Samsung C&T - Seocho-gu, Seoul, Korea since Feb 2012
Manager
Real Capital Analytics Jun 2010 - Jul 2011
Market Analyst
Cornell University Aug 2009 - Dec 2009
Teaching Assistant for Managerial Finance
Real Capital Analytics Jun 2009 - Aug 2009
Intern
SAMSUNG EVERLAND Jul 2000 - Jul 2008
Manager, Marketing Planning
Education:
CORNELL UNIVERSITY 2008 - 2010
Master of Professional Studies, Real Estate; Investment
KOREA UNIVERSITY 1993 - 2000
Bachelor, Economics (Concentration
Wayne State University since Aug 2009
Ph.D Candidate
Education:
Wayne State University 2009 - 2014
Ph.D, Industrial Engineering
Kyung Hee University 2004 - 2006
Master, Management Information Systems
Handong Global University 1996 - 2003
Bachelor, Business Administration & Economics
Skills:
Statistics Matlab
Principal Statistician At Division Of Biomedical Informatics, Ucsd
Principal Statistician at University of California at San Diego
Location:
San Diego, California
Industry:
Research
Work:
University of California at San Diego since Jul 2009
Principal Statistician
Brigham and Women's Hospital Sep 2007 - Jun 2009
Staff Statistician
Central Computing Center, Korean Navy Head-quater Sep 1998 - Jun 2001
Programmar
Education:
University of Wisconsin-Madison 2004 - 2007
MS, Statistics
Seoul National University 2002 - 2004
MS, Medicine (Bioinformatics)
Seoul National University 1994 - 1998
BS, Statistics
Principal Statistician at University of California at San Diego
Location:
San Diego, California
Industry:
Higher Education
Work:
University of California at San Diego since Jul 2009
Principal Statistician
Brigham and Women's Hospital / Harvard Medical School Aug 2007 - Aug 2009
Staff Statistician
Northwestern University since Aug 2009
Research Associate
Northwestern University Sep 2006 - Aug 2009
Post-Doc
University of Texas Jan 2001 - Aug 2006
Graduate Research Assistant
Daehan Medical System Co. Ltd Jan 1999 - Jan 2000
Quality Assurance Engineer
KonKuk University Jan 1992 - Jan 1995
Full Merit Scholarship
Education:
KonKuK University 1999
Northwestern University
University of Texas at Austin
Us Patents
Method And Apparatus To Identify Vulnerable Plaques With Thermal Wave Imaging Of Heated Nanoparticles
Marc Feldman - San Antonio TX, US Thomas Milner - Austin TX, US Jihoon Kim - Austin TX, US Junghwan Oh - Houston TX, US Pramod Sanghi - Bloomfield MI, US Jake Mancuso - San Antonio TX, US Keith Johnston - Austin TX, US Leo Ma - Austin TX, US Stas Emelianov - Austin TX, US
International Classification:
A61B 5/05
US Classification:
600409000, 600476000
Abstract:
Provided herein are systems, methods and compositions for the use of optical coherence tomography for detection of cells and for killing detected cells.
Method And Apparatus To Identify Vulnerable Plaques With Thermal Wave Imaging Of Heated Nanoparticles
Thomas E. Milner - Austin TX, US Jung-Hwan Oh - Austin TX, US Eunha Kim - Austin TX, US Karathik Kumar - Austin TX, US Jonathan C. Condit - Austin TX, US Robert Grant - Austin TX, US Nathaniel J. Kemp - Concord MA, US Jihoon Kim - Evanston IL, US Shaochen Chen - Austin TX, US Li-Hsin Han - Austin TX, US
Assignee:
Board of Regents, The University of Texas System - Austin TX
International Classification:
A61B 5/00
US Classification:
600425
Abstract:
The embodiments disclosed herein is related to a system for optical coherence tomographic imaging of turbid (i.e., scattering) materials utilizing multiple channels of information. The multiple channels of information may be comprised and encompass spatial, angle, spectral and polarization domains. More specifically, the embodiments disclosed herein is related to methods and apparatus for utilizing optical sources, systems or receivers capable of providing (source), processing (system) or recording (receiver) a multiplicity of channels of spectral information for optical coherence tomographic imaging of turbid materials. In these methods and apparatus the multiplicity of channels of spectral information that can be provided by the source, processed by the system, or recorded by the receiver are used to convey simultaneously spatial, spectral or polarimetric information relating to the turbid material being imaged tomographically. The multichannel optical coherence tomographic methods can be incorporated into an endoscopic probe for imaging a patient.
- Midland MI, US Haley Lowry - Houston TX, US James F. Warner - Chicago IL, US Jihoon Kim - Chicago IL, US Thomas A. Herbert - Oak Park IL, US
Assignee:
Dow Global Technologies LLC - Midland MI
International Classification:
B65D 81/34 A23L 1/216
US Classification:
426110, 426106, 426127, 426523, 219735
Abstract:
The present disclosure provides a pouch for holding a fresh produce item and a method. The pouch includes (A) a body composed of at least one flexible multilayer film having a haze value less than 20%. The body further includes a front wall, a rear wall, and a gusset panel that form a closed chamber. (B) The gusset panel includes a rim. (C) A fresh produce item is located in the closed chamber. (D) The pouch has a chamber-to-rim ratio (mm) from 6:1 to 200:1. At least a portion of at least one wall is transparent permitting a person to see the fresh produce item in the pouch. The method includes displaying the fresh produce item through at least one of the front wall or the rear wall at a chamber-to-rim ratio from 6:1 to 200:1.