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Microfluidic platforms for live-cell imaging and bio/pathomimetic tissue models
Background:Methodologies to image and quantify tissue models using high-content analysis (HCI) and functional analyses of 3D avatars are needed as such avatars better recapitulate the phenotype of pathobiological processes and better predict efficacy of, and resistance to, a wide variety of therapies. Furthermore, changes in morphometry, viability,...
Published: 2/14/2022
|
Inventor(s):
Bonnie Sloane
,
Kamiar Moin
,
Kyungmin Ji
,
Kingsley Osuala
,
Yong Xu
,
Hongen Tu
Keywords(s):
Category(s):
Specialty compounds
,
Research tools
,
Oncology
,
Microfluidics
,
Life Science
,
Instrumentation
,
Imaging
,
Diseases
,
Devices
,
Cell lines
Ambulatory systemic blood pressure telemonitoring
A non-invasive sensor method to determine ambulatory systemic blood pressure in the adult or pediatric population through the use of telemonitoring.Background & Unmet Need:Currently, non-invasive systems to measure blood pressure suffer from inaccuracies. They can vary significantly and there is no easy-to-use accurate way to determine ambulatory...
Published: 10/9/2024
|
Inventor(s):
Sean Wu
,
Gaurav Kapur
,
Yong Xu
,
Lingguang Chen
,
William Lyman
Keywords(s):
Biotechnology
,
Device
,
Patient Monitoring
Category(s):
Medical Devices
,
Life Science
Ultra-Sensitive Piezoresistive Accelerometer Based on Decoupled Piezoresistors
Ultra-sensitive piezoresistive accelerometer that has advantages over traditional piezoresistive accelerometers in both the sensitivity and minimum detectable acceleration.Wayne State University researchers have developed an ultra-sensitive piezoresistive accelerometer that has advantages over traditional piezoresistive accelerometers in both the sensitivity...
Published: 5/19/2017
|
Inventor(s):
Yong Xu
,
Zhou Wang
Keywords(s):
Military
,
Sound_monitoring
Category(s):
Electronics
,
Other
,
Physical Sciences
,
Sensors