Optimizing artificial lighting control in industrial scale greenhouses has a potential for increased...
The prototype light-induced fluorescence transient (LIFT) instrument provides continuous, minimally ...
We have developed a laser induced fluorescence transient (LIFT) technique and instrumentation to rem...
Chlorophyll fluorescence measurements have been widely applied to quantify the photosynthetic effici...
The photosynthesis of various species or even a single plant varies dramatically in time and space, ...
method was developed to measure photosynthetic properties in terrestrial plants. In the LIFT method,...
Understanding the net photosynthesis of plant canopies requires quantifying photosynthesis in challe...
The laser-induced fluorescence transient (LIFT) method is a non-invasive remote sensing technique fo...
Determining the spatial and temporal diversity of photosynthetic processes in forest canopies presen...
The laser-induced fluorescence transient (LIFT) method is a non-invasive remote sensing technique fo...
Determining the spatial and temporal diversity of photosynthetic processes in forest canopies presen...
In November 1989 the EUREKA project LASFLEUR (EU 380) started as an European research effort to inve...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
The prototype light-induced fluorescence transient (LIFT) instrument provides continuous, minimally ...
Optimizing artificial lighting control in industrial scale greenhouses has a potential for increased...
The prototype light-induced fluorescence transient (LIFT) instrument provides continuous, minimally ...
We have developed a laser induced fluorescence transient (LIFT) technique and instrumentation to rem...
Chlorophyll fluorescence measurements have been widely applied to quantify the photosynthetic effici...
The photosynthesis of various species or even a single plant varies dramatically in time and space, ...
method was developed to measure photosynthetic properties in terrestrial plants. In the LIFT method,...
Understanding the net photosynthesis of plant canopies requires quantifying photosynthesis in challe...
The laser-induced fluorescence transient (LIFT) method is a non-invasive remote sensing technique fo...
Determining the spatial and temporal diversity of photosynthetic processes in forest canopies presen...
The laser-induced fluorescence transient (LIFT) method is a non-invasive remote sensing technique fo...
Determining the spatial and temporal diversity of photosynthetic processes in forest canopies presen...
In November 1989 the EUREKA project LASFLEUR (EU 380) started as an European research effort to inve...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
Remote estimation of Sun-induced chlorophyll fluorescence emitted by terrestrial vegetation can prov...
The prototype light-induced fluorescence transient (LIFT) instrument provides continuous, minimally ...
Optimizing artificial lighting control in industrial scale greenhouses has a potential for increased...
The prototype light-induced fluorescence transient (LIFT) instrument provides continuous, minimally ...