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NMR relaxation of protons in tissues and other macromolecular water solutions
Authors:Gary D Fullerton PhD  Janet L Potter MD  NCarol Dornbluth MD
Institution:

Radiology Department UTHSCSA, University of Texas, San Antonio, Texas, USA

Abstract:Nuclear magnetic resonance (NMR) longitudinal (T1) and transverse (T2) relaxation parameters have been evaluated for protein solutions, cellular suspensions and tissues using both data from our laboratory and the extensive literature. It is found that this data can be generalized and explained in terms of three water phases: free water, hydration water, and crystalline water. The proposed model which we refer to as the FPD model differs from similar models in that it assumes that free and hydration water are two phases with distinct relaxation times but that T1 = T2 in each phase. In addition there is a single correlation time for each rather than a distribution as assumed in most other models. Longitudinal decay is predicted to be single exponent in character resulting from a fast exchange between the free and hydration compartments. Transverse decay is predicted to be multiphasic with crystalline (T2 not, vert, similar 10 μsec), hydration (T2 not, vert, similar 10 sec) and free (T2 not, vert, similar 100 sec) water normally visible. The observed or effective transverse relaxation times for both the hydration and free water phases are greatly affected by the crystalline phase and are much shorter than the inherent relaxation times.
Keywords:Author Keywords: Nuclear magnetic resonance (NMR)  Protons  Water relaxation times  Longitudinal decay  T1  Transverse decay  T2  Protein solutions  Tissue characteristics
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