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Volumn 17, Issue 3, 2015, Pages
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Ultrananocrystalline diamond-CMOS device integration route for high acuity retinal prostheses
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Author keywords
3 Dimensional microfabrication; High acuity retinal prostheses; Microelectrode array; Microelectrode array CMOS integration
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Indexed keywords
BIOCOMPATIBILITY;
BIOLOGICAL MATERIALS;
CMOS INTEGRATED CIRCUITS;
CONTAMINATION;
DIAMONDS;
ELECTRODES;
FLIP CHIP DEVICES;
INDIUM;
INTEGRATED CIRCUIT INTERCONNECTS;
LITHOGRAPHY;
MEDICAL APPLICATIONS;
MICROANALYSIS;
MICROELECTRODES;
MICROFABRICATION;
NANOIMPRINT LITHOGRAPHY;
OPHTHALMOLOGY;
PROSTHETICS;
SILICONES;
3-DIMENSIONAL MICROFABRICATION;
BIOMEDICAL APPLICATIONS;
CMOS INTEGRATION;
MICROELECTRODE ARRAY;
MICROFABRICATION PROCESS;
POLYDIMETHYLSILOXANE PDMS;
RETINAL PROSTHESIS;
ULTRA-NANOCRYSTALLINE DIAMOND;
APPLICATION SPECIFIC INTEGRATED CIRCUITS;
ALUMINUM;
DIAMOND;
DIMETICONE;
INDIUM;
SILICON;
ULTRANANOCRYSTALLINE DIAMOND;
UNCLASSIFIED DRUG;
NANODIAMOND;
ARTICLE;
BIOCOMPATIBILITY;
CHEMICAL BOND;
CROSS-SECTIONAL STUDY;
INTEGRATED CIRCUIT;
MICRO-COMPUTED TOMOGRAPHY;
MICROELECTRODE;
MICROTECHNOLOGY;
MOLECULAR IMPRINTING;
PACKAGING MATERIAL;
PRIORITY JOURNAL;
RETINAL IMPLANT;
SEMICONDUCTOR;
VISUAL ACUITY;
ANIMAL;
CHEMISTRY;
DEVICES;
ELECTRIC CONDUCTIVITY;
ELECTRODE IMPLANT;
ELECTROSTIMULATION THERAPY;
HUMAN;
MICROARRAY ANALYSIS;
PHYSIOLOGY;
PROCEDURES;
SYSTEM ANALYSIS;
ULTRASTRUCTURE;
VISUAL PROSTHESIS;
ANIMALS;
ELECTRIC CONDUCTIVITY;
ELECTRIC STIMULATION THERAPY;
ELECTRODES, IMPLANTED;
HUMANS;
MICROARRAY ANALYSIS;
MICROELECTRODES;
MOLECULAR IMPRINTING;
NANODIAMONDS;
SEMICONDUCTORS;
SYSTEMS INTEGRATION;
VISUAL ACUITY;
VISUAL PROSTHESIS;
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EID: 84928255014
PISSN: 13872176
EISSN: 15728781
Source Type: Journal
DOI: 10.1007/s10544-015-9952-y Document Type: Article |
Times cited : (24)
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References (23)
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