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Search Results - drug+delivery+microporous+material
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Nanocomposite Scintillators (Case No. 2024-126)
Summary: UCLA researchers from the Department of Materials Science and Engineering have developed a novel nanocomposite material for high-efficiency radiation detection and monitoring. Background: Scintillators are materials that emit light when they absorb radiation, such as gamma rays or x-rays. The photons generated by the scintillators can...
Published: 5/15/2024
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Inventor(s):
Qibing Pei
,
Ziqing Han
Keywords(s):
adhesive material
,
Algorithm Optical Coherence Tomography
,
anode material
,
artificial electromagnetic materials
,
artificial-intelligent materials
,
background radiation
,
Biomaterial
,
Biomaterial 3D Printing
,
bulk material
,
Composite Material
,
composite scintillators
,
Computed tomography
,
Computerized Tomography scan (CT)
,
Diffraction Tomography
,
Drug Delivery Microporous Material
,
fast scintillators
,
gamma spectroscopy
,
High resolution computed tomography
,
high-Z organometallics
,
hole transporting material
,
Hyperelastic Material
,
intercalated materials
,
material characterization
,
Materials
,
meta materials
,
metal nanocomposites
,
microarchitectured materials
,
nanocomposite scintillators
,
Nanocomposites
,
Nanomaterials
,
Nanoparticle
,
Nanoparticles
,
nanostructured materials
,
neutrino detection
,
Optical Tomography
,
Optoelectronic materials
,
photonic materials
,
positron emission tomography (PET)
,
radiation detection
,
Raw materials supplier
,
scintillators
,
second harmonic generation
,
Smart Material
,
Solar Cell Metamaterial
,
Surgical Instrument Optical Coherence Tomography
,
suturable biomaterial
,
X-Ray Computed Tomography
Category(s):
Chemical
,
Chemical > Chemical Sensors
,
Materials
,
Materials > Functional Materials
2022-223 A Bioanalytics-Enabled and Hollow Microneedle-Based Wearable Technology for Personalized Medicine
Summary: UCLA researchers in the Department of Electrical and Computer Engineering have developed a minimally-invasive wearable device that continuously monitors pharmaceutical concentrations in a user to optimize the drug’s dosage. Background: The annual cost of medication-related morbidity and mortality due to non-optimized pharmacotherapy...
Published: 7/19/2023
|
Inventor(s):
Sam Emaminejad
,
Shuyu Lin
Keywords(s):
Adverse Drug Reaction
,
Antibody-Drug Conjugate
,
Antiviral Drug
,
Biomonitoring
,
Blood Glucose Monitoring
,
Drug
,
Drug Carrier
,
Drug Delivery
,
Drug Delivery Microporous Material
,
Drug Development
,
Drug Development Feature Extraction
,
Drug Discovery
,
Drug monitoring
,
Drug Resistance
,
Drug-Eluting Stent
,
Extensively Drug-Resistant Tuberculosis
,
Fine-Needle Aspiration
,
Gene Combination Drug
,
Immunosuppressive Drug
,
interstitial fluid (ISF)-based information
,
Investigatioal New Drug
,
Management Of HIV/AIDS Psychoactive Drug
,
medical automation technology
,
Medical Device
,
Medical Devices and Materials
,
medication customization
,
medication efficacy
,
Microneedle array
,
minimally invasive device
,
Monitoring (Medicine)
,
Monitoring And Recording Systems
,
Multiple Drug Resistance
,
Mutation Drug Design
,
Nanosensor
,
Nanostructure
,
Nanotechnology
,
non-invasive drug monitoring
,
personalized dose assessment
,
Pharmaceutical Drug
,
Pharmaceutical Drug Ethylene Glycol
,
Pharmaceutical Drug Opioid Dependence
,
Prescription Drug
,
real-time sensing/monitoring/tracking
,
remote monitoring
,
sample-to-answer devices
,
Smart medical device
,
Therapeutic Drug Monitoring
,
wearable medical device
Category(s):
Mechanical
,
Mechanical > Sensors
,
Medical Devices
,
Medical Devices > Monitoring And Recording Systems
,
Platforms > Drug Delivery
,
Software & Algorithms > Bioinformatics
,
Software & Algorithms > Artificial Intelligence & Machine Learning
,
Electrical > Sensors
,
Materials > Nanotechnology