This P41 Biotechnology Resource Grant application seeks renewed support for our successful efforts to develop and apply innovative neuroimaging technologies within the highly integrated multimodal framework of the Center for Functional Neuroimaging Technologies (CFNT). The overall goal of this established NIBIB Biomedical Technology Resource Center (BTRC) is to provide advanced technology resources to more closely examine, and thus better understand, the human brain in health and disease. To this end, we seek to develop new techniques and advance existing technologies to acquire and analyze functional images of the working brain, with unprecedented physiological precision and spatiotemporal resolution, and to deploy these innovative tools to promote investigation of complex neuroscientific questions. Through coordinated research and development, collaborative research, service use, training and dissemination activities, our BTRC has built a standard of excellence in developing, sharing, and supporting the use of multimodal imaging tools that have consistently advanced capabilities for research that spans many basic science and clinical domains. Central to this effort are our four Technology Research and Development (TRD) projects to improve and extend techniques for non-invasive magnetic resonance image analysis (Project 1) and acquisition (Project 2), electromagnetic source imaging (Project 3), and optical neuroimaging (Project 4). Directly motivating the Aims of these TRD projects is a strong network of Collaborative Projects, which both challenge the TRDs to continue to innovate the next-generation neuroimaging tools, and reciprocally, employ the new tools we develop to drive their own research forward in new directions. Another essential element in this framework is the extensive application of our resources by a wide and diverse Service Users community. Finally, the TRDs, Collaborative and Service Projects contribute to the BTRC's Training and Dissemination mission, which additionally includes multiple dedicated Fellowships and Workshops, strong web presense, and important industrial partnerships, providing multiple channels to share the knowledge needed to apply the tools we develop with the scientific community locally, nationally, and internationally.

Public Health Relevance

By actively developing cutting-edge neuroimaging technologies, conducting collaborative research involving applications of these technologies, and extending them for service use to the broader neuroscientific research community, this long-running BTRC is helping to shape the basic neuroscience and translational research landscape. Ultimately, this work may thus facilitate the development of new therapeutic advances for an astounding array of neurological and psychiatric diseases.

Agency
National Institute of Health (NIH)
Institute
National Institute of Biomedical Imaging and Bioengineering (NIBIB)
Type
Biotechnology Resource Grants (P41)
Project #
5P41EB015896-19
Application #
9307560
Study Section
Special Emphasis Panel (ZEB1)
Program Officer
Liu, Guoying
Project Start
2000-09-01
Project End
2019-05-31
Budget Start
2017-06-01
Budget End
2018-05-31
Support Year
19
Fiscal Year
2017
Total Cost
Indirect Cost
Name
Massachusetts General Hospital
Department
Type
DUNS #
073130411
City
Boston
State
MA
Country
United States
Zip Code
02114
Tobyne, Sean M; Ochoa, Wilson B; Bireley, J Daniel et al. (2018) Cognitive impairment and the regional distribution of cerebellar lesions in multiple sclerosis. Mult Scler 24:1687-1695
Lewis, Laura D; Setsompop, Kawin; Rosen, Bruce R et al. (2018) Stimulus-dependent hemodynamic response timing across the human subcortical-cortical visual pathway identified through high spatiotemporal resolution 7T fMRI. Neuroimage 181:279-291
Tang, Jianbo; Erdener, Sefik Evren; Li, Baoqiang et al. (2018) Shear-induced diffusion of red blood cells measured with dynamic light scattering-optical coherence tomography. J Biophotonics 11:
Zhu, Bo; Liu, Jeremiah Z; Cauley, Stephen F et al. (2018) Image reconstruction by domain-transform manifold learning. Nature 555:487-492
Setsompop, Kawin; Fan, Qiuyun; Stockmann, Jason et al. (2018) High-resolution in vivo diffusion imaging of the human brain with generalized slice dithered enhanced resolution: Simultaneous multislice (gSlider-SMS). Magn Reson Med 79:141-151
Liu, Wei; Huang, Xiongyi; Placzek, Michael S et al. (2018) Site-selective 18F fluorination of unactivated C-H bonds mediated by a manganese porphyrin. Chem Sci 9:1168-1172
Haskell, Melissa W; Cauley, Stephen F; Wald, Lawrence L (2018) TArgeted Motion Estimation and Reduction (TAMER): Data Consistency Based Motion Mitigation for MRI Using a Reduced Model Joint Optimization. IEEE Trans Med Imaging 37:1253-1265
Jacobs, Heidi I L; Hedden, Trey; Schultz, Aaron P et al. (2018) Structural tract alterations predict downstream tau accumulation in amyloid-positive older individuals. Nat Neurosci 21:424-431
Sitnikova, Tatiana A; Hughes, Jeremy W; Ahlfors, Seppo P et al. (2018) Short timescale abnormalities in the states of spontaneous synchrony in the functional neural networks in Alzheimer's disease. Neuroimage Clin 20:128-152
Dinh, Christoph; Esch, Lorenz; Rühle, Johannes et al. (2018) Real-Time Clustered Multiple Signal Classification (RTC-MUSIC). Brain Topogr 31:125-128

Showing the most recent 10 out of 300 publications