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Search Results - technology+classifications+%3e+sensors+%26+controls
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Carpal Arch Space Augmentation (CASA) with FUFA
This invention is a radioulnar wrist compression device designed to treat carpal tunnel syndrome (CTS) involving a biomechanical approach to augment the carpal arch area. This device involves mechanisms of wrist compression for carpal arch space augmentation to alleviate median nerve compression and restore impaired neurophysiological and biomechanical...
Published: 7/27/2026
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Updated: 7/27/2026
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Inventor(s):
Zong-Ming Li
Keywords(s):
Category(s):
Technology Classifications > Medical Devices > Therapeutic
,
Technology Classifications > Healthcare Portfolios > Musculoskeletal Disorders, Orthopedics/Bone
,
Technology Classifications > Life Sciences > Therapeutics
,
Technology Classifications > Sensors & Controls
Enhanced Water Splitting with Protic Buffer/Electrolyte Cocatalysts
This invention is a protic co-catalyst used to increase the rate of electrolysis for splitting water to hydrogen and oxygen in a hydrogen evolving reaction. The co-catalyst is present in the electrolyte and is not consumed during the reaction. The co-catalyst may enhance the efficiency of water-splitting in systems that use a heterogenous catalyst,...
Published: 7/13/2026
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Updated: 7/13/2026
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Inventor(s):
Dennis Lichtenberger
,
Richard Glass
,
Dong-Chul Pyun
,
William Brezinski
,
Kayla Clary
,
Metin Karayilan
Keywords(s):
Category(s):
Technology Classifications > Sensors & Controls
,
Technology Classifications > Engineering & Physical Sciences > Electronics
Systems and Fabrication Methods for Resistor Designs Through Printing
This invention involves a fabrication method for directly embedding customized resistors into a 3D printed object. This entails using multiple low conducive filaments in order to flexibly customize the resistance of a trace, that acts as a resistor, printed through the combinations of the various low and medium range conductive filaments. Background:...
Published: 3/2/2026
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Updated: 3/2/2026
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Inventor(s):
Suyun Bae
,
Takanori Fujiwara
Keywords(s):
Category(s):
Technology Classifications > Engineering & Physical Sciences > Devices & Instrumentation
,
Technology Classifications > Engineering & Physical Sciences > Electronics > Analog Circuits
,
Technology Classifications > Sensors & Controls
Nanoscale Scanning Thermal Microscopy using Improved Thermocouple Probes
This technology is a scanning thermal microscope device. It utilizes a thermocouple with a sharp tip on its center fabricated from a cross-junction of coated and uncoated thin films and is suspended on a nanowire device. Radiation heat received at the tip is converted into a Seeback voltage signal for thermoelectric temperature sensing. This device...
Published: 11/24/2025
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Updated: 11/24/2025
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Inventor(s):
Qing Hao
,
Christopher Horne
,
Liping Wang
Keywords(s):
Category(s):
Technology Classifications > Engineering & Physical Sciences > Devices & Instrumentation
,
Technology Classifications > Sensors & Controls
,
Technology Classifications > Imaging & Optics > Microscopy, Spectroscopy, Polarimetry
A Novel Biomimetic Method of Biosensor and Electronics Adhesion in the Musculoskeletal System
This technology introduces a novel, biomimetic method securely attaching biosensors and bioelectronics to musculoskeletal tissues. By mimicking natural adhesive processes found in marine organisms, it enables durable, long-term bonding between sensors coated with Parylene C and various tissues such as bone, cartilage, muscle, and tendon, and a stable...
Published: 7/18/2026
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Updated: 8/11/2025
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Inventor(s):
David Margolis
,
Gerardo Figueroa Romero
,
Maximo Mondragon
,
Gabriela Maldonado
Keywords(s):
Category(s):
Technology Classifications > Sensors & Controls
,
Technology Classifications > Sensors & Controls
> Biologic
,
Technology Classifications > Materials > Biocompatible
,
Technology Classifications > Healthcare Portfolios > Musculoskeletal Disorders, Orthopedics/Bone
Method for Fabricating Free-Standing Thin-Film Nanocomposites
This invention is a fabrication method for free-standing thin-film composites reinforced with nanofibers. These composites are on the scale of hundreds of nanometers to a few microns in thickness and exhibit strong mechanical integrity. The formation of ultra-thin, flexible layers without requiring a supporting substrate is broadly applicable across...
Published: 6/27/2025
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Updated: 6/27/2025
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Inventor(s):
Adam Printz
,
Anton Samoylov
Keywords(s):
Category(s):
Technology Classifications > Materials > Composites
,
Technology Classifications > Materials > Nanomaterials
,
Technology Classifications > Materials > Processing
,
Technology Classifications > Energy, Cleantech & Environmental > Energy Collection, Storage & Battery
,
Technology Classifications > Energy, Cleantech & Environmental > Renewable Energy
,
Technology Classifications > Engineering & Physical Sciences > MEMS & Nanotechnology
,
Technology Classifications > Medical Devices
,
Technology Classifications > Sensors & Controls
Sensor-Based Prediction of Thermal Runaway in Lithium-Ion Batteries Through Strategic Sensor Arrays
This invention introduces a novel framework for predicting thermal runaway (TR) in lithium-ion batteries (LIBs) by combining strategically placed sensor arrays with machine learning models to predict TR events in lithium-ion batteries before they occur. TR is a phenomenon that occurs when the temperature in a LIB causes reactions to occur which produce...
Published: 6/13/2025
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Updated: 2/13/2025
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Inventor(s):
Vitaliy Yurkiv
,
Basab Ranjan Das Goswami
Keywords(s):
Category(s):
Technology Classifications > Energy, Cleantech & Environmental > Energy Collection, Storage & Battery
,
Technology Classifications > Sensors & Controls
Composite Filament for 3D Printing of Resorbable Bone Scaffolds
This innovation is composite filaments for 3D printing bioresorbable scaffolds for surgical implantation. These filaments typically have high strength, an appropriate resorption rate, and high biocompatibility. The resulting scaffolds offer customizable shapes and resorption rates. The improvement in this innovation compromises a bone volume fraction...
Published: 1/16/2025
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Updated: 1/16/2025
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Inventor(s):
John Szivek
,
Luis Arciniaga
,
Douglas Loy
,
David Margolis
Keywords(s):
Category(s):
Technology Classifications > Life Sciences
,
Technology Classifications > Medical Devices
,
Technology Classifications > Sensors & Controls
,
Technology Classifications > Software & Information Technology
,
Technology Classifications > Materials
Damage Localization in Plate Structures using the Geometric Phase of Acoustic Waves
This technology is a novel non-destructive testing and evaluation (NDT&E) method designed to locate defects and damages in plate structures. While traditional defect localization techniques analyze velocity differences or amplitude ratio, this technology’s topological acoustic approach analyzes changes in the geometric phase of acoustic waves...
Published: 12/16/2024
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Updated: 11/25/2024
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Inventor(s):
Tribikram Kundu
,
Pierre Deymier
,
Keith Runge
,
Guangdong Zhang
Keywords(s):
Category(s):
Technology Classifications > Sensors & Controls
Joint Space Quantification of Multiple Carpal Bones of Wrist-based on 3D Imaging
This technology is a software that is able to calculate the distance between joints among the carpal bones using 3D imaging, such as CT scan or MRI. Traditional joint space distance is calculated in a single joint for example the knee in 2D or 3D. The wrist has 8 carpal bones and forms many joints, and it is novel to quantify the joint space among these...
Published: 3/5/2025
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Updated: 11/2/2023
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Inventor(s):
Zong-Ming Li
Keywords(s):
Category(s):
Technology Classifications > Medical Devices
,
Technology Classifications > Sensors & Controls
,
Technology Classifications > Software & Information Technology
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