On Thursday, May 18, the MGH Martinos Center for Biomedical Imaging hosted the Home Hospital Innovation Challenge: a Shark Tank-like event in which researchers pitched ideas for novel biomedical imaging technologies that could be commercialized to meet a growing call for hospital-level care provi...
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Jyrki Ahveninen
Dr. Ahveninen's mission is to apply novel and improved techniques to achieve more accurate estimates of human brain function than previously achieved. His work focuses on neuroimaging of human auditory system, auditory working memory and higher-order auditory cognition using techniques including ...
Q&A: Susan Whitfield-Gabrieli on Managing Anxiety and Depression with Mindfulness-Based fMRI Neurofeedback
In a paper recently published in Molecular Psychiatry, Martinos affiliated faculty member Susan Whitfield-Gabrieli and colleagues describe a mindfulness-based fMRI neurofeedback approach they have developed and highlight its potential in treating adolescents with a history of anxiety and depressi...
John Kirsch
John Kirsch, PhD, is a radiological physicist by training and education, whose interest and experience have been in MRI technology for the majority of his career. He contributed significantly to the early pioneering development of clinical applications for MRI as well as to the design and improve...
About the Center
The Athinoula A. Martinos Center for Biomedical Imaging at Massachusetts General Hospital is one of the world’s premier research centers devoted to development and application of advanced biomedical imaging technologies. The Center is part of the Department of Radiology at Massachusetts General H...
The Secret Lives of Martinos Folk: Carol Barnstead and the Center’s cast of colorful characters
I have this theory that you need to be a character to work at the Martinos Center; you have to be a bit of an oddball, albeit in a fun, quirky kind of way. I’m not sure whether this is a prerequisite enforced during one of the hiring steps or is simply the result of some kind of self-selection pr...
Jerome Ackerman
Jerome Ackerman, PhD, has conducted research in magnetic resonance for over 45 years, and has led the solid-state MR program at MGH for over 30 years. As of May, 2019, his work (over 100 peer-reviewed journal articles, reviews, chapters and patents; over 200 abstracts) has been cited 5048 times (...
Understanding Eye-contact Avoidance in People With Autism
Individuals with autism spectrum disorder (ASD) often have difficulty looking others in the eyes. This is typically interpreted as a sign of social and personal indifference, but self-reports from people with autism suggests otherwise. Many say that looking others in the eye is uncomfortable or s...
Magnetoencephalography & Electroencephalography
The MEG/EEG facility is equipped with a dc-SQUID Neuromag Vectorview MEG system that allows noninvasive spatiotemporal mapping of human brain activity. The Neuromag system has 306 MEG channels (2 planar gradiometers and a magnetometer at each of 102 sites in a helmet-shaped array) and 128 EEG cha...
Albert Kim
I am an oncologist with interests in using machine learning and Omics to develop precision-based treatment paradigms and study therapuetic resistance. My laboratory efforts leverage Omics-based techniques, medical imaging (e.g., radiology, pathology), and machine learning to define and target ge...
Peter Caravan
Peter Caravan, PhD, is co-director of the Institute for Innovation in Imaging (I3) at Massachusetts General Hospital and a Professor of Radiology at Harvard Medical School. He leads a multidisciplinary and translational molecular imaging lab (the Caravan Lab) focused on the invention of novel mol...
Risk, Resiliency in Aging Brain Focus of $33 Million Grant
A large study that investigates just what keeps our brains sharp as we age and what contributes to cognitive decline has been launched by Martinos Center researchers in collaboration with colleagues from Washington University School of Medicine in St. Louis, the University of Minnesota Medical Sc...
‘Martinnovate’ Seminar Series Boosts Innovation at Martinos
The Martinos Center has always been a hotbed of entrepreneurship. Over the years, innumerable investigators and staff have launched companies seeking to commercialize products they have developed as part of their research. A new seminar series in the center aims to support this entrepreneuria...
Bruce Fischl
Bruce Fischl, PhD, is a Professor of Radiology at Harvard Medical School and Director of the Laboratory for Computational Neuroimaging at the Martinos Center for Biomedical Imaging. A leader in the field of image processing and analysis, he has spearheaded the development of a range of innovative...
Julie Price
One of the Center's newest senior faculty members, Julie Price, PhD, brings to the Martinos community a wealth of experience with quantitative positron emission tomography (PET). With this technique, researchers study the dynamics of the PET radiotracer in vivo in order to obtain absolute measure...
New Bedside MRI Scanner Inspired by Martinos Center Research
Fundamental research by Professor Matthew Rosen, Director of the Low-Field Imaging Laboratory in the MGH Martinos Center, contributed to the early development of a new portable MRI scanner by Hyperfine Research Inc. The potentially game-changing technology will be introduced this week at the Amer...
Student FAQ
What type of students work at the Martinos Center? The Martinos Center is home to full-time Ph.D. and Master's students from various backgrounds, ranging from Physics, Chemistry, Computer Science and Engineering to Biology, Neuroscience and Psychology. The breadth of research at the Center provi...
The Possible Role of Glow Sticks—Yes, Glow Sticks—in Treating Alzheimer’s
A new imaging probe that could help to advance therapies for Alzheimer’s disease draws its inspiration from an unlikely source. Research suggests that Alzheimer’s is closely associated with increased levels of ‘reactive oxygen species’ (ROS) in the brain, but actual, in vivo evidence of this h...
Nanodiamond-enhanced MRI: A Dazzling New Approach to Imaging
Nanodiamonds – synthetic industrial diamonds only a few nanometers in size – have recently attracted considerable attention because of the potential they offer for the targeted delivery of vaccines and cancer drugs as well as for other uses. Thus far, options for imaging nanodiamonds have been li...
Learning to See: New Artificial Intelligence Technique Dramatically Improves the Quality of Medical Imaging
A radiologist’s ability to make accurate diagnoses from high-quality diagnostic imaging studies directly impacts patient outcome. However, acquiring sufficient data to generate the best quality imaging comes at a cost – increased radiation dose for computed tomography (CT) and positron emission t...