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Biocompatible Coating to Prevent Thrombosis

Detailed Technology Description
None
Supplementary Information
Inventor: Douglas, Elliot P. | Xue, Jiangeng
Priority Number: US8040058B2
IPC Current: H01J000162 | B05D000512 | H01J006304
US Class: 313506 | 313483 | 313500 | 313501 | 313504 | 313505 | 427064 | 427162
Assignee Applicant: University of Florida Research Foundation Inc.inesville
Title: Inkjet printing of microlenses for photonic applications
Usefulness: Inkjet printing of microlenses for photonic applications
Summary: Method for forming microlenses on a surface e.g. exposed surface of LED or organic LED device formed on substrate or exposed surface of substrate comprising LED or organic LED (claimed).
Novelty: Formation of microlens on e.g. exposed surface of LED involves coating solid surface with coating, depositing microdrops of resin on coating, and curing resin
Industry
Optics
Sub Category
LED/OLED
*Abstract

This biocompatible material can be used as a coating for medical devices or vascular grafts to eliminate complications associated with body implants, such as thrombosis formation. The desired service is covalently attached to a substrate and a phospholipid moiety, which gives the surface of the device or vascular graft anti-thrombogenic properties that are maintained for an extended period of time.

*Principal Investigator

Name: Leo Furcht, MD, Department Chair

Department: Department of Laboratory Medicine and Pathology


Name: Anja Metzger, PhD, Adjunct Assistant Professor

Department: Department of Emergency Medicine

Country/Region
USA

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