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Rohan Fernandes, 467401 Crestberry Ln, Bethesda, MD 20817

Rohan Fernandes Phones & Addresses

Bethesda, MD   

College Park, MD   

Beltsville, MD   

1103 Courtney Rd, Arbutus, MD 21227    410-7376813   

Baltimore, MD   

Springdale, MD   

Mentions for Rohan Fernandes

Rohan Fernandes resumes & CV records

Resumes

Rohan Fernandes Photo 34

Principal Investigator At Children's National Medical Center And Assistant Professor At George Washington University

Position:
Assistant Professor of Radiology and Pediatrics at George Washington University, Principal Investigator in Bioengineering at Sheikh Zayed Institute of Pediatric Surgical Innovation at Children's National Medical Center
Location:
Washington, District Of Columbia
Industry:
Biotechnology
Work:
George Washington University - Washington D.C. Metro Area since Oct 2012
Assistant Professor of Radiology and Pediatrics
Children's National Medical Center - Washington D.C. Metro Area since Dec 2011
Principal Investigator in Bioengineering at Sheikh Zayed Institute of Pediatric Surgical Innovation
Johns Hopkins University Jun 2009 - Dec 2011
Post Doctoral Fellow
University of Maryland Dec 2008 - May 2009
Research Associate
University of Maryland May 2004 - Dec 2008
Research Assistant
University of Maryland Baltimore County Jun 2002 - Aug 2003
Research Assistant
Education:
University of Maryland College Park 2003 - 2008
Ph.D., Bioengineering
University of Maryland Baltimore County 2001 - 2003
M.S., Chemical and Biochemical Engineering
University of Mumbai 1997 - 2001
B.S., Chemical Engineering
Honor & Awards:
- W. H. Peterson Award for Best Oral Presentation, ACS National Meeting, Boston, 2007 - Best Poster Presentation, Bioscience Day, University of Maryland, 2006 - University of Maryland Fellowship, 2003 - 2005
Rohan Fernandes Photo 35

Rohan Fernandes

Rohan Fernandes Photo 36

Rohan Fernandes

Rohan Fernandes Photo 37

Rohan Fernandes

Publications & IP owners

Us Patents

Controlled Electrochemical Deposition Of Polysaccharide Films And Hydrogels, And Materials Formed Therefrom

US Patent:
7883615, Feb 8, 2011
Filed:
Feb 11, 2004
Appl. No.:
10/541057
Inventors:
Gregory F. Payne - Cockeysville MD, US
Li-Qun Wu - North Potomac MD, US
Reza Ghodssi - Rockville MD, US
William E. Bentley - Annapolis MD, US
Gary W. Rubloff - Clarksville MD, US
Hyunmin Yi - Ellicott City MD, US
Rohan Fernandes - Beltsville MD, US
Tianhong Chen - Newark DE, US
David A. Small - Silver Spring MD, US
Assignee:
University of Maryland, College Park - College Park MD
University of Maryland, Baltimore County - Baltimore MD
International Classification:
C25D 9/02
US Classification:
205 82, 205317, 205229, 205118
Abstract:
A method is provided for electrochemically depositing a polysaccharide mass having a selected physical state. According to an embodiment, an electrically conductive support of a substrate is contacted with an aqueous solution including a selectively insolubilizable polysaccharide, and the selectively insolubilizable polysaccharide is electrochemically deposited on the electrically conductive support while controlling deposition conditions to form the polysaccharide mass having the selected physical state, such as that of a hydrogel. Deposition may be performed in a spatially and/or temporally controlled manner.

Biolithographical Deposition And Materials And Devices Formed Therefrom

US Patent:
2007027, Nov 29, 2007
Filed:
Feb 20, 2004
Appl. No.:
10/581905
Inventors:
Gregory Payne - Cockeysville MD, US
Gary Rubloff - Clarksville MD, US
Hyunmin Yi - Lexington MA, US
Rohan Fernandes - Beltsville MD, US
Li-Qun Wu - North Potomac MD, US
Reza Ghodssi - Rockville MD, US
William Bentley - Annapolis MD, US
Assignee:
University of Maryland, College Park - Riverdale MD
International Classification:
B32B 21/06
B32B 9/04
B32B 7/04
A61L 33/00
B05D 1/32
B05D 3/00
US Classification:
428411100, 428532000, 427282000, 428420000, 427002100
Abstract:
A method for biolithographical deposition of molecules is provided. According to an embodiment of the method, a reactive layer (e.g., a polysaccharide mass) having a surface region coated with a biologically compatible resist is provided. A portion of the biologically compatible resist is selectively removed to expose an exposed portion of the reactive layer. Molecules, such as biomolecules and/or cellular species, are then conjugated to the exposed portion of the reactive layer. Also provided are materials and devices related to the method.

Dual-Mode Imaging System For Tracking And Control During Medical Procedures

US Patent:
2019028, Sep 19, 2019
Filed:
Mar 25, 2019
Appl. No.:
16/364067
Inventors:
- Washington DC, US
Peter Kim - Washington DC, US
Axel Krieger - Alexandria VA, US
Simon Leonard - State College PA, US
Azad Shademan - Campbell CA, US
Ryan Decker - Pittsburgh PA, US
Justin Opfermann - Washington DC, US
Matthieu Dumont - Tallahassee FL, US
Nick Uebele - Colleyville TX, US
Lydia Carroll - Bethesda MD, US
Ryan Walter - Baltimore MD, US
Rohan Fernandes - Bethesda MD, US
Assignee:
Children's National Medical Center - Washington DC
International Classification:
A61B 34/20
A61B 90/00
Abstract:
System and method for tracking and control in medical procedures. The system including a device that deploys fluorescent material on at least one of an organ under surgery and a surgical tool, a visual light source, a fluorescent light source corresponding to an excitation wavelength of the fluorescent material, an image acquisition and control element that controls the visual light source and the fluorescent light source, and captures and digitizes at least one of resulting visual images and fluorescent images, and an image-based, tracking module that applies image processing to the visual and fluorescent images, the image processing detecting fluorescent markers on at least one of the organ and the surgical tool.

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