Root distribution in the soil determines plants’ nutrient and water uptake capacity. Therefore, root distribution is one of the most important factors in crop production. The trench profile method is used to observe the root distribution underground by making a rectangular hole close to the crop, providing informative images of the root distribution compared to other root phenotyping methods. However, much effort is required to segment the root area for quantification. In this study, we present a promising approach employing a convolutional neural network for root segmentation in trench profile images. We defined two parameters, Depth50 and Width50, representing the vertical and horizontal centroid of root distribution, respectively. Quanti...
Aims: Root branching is a fundamental phenotypic property of a root system. In this paper we present...
Root length density (RLD), a key factor for water and nutrient uptake, varies as a function of space...
Major increases in crop yield are required to keep pace with population growth and climate change. I...
Abstract High-throughput root phenotyping in the soil became an indispensable quantitative tool for ...
Background Identification and characterization of new traits with sound physiological foundation is ...
Root systems of crops play a significant role in agroecosystems. The root system is essential for wa...
Background: The root system plays a major role in plant growth and development and root system archi...
Root systems of crops play a significant role in agro-ecosystems. The root system is essential for w...
We developed the PHIV-RootCell software to quantify anatomical traits of rice roots transverse secti...
Quantitative study of root morphological characteristics of plants is helpful for understanding the ...
International audienceBackground: Deep learning methods have outperformed previous techniques in mos...
Recent progress in root phenotyping has focused mainly on increasing throughput for genetic studies ...
Plant root systems and associated symbiotic organisms act as critical links between the growing shoo...
Aims: Root branching is a fundamental phenotypic property of a root system. In this paper we present...
Root length density (RLD), a key factor for water and nutrient uptake, varies as a function of space...
Major increases in crop yield are required to keep pace with population growth and climate change. I...
Abstract High-throughput root phenotyping in the soil became an indispensable quantitative tool for ...
Background Identification and characterization of new traits with sound physiological foundation is ...
Root systems of crops play a significant role in agroecosystems. The root system is essential for wa...
Background: The root system plays a major role in plant growth and development and root system archi...
Root systems of crops play a significant role in agro-ecosystems. The root system is essential for w...
We developed the PHIV-RootCell software to quantify anatomical traits of rice roots transverse secti...
Quantitative study of root morphological characteristics of plants is helpful for understanding the ...
International audienceBackground: Deep learning methods have outperformed previous techniques in mos...
Recent progress in root phenotyping has focused mainly on increasing throughput for genetic studies ...
Plant root systems and associated symbiotic organisms act as critical links between the growing shoo...
Aims: Root branching is a fundamental phenotypic property of a root system. In this paper we present...
Root length density (RLD), a key factor for water and nutrient uptake, varies as a function of space...
Major increases in crop yield are required to keep pace with population growth and climate change. I...