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Volumn 8, Issue 1, 2006, Pages 25-34
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Electrical and thermal characterization of nanochannels between a cell and a silicon based micro-pore
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Author keywords
Biological cells; Micro Electroporation; Micro pore; Nanochannels
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Indexed keywords
CELLS;
ELECTRIC FIELDS;
ELECTRIC PROPERTIES;
NUMERICAL ANALYSIS;
SILICON;
THERMODYNAMIC PROPERTIES;
FEEDBACK SENSITIVITY;
MICRO-PORE ELECTROPORATION TECHNOLOGY;
NANOCHANNELS;
NANOTECHNOLOGY;
SILICON;
ANIMAL CELL;
ARTICLE;
BIOCHEMISTRY;
BIOMEDICAL TECHNOLOGY ASSESSMENT;
CELL MEMBRANE FLUIDITY;
CELL MEMBRANE PERMEABILITY;
CONTROLLED STUDY;
DOG;
ELECTRIC FIELD;
ELECTROPORATION;
EPITHELIUM CELL;
FEEDBACK SYSTEM;
KIDNEY EPITHELIUM;
MATHEMATICAL ANALYSIS;
NANOTECHNOLOGY;
NONHUMAN;
PRIORITY JOURNAL;
SURFACE PROPERTY;
TEMPERATURE DEPENDENCE;
ANIMALS;
CELL CULTURE TECHNIQUES;
CELL LINE;
CELL MOVEMENT;
CELL SEPARATION;
COMPUTER SIMULATION;
DOGS;
ELECTROMAGNETIC FIELDS;
ELECTROPORATION;
EPITHELIAL CELLS;
MICROFLUIDIC ANALYTICAL TECHNIQUES;
MODELS, BIOLOGICAL;
NANOSTRUCTURES;
POROSITY;
SILICON;
TEMPERATURE;
ANIMALIA;
CANIS FAMILIARIS;
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EID: 33244463987
PISSN: 13872176
EISSN: None
Source Type: Journal
DOI: 10.1007/s10544-006-6379-5 Document Type: Article |
Times cited : (23)
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References (32)
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