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Deep Neural Networks for Real-Time Non-invasive Continuous Peripheral
Oxygen
Saturation Monitoring (Case No. 2024-227)
Summary: UCLA researchers in the Department of Anesthesiology have developed a novel pulse oximetry methodology utilizing deep neural networks for non-invasive monitoring. Background: In the US alone, over 5 million patients are admitted to the ICU for
oxygen
saturation monitoring. They, as well as the more than 15 million patients undergoing surgery,...
Published: 7/26/2024
|
Inventor(s):
Sungsoo (Danny) Kim
,
Sohee Kwon
,
Mia Markey
,
Alan Bovik
,
Akos Rudas
,
Ravi Pal
,
Maxime Cannesson
Keywords(s):
Artifical Intelligence (Machine Learning, Data Mining)
,
Blood Pressure
,
cardiovascular monitoring
,
central venous pressure (CVP)
,
Continuous blood pressure monitoring
,
critical care
,
Deep learning-based sensing
,
deep-learning analysis algorithms
,
heart failure
,
hemodynamic monitoring
,
machine learning modeling
,
Monitoring (Medicine)
,
neural network
,
non-invasive monitoring
,
Oxygen
,
Oxygen
Saturation
,
pulmonary arterial pressure (PAP)
,
Swan-Ganz catheter
Category(s):
Medical Devices > Monitoring And Recording Systems
,
Software & Algorithms > Digital Health
Method for Determining the Time Constant for
Oxygen
Uptake Kinetics (UCLA Case No. 2022-253)
Summary: UCLA researchers in the Department of Medicine have developed a novel geometric model for the determination of the time constant in variable
oxygen
uptake kinetic systems. Background: The kinetic response of oxygen uptake adjustment to moderate-intensity exercise is a main factor of the aerobic function. Aerobic function is an indicator...
Published: 7/27/2023
|
Inventor(s):
Christopher Cooper
Keywords(s):
breath-by-breath variability
,
Cardiovascular Disease
,
cardiovascular modeling
,
Exercise
,
exercise physiology
,
geometric method
,
kinetics
,
metabolic measurement
,
Oxygen
,
Oxygen
kinetics
,
Oxygen
Saturation
,
Oxygen
uptake kinetics
,
single exercise protocol
,
time constant
Category(s):
Medical Devices > Monitoring And Recording Systems
,
Software & Algorithms > Digital Health
2020-810 Mechanical Ventilator With a Fixed Number of Orifice Plates to Generate Constant Flow Paths
Summary: UCLA researchers in the Department of Electrical and Computer Engineering & Bioengineering have developed a constant flow path mechanical ventilator used for the treatment of advanced respiratory diseases, such as acute respiratory distress syndrome (ARDS). Background: Respiratory failure leading to the need for respiratory support...
Published: 7/19/2023
|
Inventor(s):
Glen Meyerowitz
Keywords(s):
Angiogenesis Acute Lung Injury
,
Cellular Respiration
,
Cerebrospinal Fluid
,
Cerebrospinal Fluid Tetramer Retinol Binding Protein
,
Cerebrospinal Fluid Ventricular System Bleeding
,
De
oxygen
ation
,
Diagnostic Markers & Platforms
,
Diagnostic Platform Technologies (E.G. Microfluidics)
,
Diagnostic Test
,
Digital Microfluidics
,
Ferrofluid
,
Flow Device
,
Fluid Dynamics
,
Fluidics
,
Half-Reaction Electrolysis Of Water
Oxygen
Evolution
,
Intensive-Care Unit Vital Signs
,
Lung
,
Lung Pulmonology
,
Mechanical
,
Mechanical Engineering
,
Mechanical Systems
,
Medical Device
,
Medical Device Poly(Methyl Methacrylate)
,
Medical Devices and Materials
,
Microfluidics
,
Microfluidics And Mem's
,
Microfluidics Dielectrophoresis
,
Microfluidics Multi-Band Device
,
Microfluidics Nanosphere
,
Mouse Respiratory System
,
Oxygen
,
Oxygen
Saturation
,
Reactive
Oxygen
Species
,
Respiratory & Pulmonary
,
Synovial Fluid
Category(s):
Mechanical
,
Mechanical > Mechanical Systems
,
Therapeutics > Infectious Diseases > COVID
2022-268 a Novel Method to Capture Clinical Data and Automatically Upload to National Registries
Summary: UCLA researchers in the Department of Cardiac Surgery have developed a program that facilitates data entry of patient information and simplifies integration with the requirements of the Extracorporeal Life Support Organization (ELSO) that is user-friendly, quick, and robust to human error. Background: The Extracorporeal Life Support Organization...
Published: 7/19/2023
|
Inventor(s):
Peyman Benharash
Keywords(s):
Big Data
,
Data Acquisition
,
Data Aggregator
,
Data Recovery
,
Data Structure
,
Digital Health
,
Global Health
,
Life Expectancy
,
Membranes
,
Oxygen
,
Oxygen
Saturation
,
Public Health
,
Software
,
Software Development Tools
Category(s):
Software & Algorithms
,
Software & Algorithms > Data Analytics