We present here a correlative X-ray microscopy approach for quantitative single cell imaging of molar concentrations. By combining the elemental content provided by X-ray fluorescence microscopy and the morphology information extracted from X-ray phase nanotomography, we determine the intracellular molarity distributions. This correlative method was demonstrated on a freeze-dried human phagocytic cell to obtain the absolute elemental concentration maps of K, P, and Fe. The cell morphology results showed a very good agreement with atomic-force microscopy measurements. This work opens the way for non-destructive single cell chemical analysis down to the sub-cellular level using exclusively synchrotron radiation techniques. It will be of high ...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We present here a correlative X-ray microscopy approach for quantitative single cell imaging of mola...
We present here a correlative X-ray microscopy approach for quantitative single cell imaging of mola...
We present here a correlative X-ray microscopy approach for quantitative single cell imaging of mola...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
Hard X-ray fluorescence microscopy and magnified phase contrast imaging are combined to obtain quant...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We present here a correlative X-ray microscopy approach for quantitative single cell imaging of mola...
We present here a correlative X-ray microscopy approach for quantitative single cell imaging of mola...
We present here a correlative X-ray microscopy approach for quantitative single cell imaging of mola...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
International audienceHard X-ray fluorescence microscopy and magnified phase contrast imaging are co...
Hard X-ray fluorescence microscopy and magnified phase contrast imaging are combined to obtain quant...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...
We report a novel experimental approach to derive quantitative concentration map of light elements i...