Grace C. Y. Peng

ORCID: 0000-0003-0169-8124
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About
Contact & Profiles
Research Areas
  • Vestibular and auditory disorders
  • Cell Image Analysis Techniques
  • Bioinformatics and Genomic Networks
  • Ophthalmology and Eye Disorders
  • Neuroscience and Neural Engineering
  • Gene Regulatory Network Analysis
  • Epigenetics and DNA Methylation
  • Biomedical and Engineering Education
  • RNA modifications and cancer
  • Scientific Computing and Data Management
  • Neural dynamics and brain function
  • Gene expression and cancer classification
  • Motor Control and Adaptation
  • Cerebral Venous Sinus Thrombosis
  • Circular RNAs in diseases
  • Simulation-Based Education in Healthcare
  • Muscle activation and electromyography studies
  • Surgical Simulation and Training
  • EEG and Brain-Computer Interfaces
  • Radiomics and Machine Learning in Medical Imaging
  • Mathematical Biology Tumor Growth
  • Cancer, Hypoxia, and Metabolism
  • Spaceflight effects on biology
  • Innovations in Medical Education
  • Ferroptosis and cancer prognosis

National Institutes of Health
2005-2025

Allen Institute for Brain Science
2025

National Institute of Biomedical Imaging and Bioengineering
2006-2020

National Institute of Nursing Research
2014

Catholic University of America
2001-2009

Johns Hopkins University
1998-2009

Texas Instruments (United States)
2009

University of America
2001-2004

Johns Hopkins Hospital
1996-2004

Johns Hopkins Medicine
1998-2002

The BRAIN Initiative arose from a grand challenge to "accelerate the development and application of new technologies that will enable researchers produce dynamic pictures brain show how individual cells complex neural circuits interact at speed thought." is public-private effort focused on use powerful tools for acquiring fundamental insights about information processing occurs in central nervous system (CNS). As enters its fifth year, NIH has supported >500 principal investigators, who have...

10.1523/jneurosci.3174-17.2018 article EN Journal of Neuroscience 2018-06-19

ABSTRACT At the 10-year anniversary of NIH BRAIN Initiative, this report analyzes impact initiative’s functional neuroscience ecosystem as funding experiments in domains systems and integrative neuroscience, computational with an eye on comparison other models best practices.

10.1101/2025.01.30.635684 preprint EN public-domain bioRxiv (Cold Spring Harbor Laboratory) 2025-02-01

The NIH BRAIN Initiative is aimed at revolutionizing our understanding of the human brain. Presented here an impact analysis Team-Research Circuits Program as experiment in supporting team research Neuroscience.

10.1101/2025.02.07.635683 preprint EN public-domain bioRxiv (Cold Spring Harbor Laboratory) 2025-02-12

The NIH BRAIN Initiative is aimed at revolutionizing our understanding of the human brain. Presented here an impact analysis Team-Research Circuits Program as experiment in supporting team research Neuroscience.

10.7554/elife.106136 preprint EN 2025-04-01

At the 10-year anniversary of NIH BRAIN Initiative, this report analyzes impact initiative’s functional neuroscience ecosystem as funding experiments in domains systems and integrative neuroscience, computational with an eye on comparison other models best practices.

10.7554/elife.106137.1 preprint EN 2025-04-01

The NIH BRAIN Initiative is aimed at revolutionizing our understanding of the human brain. Presented here an impact analysis Team-Research Circuits Program as experiment in supporting team research Neuroscience.

10.7554/elife.106136.1 preprint EN 2025-04-01

At the 10-year anniversary of NIH BRAIN Initiative, this report analyzes impact initiative’s functional neuroscience ecosystem as funding experiments in domains systems and integrative neuroscience, computational with an eye on comparison other models best practices.

10.7554/elife.106137 preprint EN 2025-04-01

Telehealth applications are increasingly important in many areas of health education and training. In addition, they will play a vital role biomedical research training by facilitating remote collaborations providing access to expensive/remote instrumentation. order fulfill their true potential leverage education, training, activities, innovations telehealth should be fostered across range technology fronts, including online, on-demand computational models for simulation; simplified...

10.1089/tmj.2009.0152 article EN Telemedicine Journal and e-Health 2009-06-30

This paper summarizes the discussions held during First IEEE Life Sciences Grand Challenges Conference, on October 4-5, 2012, at National Academy of Sciences, Washington, DC, and grand challenges identified by conference participants. Despite tremendous efforts to develop knowledge ability that are essential in addressing biomedical health problems using engineering methodologies, optimization this approach toward life sciences healthcare remains a challenge. The was aimed high-level...

10.1109/tbme.2013.2244886 article EN IEEE Transactions on Biomedical Engineering 2013-02-01

While some recent studies that apply epidural spinal cord stimulation (SCS) have demonstrated a breakthrough in improvement of the health and quality life persons with injury (SCI), numbers people who received SCS are small. This is sharp contrast to thousands worldwide living SCI no practical recourse or hope recovery lost functions. Thus, vision understand full potential this new intervention determine if it safe effective larger cohort, scalable so can be made available all those might...

10.1109/tbme.2016.2637301 article EN IEEE Transactions on Biomedical Engineering 2017-01-19

Little is known of the functionality vestibulocollic reflex (VCR) and cervico-collic (CCR) during head neck movements caused by perturbations trunk. Previously, we formulated mathematical expressions for these reflexes incorporated them into a model horizontal plane movements. The formalism this neuromechanical allowed us to examine separately main components movement control. In present study, selected parameters within model, associate variations with disease processes affecting movements,...

10.1109/10.797986 article EN IEEE Transactions on Biomedical Engineering 1999-01-01

10.1007/s10162-003-4005-2 article EN Journal of the Association for Research in Otolaryngology 2004-03-01

The role of computational modeling for biomechanics research and related clinical care will be increasingly prominent. community has been developing models routinely exploration the mechanics mechanobiology diverse biological structures. As a result, large array models, data, discipline-specific simulation software emerged to support endeavors in biomechanics. Sharing data first become utilitarian interest, now, it is necessity. Exchange knowledge exchange provided by scholarly publishing,...

10.1115/1.4038768 article EN Journal of Biomechanical Engineering 2017-12-16

One in five Americans experiences disability that affects their daily function because of impairments mobility, cognitive function, sensory impairment, or communication impairment. The need for rehabilitation strategies to optimize and reduce is a clear priority research address this public health challenge. National Institutes Health (NIH) recently published Research Plan on Rehabilitation provides set priorities guide the field over next 5 years. plan was developed with input from multiple...

10.1093/ptj/pzx026 article EN cc-by-nc-nd Physical Therapy 2017-04-01

We investigated the vestibulo-ocular reflex (VOR) during high-acceleration, yaw-axis, head rotations in 12 normals and 15 patients with vestibular loss [7 unilateral deficient (UVD) 8 bilateral (BVD)]. analyzed gaze stabilization within a 200-ms window after rotation began, using phase planes, which allowed simultaneous analysis of velocity position. These “gaze planes” revealed critical dynamic information not easily gleaned from traditional gain measurements. found linear relationships...

10.1152/jn.00611.2002 article EN Journal of Neurophysiology 2004-04-01
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