Estimating leaf area index (LAI) of Vitis vinifera using indirect methods involves some critical issues, related to its discontinuous and non-homogeneous canopy. This study evaluates the smart app PocketLAI and hemispherical photography in vineyards against destructive LAI measurements. Data were collected during six surveys in an experimental site characterized by a high level of heterogeneity among plants, allowing us to explore a wide range of LAI values. During the last survey, the possibility to combine remote sensing data and in-situ PocketLAI estimates (smart scouting) was evaluated. Results showed a good agreement between PocketLAI data and direct measurements, especially for LAI ranging from 0.13 to 1.41 (R2 = 0.94, RRMSE = 17.27%)...
Leaf area index (LAI) is a crucial variable in agronomic and environmental studies, because of its i...
10 Pags.- 2 Tabls.- 11 Figs.Leaf Area Index (LAI) retrieval performances from gap fraction measureme...
Leaf area index (LAI) is a key biophysical parameter used to determine foliage cover and crop growth...
Estimating leaf area index (LAI) of Vitis vinifera using indirect methods involves some critical iss...
The Leaf Area Index (LAI) measure in vineyard involves some critical issues, due to its non-homogene...
Leaf area index (LAI) is a critical vegetation variable that regulates photosynthesis, respiration, ...
Estimation of grapevine vigour using mobile proximal sensors can provide an indirect method for dete...
Aim: To evaluate the PocketLAI\uae smart app for estimating leaf area index (LAI) in woody canopies....
The indirect estimation of leaf area index (LAI) in large spatial scales is crucial for several envi...
The leaf area index (LAI), a valuable variable for assessing vine vigor, reflects nutrient concentra...
Leaf area index (LAI) and plant area index (PAI) are common and important biophysical parameters use...
Accurate ground-based measurements of leaf area index (LAI) are needed for validation of remote sens...
Background and Aims: Monitoring of canopy vigour is an important tool in vineyard management to obta...
Leaf area index (LAI) is a key biophysical parameter used to determine foliage cover and crop growth...
The possibility of adopting the technology implemented in low-costs devices for the monitoring of bi...
Leaf area index (LAI) is a crucial variable in agronomic and environmental studies, because of its i...
10 Pags.- 2 Tabls.- 11 Figs.Leaf Area Index (LAI) retrieval performances from gap fraction measureme...
Leaf area index (LAI) is a key biophysical parameter used to determine foliage cover and crop growth...
Estimating leaf area index (LAI) of Vitis vinifera using indirect methods involves some critical iss...
The Leaf Area Index (LAI) measure in vineyard involves some critical issues, due to its non-homogene...
Leaf area index (LAI) is a critical vegetation variable that regulates photosynthesis, respiration, ...
Estimation of grapevine vigour using mobile proximal sensors can provide an indirect method for dete...
Aim: To evaluate the PocketLAI\uae smart app for estimating leaf area index (LAI) in woody canopies....
The indirect estimation of leaf area index (LAI) in large spatial scales is crucial for several envi...
The leaf area index (LAI), a valuable variable for assessing vine vigor, reflects nutrient concentra...
Leaf area index (LAI) and plant area index (PAI) are common and important biophysical parameters use...
Accurate ground-based measurements of leaf area index (LAI) are needed for validation of remote sens...
Background and Aims: Monitoring of canopy vigour is an important tool in vineyard management to obta...
Leaf area index (LAI) is a key biophysical parameter used to determine foliage cover and crop growth...
The possibility of adopting the technology implemented in low-costs devices for the monitoring of bi...
Leaf area index (LAI) is a crucial variable in agronomic and environmental studies, because of its i...
10 Pags.- 2 Tabls.- 11 Figs.Leaf Area Index (LAI) retrieval performances from gap fraction measureme...
Leaf area index (LAI) is a key biophysical parameter used to determine foliage cover and crop growth...