INIS
detection
100%
proteins
100%
peptides
100%
nanoparticles
100%
thermistors
100%
sensitivity
50%
receptors
50%
devices
50%
growth factors
50%
comparative evaluations
33%
concentration
33%
sensors
33%
solids
33%
trypsin
33%
feedback
16%
humans
16%
cost
16%
solutions
16%
monitoring
16%
synthesis
16%
range
16%
in vivo
16%
layers
16%
noise
16%
signal-to-noise ratio
16%
interfaces
16%
readout systems
16%
liquids
16%
binders
16%
electrical resistance
16%
heat transfer
16%
miniaturization
16%
electrochemistry
16%
thermocouples
16%
pepsin
16%
thermal analysis
16%
printed circuits
16%
dip coating
16%
Keyphrases
Molecularly Imprinted Nanoparticles
100%
Thermistor
100%
Electrical Detection
100%
NanoMIPs
66%
Epidermal Growth Factor Receptor
50%
Biomolecules
50%
Trypsin
33%
Thermal Resistance
33%
Commercially Available
16%
Feedback Loop
16%
Signal-to-noise Ratio
16%
Epitope
16%
Physiologically Relevant
16%
High-frequency Noise
16%
Enhanced Sensitivity
16%
Human Use
16%
Temperature Sensitivity
16%
Solid-liquid Interface
16%
Miniaturization
16%
Binder
16%
In Vivo Measurement
16%
Thermocouple
16%
Heat Transfer Method
16%
Electrochemical Measurements
16%
Buffer Solution
16%
Sensor Platform
16%
Pepsin
16%
Thermal Analysis
16%
Solid-phase Synthesis
16%
Cost-free
16%
Printed Circuit Board
16%
Label-free Analysis
16%
Selective Binding
16%
Portable Device
16%
Dip Coating
16%
Electrical Resistance
16%
Electrical Measurements
16%
Thermal Device
16%
Engineering
Thermistor
100%
Nanoparticle
100%
Biomolecule
50%
Heat Resistance
33%
Signal-to-Noise Ratio
16%
Significant Change
16%
Portable Device
16%
Feedback Loop
16%
Thermocouple
16%
Enhanced Signal
16%
Solid Phase Synthesis
16%
Printed Circuit Board
16%
Dip Coating
16%
Electrical Measurement
16%