The Center for Magnetic Resonance & Optical Imaging (CMROI) Resource has focused, since its inception, on the training of translational imaging scientists from basic science and clinical backgrounds. In fact, all of the TR&D leaders have undergone training in the CMROI at different stages of their career. This training service not only entails educating future generation of scientists on the fundamentals of magnetic resonance and optical imaging theory and application, but also functions as a means for both new and established researchers to learn about new developments in the field and to hone their skills for applications within their own research programs. Investigators may be trained on an individual basis by CMROI staff or as a group by seminars, courses, and workshops. The CMROI facility houses over forty desks in a wall-less, cubicle-free environment, which promotes open communication and discussions among the Principal Investigator, senior researchers, clinician scientists, postdoctoral fellows, pre-doctoral students, as well as visiting scientists. Training occurs in many avenues including through 1) Seminars in the form of CMROI journal club, Radiology Research Rounds, Translational Neuroscience Seminar, Advanced Biomedical Optics, 2) Hands on training by dedicated resource personnel, 3) Courses offered by CMROI faculty (8 courses), and 4) conference attendance. Dissemination of CMROI knowledge, technology developed and expertise occurs in many forms including 1) Workshops organized by its staff, 2) Invited lectures by its personnel, 3) Peer reviewed publications, 4) Conference presentations, 5) CMROI website, 6) Patent disclosures, and 7) Transfer of technology via Penn's Center for Technology Transfer. For the next funding cycle, we will enhance the current Training and Dissemination strategies by incorporating social media, software, and services. Specifically, we plan to emphasize the use of social media by leveraging our website, Facebook page, Twitter, as well as creating a LinkedIn page in order to improve visibility of our scientific endeavors as well as to foster new collaborations. We will also utilize professional video management and screen-capturing software to facilitate sharing Resource workshop presentations and training manuals, respectively. Finally, we will incorporate cloud storage and video-conferencing systems to expedite training and dissemination activities. We are confident that these strategies will enhance the Resource's training and dissemination activities by targeting the next generation of basic scientists, physician- scientists, and trainees in biomedical research.

Agency
National Institute of Health (NIH)
Institute
National Institute of Biomedical Imaging and Bioengineering (NIBIB)
Type
Biotechnology Resource Grants (P41)
Project #
2P41EB015893-31
Application #
8855360
Study Section
Special Emphasis Panel (ZEB1)
Project Start
Project End
Budget Start
2015-08-01
Budget End
2016-05-31
Support Year
31
Fiscal Year
2015
Total Cost
Indirect Cost
Name
University of Pennsylvania
Department
Type
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Cochran, Jeffrey M; Busch, David R; Leproux, Anaïs et al. (2018) Tissue oxygen saturation predicts response to breast cancer neoadjuvant chemotherapy within 10 days of treatment. J Biomed Opt 24:1-11
He, Lian; Baker, Wesley B; Milej, Daniel et al. (2018) Noninvasive continuous optical monitoring of absolute cerebral blood flow in critically ill adults. Neurophotonics 5:045006
Kaczkurkin, A N; Moore, T M; Calkins, M E et al. (2018) Common and dissociable regional cerebral blood flow differences associate with dimensions of psychopathology across categorical diagnoses. Mol Psychiatry 23:1981-1989
Zhou, Rong; Bagga, Puneet; Nath, Kavindra et al. (2018) Glutamate-Weighted Chemical Exchange Saturation Transfer Magnetic Resonance Imaging Detects Glutaminase Inhibition in a Mouse Model of Triple-Negative Breast Cancer. Cancer Res 78:5521-5526
Lynch, Jennifer M; Ko, Tiffany; Busch, David R et al. (2018) Preoperative cerebral hemodynamics from birth to surgery in neonates with critical congenital heart disease. J Thorac Cardiovasc Surg 156:1657-1664
Shah, Preya; Bassett, Danielle S; Wisse, Laura E M et al. (2018) Mapping the structural and functional network architecture of the medial temporal lobe using 7T MRI. Hum Brain Mapp 39:851-865
Adler, Daniel H; Wisse, Laura E M; Ittyerah, Ranjit et al. (2018) Characterizing the human hippocampus in aging and Alzheimer's disease using a computational atlas derived from ex vivo MRI and histology. Proc Natl Acad Sci U S A 115:4252-4257
Hadar, Peter N; Kini, Lohith G; Coto, Carlos et al. (2018) Clinical validation of automated hippocampal segmentation in temporal lobe epilepsy. Neuroimage Clin 20:1139-1147
Bagga, Puneet; Pickup, Stephen; Crescenzi, Rachelle et al. (2018) In vivo GluCEST MRI: Reproducibility, background contribution and source of glutamate changes in the MPTP model of Parkinson's disease. Sci Rep 8:2883
Liu, Hua-Shan; Jawad, Abbas F; Laney, Nina et al. (2018) Effect of blood T1 estimation strategy on arterial spin labeled cerebral blood flow quantification in children and young adults with kidney disease. J Neuroradiol :

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