This subproject is one of many research subprojects utilizing the resources provided by a Center grant funded by NIH/NCRR. The subproject and investigator (PI) may have received primary funding from another NIH source, and thus could be represented in other CRISP entries. The institution listed is for the Center, which is not necessarily the institution for the investigator. Microimaging and spectroscopy of very small samples requires the development of small rf coils in order to maximize the signal obtained. In accordance with Aim #1 of Core 2, we have been constructing a range of solenoidal coils for the 750MHz instrument for a range of sample ranging from single cells, alginate beads, spinal cords, muscle fibers and mouse brains, and this work has continued this year. This year has required the incorporation of perfusion with the probes, particularly for studies with our collaborators on alginate beads and islets. Additionally P31 coils have been constructed for studies of isolated muscle fibers. We have also constructed coils for operation at 13C and O17 at 4.7T, 11.1T and on the 17.6T systems. The 13C coils support studies on spectroscopy of rat tumors with Dr Mike Gamscik (Duke). The O17 is being developed in collaboration with Wei Chen for monitoring tissue oxygen consumption rate. The SNR is critical in these studies, and we are pinning our best hopes on the 17.6T magnet. To date, we have constructed a compete rf probe and probe body with an O17 coil, a separate butterfly 1H coil, and animal maintenance and monitoring. Using this probe we have obtained the first O17 CSI data and O17 images of a live mouse brain.

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Biotechnology Resource Grants (P41)
Project #
3P41RR016105-05S1
Application #
7369572
Study Section
Special Emphasis Panel (ZRG1)
Project Start
2005-05-01
Project End
2007-04-30
Budget Start
2005-05-01
Budget End
2007-04-30
Support Year
5
Fiscal Year
2006
Total Cost
$115,846
Indirect Cost
Name
University of Florida
Department
Neurosciences
Type
Schools of Medicine
DUNS #
969663814
City
Gainesville
State
FL
Country
United States
Zip Code
32611
Flint, Jeremy J; Hansen, Brian; Blackband, Stephen J (2016) Diffusion tensor microscopy data (15.6 ?m in-plane) of white matter tracts in the human, pig, and rat spinal cord with corresponding tissue histology. Data Brief 9:271-4
Flint, Jeremy J; Hansen, Brian; Fey, Michael et al. (2010) Cellular-level diffusion tensor microscopy and fiber tracking in mammalian nervous tissue with direct histological correlation. Neuroimage 52:556-61
Flint, Jeremy; Hansen, Brian; Vestergaard-Poulsen, Peter et al. (2009) Diffusion weighted magnetic resonance imaging of neuronal activity in the hippocampal slice model. Neuroimage 46:411-8
Shepherd, Timothy M; Flint, Jeremy J; Thelwall, Peter E et al. (2009) Postmortem interval alters the water relaxation and diffusion properties of rat nervous tissue--implications for MRI studies of human autopsy samples. Neuroimage 44:820-6
Constantinidis, Ioannis; Grant, Samuel C; Simpson, Nicholas E et al. (2009) Use of magnetic nanoparticles to monitor alginate-encapsulated betaTC-tet cells. Magn Reson Med 61:282-90
Collins, Christopher M (2009) Numerical field calculations considering the human subject for engineering and safety assurance in MRI. NMR Biomed 22:919-26
Dossey, Aaron T; Gottardo, Marco; Whitaker, John M et al. (2009) Alkyldimethylpyrazines in the defensive spray of Phyllium westwoodii: a first for order Phasmatodea. J Chem Ecol 35:861-70
Kim, Jung Hwan; Astary, Garrett W; Chen, Xiaoming et al. (2009) Voxelized model of interstitial transport in the rat spinal cord following direct infusion into white matter. J Biomech Eng 131:071007
Tarver, Matthew R; Schmelz, Eric A; Rocca, James R et al. (2009) Effects of soldier-derived terpenes on soldier caste differentiation in the termite Reticulitermes flavipes. J Chem Ecol 35:256-64
Shepherd, Timothy M; Thelwall, Peter E; Stanisz, Greg J et al. (2009) Aldehyde fixative solutions alter the water relaxation and diffusion properties of nervous tissue. Magn Reson Med 62:26-34

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