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Microsystems for Biological Cell Characterization: Dissertation
Anna Rissanen
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Thesis
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Dissertation
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Monograph
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INIS
fabry-perot interferometer
100%
output
66%
capillaries
66%
sensors
66%
droplets
66%
testing
66%
spectroscopy
66%
impedance
66%
comparative evaluations
33%
yeasts
33%
control
33%
information
33%
applications
33%
design
33%
cost
33%
devices
33%
water
33%
substrates
33%
saccharomyces cerevisiae
33%
patients
33%
diseases
33%
voltage
33%
gold
33%
volume
33%
membranes
33%
walls
33%
drugs
33%
electrodes
33%
fabrication
33%
calorimetry
33%
cell cultures
33%
glass
33%
evaporation
33%
spectrometers
33%
photodiodes
33%
reagents
33%
visible spectra
33%
systems analysis
33%
bovine
33%
optical filters
33%
thermopiles
33%
cortex (adrenal)
33%
Keyphrases
Microsystems
100%
Biological Cell Characterization
100%
Micro-electro-mechanical Systems
75%
Fabry-Perot Interferometer
75%
Impedance Spectroscopy
50%
Process Integration
50%
Cell Behavior
50%
Systems-based
50%
Microfluidics
25%
Design Process
25%
Self-assembled Monolayer
25%
Visible Spectrum
25%
Characterization Techniques
25%
Cell Culture
25%
Drug Discovery
25%
Water Droplet
25%
Microfabrication Techniques
25%
Photodiode
25%
Yeast Cells
25%
Control Disease
25%
Spectrum Measurement
25%
Cellular Structure
25%
Gold Electrode
25%
Patient Treatment
25%
Optical Filters
25%
Glass Substrate
25%
Living Cells
25%
Endothelial Cells
25%
Small Droplets
25%
Bioprocess Control
25%
Cell Attachment
25%
Point-of-care Testing
25%
Miniature Spectrometer
25%
Multiple Samples
25%
Monolithically Integrated
25%
Saccharomyces Cerevisiae Yeast
25%
Thermopile
25%
Electrically Tunable
25%
Microsensor
25%
Disease Diagnosis
25%
Volume Cell
25%
Voltage Output
25%
Capillary Formation
25%
Adrenal Cortex
25%
Capillary Endothelial Cells
25%
Culture Areas
25%
Whole Systems Analysis
25%
Microsystems Technology
25%
Analysis Cost
25%
Engineering
Microsystem
100%
Micro-Electro-Mechanical System
60%
Fabry Perot
60%
Perot Interferometer
60%
Process Integration
40%
Self-Assembled Monolayers
20%
Cerevisiae
20%
Output Voltage
20%
Microfabrication Technique
20%
Design Process
20%
Photodiode
20%
Living Cell
20%
Multiple Sample
20%
Bioprocess Control
20%
Patient Treatment
20%
Microsensor
20%
Systems Analysis
20%
Main Result
20%
Thermopile
20%
Optical Filter
20%
Glass Substrate
20%