![]() |
Volumn 15, Issue 11, 2004, Pages 1355-1374
|
Electrically conductive 2D-PAN-containing surfaces as a culturing substrate for neurons
|
Author keywords
2D polyaniline (2D PAN); Cultured Aplysia neurons; Micro contact printing ( Cp); Self assembled monolayers; Surface modifications
|
Indexed keywords
ELECTRIC CONDUCTIVITY;
OXIDATION;
PLASMAS;
POLYMERIZATION;
POLYSTYRENES;
SYNTHESIS (CHEMICAL);
GROWTH CONES;
GROWTH PATTERNS;
PATTERNED SUBSTRATES;
PLASMA MEMBRANES;
NEUROLOGY;
ACTIN;
MONOMER;
POLYANILINE;
POLYLYSINE;
POLYSTYRENE;
ANIMAL CELL;
APLYSIA;
ARTICLE;
CELL ADHESION;
CHEMICAL STRUCTURE;
CONTROLLED STUDY;
CULTURE MEDIUM;
CYTOSKELETON;
ELECTRIC CONDUCTIVITY;
GROWTH CONE;
LAMELLIPODIUM;
NERVE CELL CULTURE;
NERVE CELL GROWTH;
NERVE CELL MEMBRANE;
NERVE FIBER GROWTH;
NONHUMAN;
OXIDATION;
POLYMERIZATION;
PRIORITY JOURNAL;
SULFONATION;
SURFACE PROPERTY;
SYNTHESIS;
ACTINS;
ANILINE COMPOUNDS;
ANIMALS;
APLYSIA;
BIOCOMPATIBLE MATERIALS;
CELL CULTURE TECHNIQUES;
CELLS, CULTURED;
COMPUTER SIMULATION;
ELECTRIC CONDUCTIVITY;
ELECTROSTATICS;
MICROSCOPY, ATOMIC FORCE;
MICROSCOPY, CONFOCAL;
MICROSCOPY, ELECTRON;
MICROTUBULES;
MOLECULAR STRUCTURE;
NEURONS;
POLYLYSINE;
SPECTRUM ANALYSIS;
SULFUR;
|
EID: 10644282263
PISSN: 09205063
EISSN: None
Source Type: Journal
DOI: 10.1163/1568562042368077 Document Type: Article |
Times cited : (29)
|
References (36)
|