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Opentext
Principal Architect
Emc Dec 2012 - Jan 2017
Principal Architect
Trinity Technologies Apr 2010 - Dec 2012
Director
Insite Data Systems 2004 - 2010
President
Rowe Consulting 1995 - 2004
President
Education:
University of Tennessee, Knoxville 1975 - 1981
Bachelors, Bachelor of Science, Engineering
Skills:
Solution Architecture Enterprise Software Cloud Computing Sharepoint Enterprise Content Management Enterprise Architecture Software Project Management Requirements Analysis Business Analysis Saas Integration Agile Methodologies Software Development Soa Business Intelligence Document Management It Strategy Pre Sales Professional Services Scrum Documentum .Net Microsoft Sql Server Oracle Sql Management Consulting Java Sdlc C# Asp.net Web Services Unix Xml Testing Java Enterprise Edition Business Process Agile Project Management Architectures Databases Distributed Systems Itil Javascript Linux Requirements Gathering Software Design Software Engineering System Architecture Tomcat Visual Studio Web Applications
Microsoft Office Management Microsoft Excel Microsoft Word Sales Leadership Research Photoshop Training Customer Service Outlook Process Improvement Windows English Public Speaking Team Leadership Team Building Strategic Planning Powerpoint
Russell H. Rowe - Warrenton VA Paul J. Lare - Bowie MD Henry Hahn - Fairfax VA
Assignee:
Artech Corp. - Falls Church VA
International Classification:
A61F 100 A61F 504
US Classification:
623 16
Abstract:
This biologically compatible surgical prosthetic implant has a multi-layer coating formed from metallic particles having sizes which increase in the direction from the metallic body of the implant toward the surface of the coating which is to interface with bone. The gradation is achieved by first depositing a layer of small particles, for example microspheres, of metallic coating material on the surface of the implant, then depositing progressively larger particles in subsequent layers. The particles may be deposited by any one of a number of well-known processes including but not limited to a flame-plasma process, in which several parameters are controlled as functions of the size of the particles. The resultant coating has minimum density and maximum porosity at its outer surface to encourage ingrowth of bone. The density of the coating is maximized at the interface between the coating and the body of the implant, thereby substantially matching the mechanical and thermal properties of the body of the implant and the coating and achieving optimum adherence of the coating to the body of the implant.
Tammy Cleveland, Joan Cunningham, Michelle Rohde, Barbara Gettert, Deb Laible, Mary Schaaf, Laurie Shelhamer, Jeannie Cuddy, Denise Dempsey, Lavonne Peter, Anthony Laq, Natalie Auen