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Acoustogenic Probes: A New Frontier in Photoacoustic Imaging
Hailey J. Knox,
Jefferson Chan
Chemistry
Biochemistry
Beckman Institute for Advanced Science and Technology
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peer-review
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Keyphrases
Small Molecules
100%
Photoacoustic Imaging
100%
New Frontiers
100%
Acoustogenic Probe
100%
Biomedical Imaging
50%
Imaging Modalities
50%
Ratiometric Imaging
50%
Metal Ions
25%
Chemical Reaction
25%
Disease Progression
25%
Chromophore
25%
Design Strategy
25%
Molecular Imaging
25%
Imaging Studies
25%
Electronic Properties
25%
High-resolution
25%
Deep Tissue Imaging
25%
Biological Tissue
25%
Cu(II)
25%
Absorbance
25%
Mouse Model
25%
Spectral Changes
25%
Pulsed Laser
25%
Spectral Properties
25%
Optical Excitation
25%
Long-term Imaging
25%
Hypoxia
25%
Light Absorption
25%
High-resolution Image
25%
Fluorescence Quantum Yield
25%
Diagnostic Methods
25%
Analyte Detection
25%
Attractive Alternatives
25%
Near-infrared Window
25%
Non-ionizing
25%
Non-invasive Detection
25%
Image Acquisition
25%
Energy Loss
25%
Reactive Nitrogen Species
25%
Imaging Window
25%
Excitation Light
25%
Specific Wavelength
25%
Design Features
25%
Ultrasonic Detection
25%
Pressure Fluctuation
25%
Tissue Microenvironment
25%
Deep Tissue
25%
Biological Discovery
25%
Imaging Tools
25%
Photostable
25%
Ultrasound Waves
25%
Low Fluorescence
25%
Oxygen Tension
25%
Probe Development
25%
Modular Design
25%
Disease Mapping
25%
Molar Absorptivity
25%
Activatable Probe
25%
NIR Dyes
25%
PA Imaging
25%
Signal Fluctuation
25%
Instrumental Variation
25%
Thermoelastic Expansion
25%
Chemistry
Chromophore
100%
Photoexcitation
100%
Metal Ion
100%
Fluorescence Quantum Yield
100%
Tension
100%
Reactive Nitrogen Species
100%
Molar Absorptivity
100%
Medicine and Dentistry
Biomedical Imaging
100%
Photoacoustic Imaging
100%
Disease
50%
Molecular Imaging
50%
Echography
50%
Disease Exacerbation
50%
Diagnostic Procedure
50%
Metal Ion
50%
Hypoxia
50%
Cuprous Ion
50%
Reactive Nitrogen Species
50%
Material Science
Copper Ion
100%