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2023-039 Touch-Based Non-invasive Lithium Monitoring Using an Organo-Hydrogel-Coated Ion-Selective Sensing Interface
Summary: UCLA researchers in the Department of Electrical and Computer Engineering have developed a touch-based sensor for non-invasive, real-time, and accurate lithium-ion monitoring in patients. Background: Lithium salt is one of the most widely utilized psychiatric medications for individuals with bipolar disorder. However, it is difficult to...
Published: 7/19/2023
|
Inventor(s):
Sam Emaminejad
,
Shuyu Lin
,
Jialun Zhu
Keywords(s):
anti-dehydration
,
Biosensor
,
Drug
,
drug adherence
,
Drug monitoring
,
Electrode
,
ion selective electrode
,
Lithium
,
Lithium Therapy
,
Nanosensor
,
organo hydrogel
,
Pharmaceutical Drug
,
Prescription Drug
,
Psychiatry / Mental Health
,
Psychology
,
Psychotherapy
,
Sensor
,
Sensors
,
Sensory System
,
Therapeutic Drug Monitoring
Category(s):
Materials
,
Materials > Nanotechnology
,
Mechanical
,
Mechanical > Sensors
,
Electrical
,
Electrical > Sensors
,
Medical Devices
,
Electrical > Electronics & Semiconductors
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
2022-222 A Wearable Aptamer Microneedle Patch for Continuous Minimally-Invasive Biomonitoring
Summary: UCLA researchers in the Department of Bioengineering have developed a novel wearable device for real-time, minimally-invasive medication monitoring. Background: Current medication dosing is determined by taking the average therapeutic dose of a small patient sample size. However, this is often inaccurate for many individuals and the recommended...
Published: 8/2/2024
|
Inventor(s):
Sam Emaminejad
,
Shuyu Lin
,
Jialun Zhu
,
Xuanbing Cheng
Keywords(s):
Biomonitoring
,
Drug
,
Drug Delivery
,
Drug Development
,
Drug Discovery
,
Drug Resistance
,
Invasiveness Of Surgical Procedures
,
Microneedle array
,
non-invasive drug monitoring
,
Personalized Pharmacotherapy
,
Pharmaceutical Drug
,
Pharmacokinetics
,
Pharmacology
,
Prescription Drug
,
Therapeutic Drug Monitoring
,
Therapeutics & Vaccines
Category(s):
Life Science Research Tools
,
Medical Devices
,
Materials > Nanotechnology