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Volumn 3, Issue 7, 2010, Pages 432-436
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Cell morphology and intracellular ionic homeostasis explored with a multimodal approach combining epifluorescence and digital holographic microscopy
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Author keywords
cell biology; Fluorescence microscopy; Interference microscopy; Optics and photonics
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Indexed keywords
CELL BIOLOGY;
CELL MORPHOLOGY;
CELL PARAMETER;
CELLULAR BODY;
CELLULAR PROBE;
DIGITAL HOLOGRAPHIC MICROSCOPY;
EPIFLUORESCENCES;
EXCITOTOXICITY;
FLUORESCENCE SIGNALS;
IN-CELL;
INTERFERENCE MICROSCOPY;
INTRACELLULAR CALCIUM;
IONIC HOMEOSTASIS;
MULTI-MODAL APPROACH;
MULTI-MODALITY;
NEURONAL DEATH;
BODY FLUIDS;
CYTOLOGY;
FLUORESCENCE MICROSCOPY;
PHASE MEASUREMENT;
REFRACTIVE INDEX;
FLUORESCENCE;
ANILINE DERIVATIVE;
CALCIUM;
FLUO 4;
GLUTAMIC ACID;
ION;
XANTHENE DERIVATIVE;
ANIMAL;
ARTICLE;
BRAIN CORTEX;
CELL CULTURE;
CELL DEATH;
CELL SIZE;
CYTOLOGY;
FLUORESCENCE;
FLUORESCENCE MICROSCOPY;
HOLOGRAPHY;
HOMEOSTASIS;
INSTRUMENTATION;
INTRACELLULAR SPACE;
METABOLISM;
METHODOLOGY;
MOUSE;
NERVE CELL;
PATHOLOGY;
TIME;
ANILINE COMPOUNDS;
ANIMALS;
CALCIUM;
CELL DEATH;
CELL SIZE;
CELLS, CULTURED;
CEREBRAL CORTEX;
FLUORESCENCE;
GLUTAMIC ACID;
HOLOGRAPHY;
HOMEOSTASIS;
INTRACELLULAR SPACE;
IONS;
MICE;
MICROSCOPY, FLUORESCENCE;
NEURONS;
TIME FACTORS;
XANTHENES;
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EID: 77954629222
PISSN: 1864063X
EISSN: 18640648
Source Type: Journal
DOI: 10.1002/jbio.201000018 Document Type: Letter |
Times cited : (94)
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References (20)
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