The ability to locate and quantify elemental distributions in plants is crucial to understanding plant metabolisms, the mechanisms of uptake and transport of minerals and how plants cope with toxic elements or elemental deficiencies. High-resolution secondary ion mass spectrometry (SIMS) is emerging as an important technique for the analysis of biological material at the subcellular scale. This article reviews recent work using the CAMECA NanoSIMS to determine elemental distributions in plants. The NanoSIMS is able to map elemental distributions at high resolution, down to 50 nm, and can detect very low concentrations (milligrams per kilogram) for some elements. It is also capable of mapping almost all elements in the periodic table (from h...
International audienceCesium as an alkali element exhibits a chemical reactivity similar to that of ...
Certain plants known as 'metal hyperaccumulators' can accumulate exceptional concentrations of eleme...
The NanoSIMS 50 combines unprecedented spatial resolution (as good as 50 nm) with ultra-high sensiti...
Revealing the uptake, transport, localization and speciation of both essential and toxic elements in...
International audienceChemical bioimaging offers an important contribution to the investigation of b...
cited By 41International audienceSynchrotron techniques have become key components of the toolbox fo...
To maintain cellular homeostasis, concentrations, chemical speciation, and localization of mineral n...
Particle induced x-ray emission (PIXE) is a very sensitive technique that can quickly and reliably m...
Understanding the distribution of elements in plants is important for researchers across a broad ran...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
PIXE is a very sensitive technique that can fast and reliably measure a wide range of elements simul...
Energy-dispersive X-ray microanalysis (EDX) is a technique for determining the distribution of eleme...
Micro-PIXE and inductively coupled plasma mass spectrometry (ICP-MS) were applied to elemental distr...
Hybanthus floribundus subsp. floribundus, a rare Australian Ni-hyperaccumulating shrub and Pityrogra...
International audienceCesium as an alkali element exhibits a chemical reactivity similar to that of ...
Certain plants known as 'metal hyperaccumulators' can accumulate exceptional concentrations of eleme...
The NanoSIMS 50 combines unprecedented spatial resolution (as good as 50 nm) with ultra-high sensiti...
Revealing the uptake, transport, localization and speciation of both essential and toxic elements in...
International audienceChemical bioimaging offers an important contribution to the investigation of b...
cited By 41International audienceSynchrotron techniques have become key components of the toolbox fo...
To maintain cellular homeostasis, concentrations, chemical speciation, and localization of mineral n...
Particle induced x-ray emission (PIXE) is a very sensitive technique that can quickly and reliably m...
Understanding the distribution of elements in plants is important for researchers across a broad ran...
This is an author's peer-reviewed final manuscript, as accepted by the publisher. The published arti...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
PIXE is a very sensitive technique that can fast and reliably measure a wide range of elements simul...
Energy-dispersive X-ray microanalysis (EDX) is a technique for determining the distribution of eleme...
Micro-PIXE and inductively coupled plasma mass spectrometry (ICP-MS) were applied to elemental distr...
Hybanthus floribundus subsp. floribundus, a rare Australian Ni-hyperaccumulating shrub and Pityrogra...
International audienceCesium as an alkali element exhibits a chemical reactivity similar to that of ...
Certain plants known as 'metal hyperaccumulators' can accumulate exceptional concentrations of eleme...
The NanoSIMS 50 combines unprecedented spatial resolution (as good as 50 nm) with ultra-high sensiti...