Roots navigate through soil integrating environmental signals to orient their growth. The Arabidopsis root is a widely used model for developmental, physiological and cell biological studies. Live imaging greatly aids these efforts, but the horizontal sample position and continuous root tip displacement present significant difficulties. Here, we develop a confocal microscope setup for vertical sample mounting and integrated directional illumination. We present TipTracker – a custom software for automatic tracking of diverse moving objects usable on various microscope setups. Combined, this enables observation of root tips growing along the natural gravity vector over prolonged periods of time, as well as the ability to induce rapid gravity ...
Plant organ phenotyping by non-invasive video imaging techniques provides a powerful tool to assess ...
To understand dynamic developmental processes, living tissues have to be imaged frequently and for e...
Background: The ability to quantify the geometry of plant organs at the cellular scale can provide ...
Roots navigate through soil integrating environmental signals to orient their growth. The Arabidopsi...
International audiencePlants ability to orient their growth with respect to external stimuli such as...
Better understanding of root traits such as root angle and root gravitropism will be crucial for dev...
Live imaging of above ground meristems can lead to new insights in plant development not possible fr...
In the interest of understanding the development of a multicellular organism, subcellular events mus...
Root growth is a highly dynamic process influenced by genetic background and environment. This paper...
Quantitative optical measurements at the micron scale have been crucial to the study of multiple bio...
The analysis of dynamic cellular processes such as plant cytokinesis stands and falls with live-cell...
Recent advances in confocal microscopy, coupled with the development of numerous fluorescent reporte...
<p>A. Projection image from OPT scan of <i>Nicotiana benthamiana</i> roots. Scale bar represents 1 m...
Abstract The ability of plants to sense and orient their root growth towards gravity is studied in m...
Differential growth processes in root and shoot growth zones are governed by the transport kinetics ...
Plant organ phenotyping by non-invasive video imaging techniques provides a powerful tool to assess ...
To understand dynamic developmental processes, living tissues have to be imaged frequently and for e...
Background: The ability to quantify the geometry of plant organs at the cellular scale can provide ...
Roots navigate through soil integrating environmental signals to orient their growth. The Arabidopsi...
International audiencePlants ability to orient their growth with respect to external stimuli such as...
Better understanding of root traits such as root angle and root gravitropism will be crucial for dev...
Live imaging of above ground meristems can lead to new insights in plant development not possible fr...
In the interest of understanding the development of a multicellular organism, subcellular events mus...
Root growth is a highly dynamic process influenced by genetic background and environment. This paper...
Quantitative optical measurements at the micron scale have been crucial to the study of multiple bio...
The analysis of dynamic cellular processes such as plant cytokinesis stands and falls with live-cell...
Recent advances in confocal microscopy, coupled with the development of numerous fluorescent reporte...
<p>A. Projection image from OPT scan of <i>Nicotiana benthamiana</i> roots. Scale bar represents 1 m...
Abstract The ability of plants to sense and orient their root growth towards gravity is studied in m...
Differential growth processes in root and shoot growth zones are governed by the transport kinetics ...
Plant organ phenotyping by non-invasive video imaging techniques provides a powerful tool to assess ...
To understand dynamic developmental processes, living tissues have to be imaged frequently and for e...
Background: The ability to quantify the geometry of plant organs at the cellular scale can provide ...