- Eindhoven, NL Shiying Wang - Melrose MA, US Sheng-Wen Huang - Ossining NY, US Francois Guy Gerard Marie Vignon - Andover MA, US Keith William Johnson - Lynnwood WA, US Liang Zhang - Issaquah WA, US David Hope Simpson - Bothell WA, US
International Classification:
A61B 8/06 A61B 8/00 A61B 8/08
Abstract:
A system for visualization and quantification of ultrasound imaging data according to embodiments of the present disclosure may include a display unit, and a processor communicatively coupled to the display unit and to an ultrasound imaging apparatus for generating an image from ultrasound data representative of a bodily structure and fluid flowing within the bodily structure. The processor may be configured to estimate axial and lateral velocity components of the fluid flowing within the bodily structure, determine a plurality of flow directions within the image based on the axial and lateral velocity components, differentially encode the flow directions based on flow direction angle to generate a flow direction map, and cause the display unit to concurrently display the image including the bodily structure overlaid with the flow direction map.
Systems And Methods For Automatic Detection And Visualization Of Turbulent Blood Flow Using Vector Flow Data
- EINDHOVEN, NL SHIYING WANG - MELROSE MA, US SHENG-WEN HUANG - OSSINING NY, US FRANCOIS GUY GERARD MARIE VIGNON - ANDOVER MA, US KEITH WILLIAM JOHNSON - LYNWOOD WA, US LIANG ZHANG - ISSAQUAH WA, US DAVID HOPE SIMPSON - BOTHELL WA, US
Assignee:
KONINKLIJKE PHILIPS N.V. - EINDHOVEN
International Classification:
A61B 8/06 A61B 8/00 A61B 8/08
Abstract:
A system for visualization and quantification of ultrasound imaging data according to embodiments of the present disclosure may include a display unit, and a processor communicatively coupled to the display unit and to an ultrasound imaging apparatus for generating an image from ultrasound data representative of a bodily structure and fluid flowing within the bodily structure. The processor may be configured to estimate axial and lateral velocity components of the fluid flowing within the bodily structure, determine a plurality of flow directions within the image based on the axial and lateral velocity components, differentially encode the flow directions based on flow direction angle to generate a flow direction map, and cause the display unit to concurrently display the image including the bodily structure overlaid with the flow direction map.
The present invention relates to a process to prepare dicycloplatin under mild reactive conditions and at fast reaction rates. The process is reproducible and easy to scale up for industrial application.
One or more embodiments of providing a content driven interface are provided herein. A storage component may house one or more programming data portions. Respective programming data portions may be associated with programming data for one or more time intervals, program names, and corresponding source content provider information. A display component may render one or more program suggestions based on a current time and one or more of the programming data portions. Respective program suggestions may be rendered based such that corresponding source content provider information is hidden. A management component may determine the current time and receive a user selection of a program suggestion of the one or more program suggestions. A communication component may transmit one or more signals based on the user selection of the program suggestion and corresponding source content provider information.
Center for Biomedical Imaging New York, NY May 2012 to Feb 2013 Research AssistantState Key Lab of High Power Vacuum Electronics
Oct 2010 to May 2011 Research Assistant
Education:
New York University Brooklyn, NY May 2013 Master of Engineering in Electrical and Computer EngineeringUniversity of Electronic Science and Technology of China Chengdu, CN Jun 2011 Bachelor of Engineering in Vacuum Electronic Technology