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Houchun Hu Phones & Addresses

  • Dublin, OH
  • Denver, CO
  • Scottsdale, AZ
  • Des Moines, IA
  • Cypress, CA
  • Rochester, MN
  • Long Beach, CA
  • Cerritos, CA
  • Orange, CA

Resumes

Resumes

Houchun Hu Photo 1

Clinical Scientist

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Location:
8030 Pleasant Dr, Dublin, OH 43016
Industry:
Hospital & Health Care
Work:
Nationwide Childrens Hospital Jun 1, 2017 - Oct 2019
Director of Radiology and Imaging Research

Radiology Ltd. Jun 1, 2017 - Oct 2019
Associate Editor

American Board of Medical Physics Jun 1, 2017 - Oct 2019
Board Certified In Mri Physics

Magnetic Resonance Tech Jun 1, 2017 - Oct 2019
Editorial Board Member

Ismrm Jun 1, 2017 - Oct 2019
Chair, Subcommittee on Young Investigator Awards
Education:
Mayo Clinic School of Health Sciences 2007 - 2012
Doctorates, Doctor of Philosophy
Mayo Clinic School of Health Sciences 2001 - 2006
Doctorates, Doctor of Philosophy, Engineering
University of Southern California 1997 - 2001
Bachelors, Bachelor of Science, Biochemical Engineering
Gahr High School
Skills:
Medical Imaging
Mri
Image Processing
Biomedical Engineering
Image Analysis
Radiology
Matlab
Medical Physics
Signal Processing
Physics
Pediatric Radiology
Digital Imaging
Pattern Recognition
Machine Learning
Algorithms
Imaging Science
Molecular Imaging
Clinical Study Design
Musculoskeletal Radiology
Computer Vision
Interests:
Children
Skiing
Environment
Photography
Science and Technology
Horseback Riding
Automotive Design and Engineering
Arts and Culture
Languages:
Mandarin
English
Houchun Hu Photo 2

Deputy Editor At Magnetic Resonance In Medicine

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Position:
Deputy Editor at Magnetic Resonance in Medicine, Assistant Professor of Radiology at Children's Hospital Los Angeles (CHLA), Research Assistant Professor of Electrical Engineering at University of Southern California
Location:
Los Angeles, California
Industry:
Higher Education
Work:
Magnetic Resonance in Medicine since May 2012
Deputy Editor

Children's Hospital Los Angeles (CHLA) - Los Angeles since Aug 2009
Assistant Professor of Radiology

University of Southern California since Jun 2009
Research Assistant Professor of Electrical Engineering

University of Southern California Sep 2006 - May 2009
Postdoctoral Research Associate
Education:
Mayo Graduate School 2001 - 2006
PhD, Engineering (Medical Imaging)
University of Southern California 1997 - 2001
B.S., Biomedical Engineering

Publications

Us Patents

Mri Acquisition Using 2D Sense And Partial Fourier Pace Sampling

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US Patent:
8320646, Nov 27, 2012
Filed:
May 2, 2006
Appl. No.:
11/913429
Inventors:
Houchun H. Hu - Cerritos CA, US
Ananth J. Madhuranthakam - Jamaica Plain MA, US
Stephen J. Riederer - Rochester MN, US
Assignee:
MAYO Foundation for Medical Education and Research - Rochester MN
International Classification:
G06K 9/00
US Classification:
382128, 324309, 600410
Abstract:
An MRI system produces a three-dimensional image by acquiring NMR signals that fully sample a central region of k-space and partially sample peripheral k-space as a set of asymmetric radial sectors. The NMR signals are acquired with a plurality of receive channels and coils. An image is reconstructed using a homodyne reconstruction combined with SENSE processing.

Seizure Characterization With Magnetic Resonance Imaging (Mri) Fused With An Electroencephalography (Eeg) Model

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US Patent:
20210282700, Sep 16, 2021
Filed:
Mar 1, 2018
Appl. No.:
16/492179
Inventors:
- EINDHOVEN, NL
- GLENDALE AZ, US
Carsten MEYER - HAMBURG, DE
Martin BERGTHOLDT - HAMBURG, DE
Houchun HU - GLENDALE AZ, US
Jeffrey MILLER - GLENDALE AZ, US
International Classification:
A61B 5/00
A61B 5/055
A61B 5/369
A61B 5/291
G06T 7/11
Abstract:
A seizure characterization method includes correlating locations of electrodes placed around a brain and used to produce sequential electroencephalography (EEG) signals with a three-dimensional anatomical brain model derived from magnetic resonance imaging (MRI). The sequential EEG signals are modelled from the electrodes placed around the brain in three dimensions using cortical and sub-cortical brain regions included in the brain model to define constraints for the numerical solution. Amounts of the sequential EEG signals are quantified in three dimensions relative to the brain regions included in the brain model. The method also includes establishing, based on the quantifying, at least one propagation pattern of the sequential EEG signals in time relative to the brain regions in the brain model.
Houchun Harry Hu from Dublin, OH, age ~46 Get Report