The investigators propose to test the feasibility of developing a gel-based dosimeter with tissue mimicking properties that would be read by change in NMR or optical signal due to an X-ray dose- related polymerization, as further described by their abstract: """"""""This proposal aims to develop tissue-equivalent polymer-gel chambers as substitutes for conventional ionization chambers, and to establish the feasibility of designing simple photometers or bench-top NMR relaxometers to measure radiation doses accurately. X-ray, electron and heavy-charged-particle beams are routinely calibrated with ionization chambers, which present a complex theoretical problem: how to convert the electrical charge from air ionization to the energy absorbed per mass of tissue. The calibration of radiations above 1 MeV requires that the ionization chamber first be calibrated for 60Co gamma rays at a national or regional laboratory. Subsequently, this calibration factor and as many as a dozen other chamber-and radiation-dependent parameters are applied to obtain the tissue dose. The uncertainty in the tissue- dose determination is + 3%. The polymer-gel dosimeter is tissue (muscle) equivalent so that, after calibration at one energy, the dose-to-muscle at another energy is obtained without complex corrections. The overall goal of the proposed research is to demonstrate that small polymer-gel chambers can be reliably constructed and used to calibrate radiation bemas, and to design the instrumentation (optical or NMR relaxation measuring devices) needed to provide a novel, clinical dosimetry system.""""""""

Proposed Commercial Applications

NOT AVAILABLE

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Small Business Innovation Research Grants (SBIR) - Phase I (R43)
Project #
1R43RR012459-01
Application #
2436523
Study Section
Special Emphasis Panel (ZRG7-SSS-7 (55))
Program Officer
Stone, Helen B
Project Start
1998-06-01
Project End
1999-11-30
Budget Start
1998-06-01
Budget End
1999-11-30
Support Year
1
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Mgs Research, Inc.
Department
Type
DUNS #
837819226
City
Madison
State
CT
Country
United States
Zip Code
06443
Wilson, Barbara A; Venkatraman, Ramaiyer; Whitaker, Cedrick et al. (2005) Synthesis and structure-activity correlation studies of metal complexes of alpha-N-heterocyclic carboxaldehyde thiosemicarbazones in Shewanella oneidensis. Int J Environ Res Public Health 2:170-4
Han, Heyou; Tachikawa, Hiroyasu (2005) Electrochemical determination of thiols at single-wall carbon nanotubes and PQQ modified electrodes. Front Biosci 10:931-9
Quan, Zhe; Song, Yaru; Peters, Gladys et al. (2005) Chiral CE separation of dopamine-derived neurotoxins. Anal Sci 21:115-9
Ray, Anandhi; Feng, Manliang; Tachikawa, Hiroyasu (2005) Direct electrochemistry and Raman spectroscopy of sol-gel-encapsulated myoglobin. Langmuir 21:7456-60
Quan, Zhe; Song, Yaru; Saulsberry, Andrea et al. (2005) Capillary electrophoresis for diastereomers of (R,S)-tetrahydroisoquinoline-3-carboxylic acid derivatized with (R)-4-nitro-7-(3-aminopyrrolidin-1-yl)-2,1,3-benzoxadiazole: effect of molecular geometries. J Chromatogr Sci 43:121-5
Hwang, H M; Balarezo, A L; Jones, V N et al. (2004) Effect of river humic acid on 1-aminopyrene ecotoxicity in a dynamic solar photolysis process. Bull Environ Contam Toxicol 72:1059-66
Song, Yaru; Quan, Zhe; Evans, Joseph L et al. (2004) Enhancing capillary liquid chromatography/tandem mass spectrometry of biogenic amines by pre-column derivatization with 7-fluoro-4-nitrobenzoxadiazole. Rapid Commun Mass Spectrom 18:989-94
Wang, L; Cohly, H; Yan, J et al. (2004) UVA light-induced toxic effects of 1-hydroxypyrene on human jurkat T-cells. Bull Environ Contam Toxicol 72:1240-6
Dong, S; Hwang, H M; Harrison, C et al. (2000) UVA light-induced DNA cleavage by selected polycyclic aromatic hydrocarbons. Bull Environ Contam Toxicol 64:467-74