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Methods, ISSN 1046-2023, 02/2017, Volume 115, pp. 80 - 90
We present TrackMate, an open source Fiji plugin for the automated, semi-automated, and manual tracking of single-particles. It offers a versatile and modular... 
Phototoxicity | Open-source software | Image analysis | Single-particle tracking | Microscopy | Clathin-mediated endocytosis | SYSTEM | CLATHRIN-MEDIATED ENDOCYTOSIS | TPLATE | BIOCHEMISTRY & MOLECULAR BIOLOGY | BIOCHEMICAL RESEARCH METHODS | TRANSPORT | DYNAMICS | ARABIDOPSIS | CELL | EMBRYOGENESIS | Image Processing, Computer-Assisted - statistics & numerical data | Plant Cells - metabolism | Adaptor Proteins, Vesicular Transport - genetics | Cell Tracking - methods | Embryo, Nonmammalian - metabolism | Arabidopsis - ultrastructure | Clathrin - genetics | Adaptor Proteins, Vesicular Transport - metabolism | Fibroblasts - ultrastructure | Cell Tracking - statistics & numerical data | Clathrin - metabolism | Arabidopsis - metabolism | Caenorhabditis elegans | Endocytosis | Algorithms | Animals | Light Signal Transduction | Single-Cell Analysis - statistics & numerical data | Single-Cell Analysis - methods | Embryo, Nonmammalian - ultrastructure | Plant Cells - ultrastructure | Gene Expression Regulation, Plant | Software | Fibroblasts - metabolism | Index Medicus | Single-Cell Analysis/methods | Arabidopsis/metabolism | Embryo, Nonmammalian/ultrastructure | Cellular Biology | Life Sciences | Clathrin/genetics | Fibroblasts/metabolism | Cell Tracking/methods | Plant Cells/metabolism | Cell Tracking/statistics & numerical data | Arabidopsis/ultrastructure | Image Processing, Computer-Assisted/statistics & numerical data | Embryo, Nonmammalian/metabolism | Adaptor Proteins, Vesicular Transport/genetics | Clathrin/metabolism | Plant Cells/ultrastructure | Single-Cell Analysis/statistics & numerical data | Fibroblasts/ultrastructure | Adaptor Proteins, Vesicular Transport/metabolism
Journal Article
Annals of Botany, ISSN 0305-7364, 10/2013, Volume 112, Issue 6, pp. 1003 - 1014
• Background and Aims Condensed tannins (also called proanthocyanidins) are widespread polymers of catechins and are essential for the defence mechanisms of... 
Tannins | Chloroplasts | Polymerization | Thylakoids | Plants | Vascular plants | Diameters | Vacuoles | Chlorophylls | Plant cells | polymerization | tonoplast | proanthocyanidins | vascular plants | chloroplast | vacuole | organelle | condensed tannins | Tannosome | Tracheophyta | LOCALIZATION | UV-B RADIATION | LEAVES | PROANTHOCYANIDIN BIOSYNTHESIS | PHENOLIC-STORING CELLS | PLANT SCIENCES | CHALCONE SYNTHASE | ULTRASTRUCTURE | GRAPE BERRY DEVELOPMENT | ENDOPLASMIC-RETICULUM | ARABIDOPSIS | Organelles - chemistry | Tracheophyta - chemistry | Vacuoles - ultrastructure | Vitis - chemistry | Chloroplasts - chemistry | Chromatography, High Pressure Liquid | Vitis - ultrastructure | Proanthocyanidins - chemistry | Ebenaceae - chemistry | Organelles - ultrastructure | Vacuoles - chemistry | Ebenaceae - ultrastructure | Cell Membrane - metabolism | Catechin - metabolism | Fruit - ultrastructure | Fruit - metabolism | Plant Leaves - chemistry | Microscopy, Electron, Transmission | Chloroplasts - ultrastructure | Fruit - chemistry | Proanthocyanidins - metabolism | Ginkgo biloba - metabolism | Ginkgo biloba - ultrastructure | Cell Membrane - ultrastructure | Ginkgo biloba - chemistry | Chlorophyll - metabolism | Tracheophyta - metabolism | Chloroplasts - metabolism | Ebenaceae - metabolism | Microscopy, Confocal | Animals | Plant Leaves - metabolism | Models, Biological | Vacuoles - metabolism | Tracheophyta - ultrastructure | Vitis - metabolism | Organelles - metabolism | Plant Leaves - ultrastructure | Proanthocyanidins - isolation & purification | Index Medicus | Life Sciences | Vegetal Biology | 24 | 1 | 2013 | 8 | Original | 10
Journal Article
The Plant Cell, ISSN 1040-4651, 12/2011, Volume 23, Issue 12, pp. 4428 - 4445
Since the first ultrastructural investigations of sieve tubes in the early 1960s, their structure has been a matter of debate. Because sieve tube structure... 
Mitochondria | Phloem | Sieve tubes | Sieve elements | Plant roots | Sieve plates | Plants | Plastids | Organelles | Plant cells | TUBE | BIOCHEMISTRY & MOLECULAR BIOLOGY | MICROSCOPY | SUGAR | PLANT SCIENCES | CELL BIOLOGY | P-PROTEIN | TRANSPORT | VICIA-FABA | ARABIDOPSIS | MONOCLONAL-ANTIBODIES | PLANT-TISSUE CULTURES | CUCURBITA | Phloem - ultrastructure | Plants, Genetically Modified - growth & development | Arabidopsis - growth & development | Genes, Plant | Fluorescent Dyes - metabolism | Plant Roots - genetics | Phloem - metabolism | Populus - metabolism | Cloning, Molecular | Plant Proteins - metabolism | Plant Physiological Phenomena | Plant Roots - growth & development | Transformation, Genetic | Microscopy, Electron, Transmission | Plant Cells - metabolism | Plant Roots - metabolism | Plants, Genetically Modified - genetics | Tobacco - metabolism | Genetic Vectors - metabolism | Tobacco - growth & development | Pressure | Genetic Vectors - genetics | Arabidopsis - metabolism | Protein Transport | Arabidopsis - genetics | Plant Proteins - genetics | Plants, Genetically Modified - metabolism | Image Processing, Computer-Assisted | Populus - growth & development | Mutagenesis, Insertional | Phloem - growth & development | Freeze Substitution | Translocation (Genetics) | Plant genetics | Physiological aspects | Genetic aspects | Research | Index Medicus
Journal Article
Journal Article
Journal Article
The Plant Cell, ISSN 1040-4651, 10/2013, Volume 25, Issue 10, pp. 4195 - 4208
Journal Article
eLife, ISSN 2050-084X, 05/2015, Volume 4, Issue MAY, pp. 1 - 20
Morphogenesis emerges from complex multiscale interactions between genetic and mechanical processes. To understand these processes, the evolution of cell... 
LEAF SHAPE | ARABIDOPSIS-THALIANA | MODELING FRAMEWORK | COMPUTATIONAL MORPHODYNAMICS | BIOLOGY | SHOOT APICAL MERISTEM | PLANT DEVELOPMENT | SURFACE GROWTH | CELL-GROWTH | VEGETATIVE SHOOT | QUANTITATIVE-ANALYSIS | Image Processing, Computer-Assisted - statistics & numerical data | Cell Proliferation | Arabidopsis - growth & development | Cassia - genetics | Imaging, Three-Dimensional - methods | Flowers - ultrastructure | Drosophila melanogaster - genetics | Plant Development - genetics | Lycopersicon esculentum - growth & development | Time-Lapse Imaging - instrumentation | Cell Shape | Imaging, Three-Dimensional - instrumentation | Microtubules - ultrastructure | Lycopersicon esculentum - genetics | Time-Lapse Imaging - methods | Fruit - ultrastructure | Fruit - genetics | Gene Expression | Morphogenesis - genetics | Arabidopsis - ultrastructure | Cassia - growth & development | Drosophila melanogaster - ultrastructure | Image Processing, Computer-Assisted - methods | Lycopersicon esculentum - ultrastructure | Flowers - growth & development | Arabidopsis - genetics | Fruit - growth & development | Microscopy, Confocal | Algorithms | Animals | Time-Lapse Imaging - statistics & numerical data | Anisotropy | Cassia - ultrastructure | Imaging, Three-Dimensional - statistics & numerical data | Microtubules - genetics | Drosophila melanogaster - growth & development | Software | Flowers - genetics | Library collections | Segmentation | Image processing | Cell division | Gene expression | Open source software | Computer programs | Morphogenesis | Proteins | Ostomy | Cell size | Plant sciences | Methods | Index Medicus
Journal Article
Journal Article
Nature Chemical Biology, ISSN 1552-4450, 06/2012, Volume 8, Issue 6, pp. 583 - 589
Journal Article
The Plant Journal, ISSN 0960-7412, 06/2013, Volume 74, Issue 6, pp. 1045 - 1058
Journal Article