The water proton spin-lattice relaxation rate has been measured for a condensed 50% deuterated erythrocyte water system. Nuclear relaxation data, obtained in non-selective and selective modes, indicate that cross relaxation between erythrocyte and water protons occurs. The observed selective relaxation enhancement is interpreted in terms of intermolecular nuclear interactions modulated by motions which satisfy the ωoTc > 1 condition. Selective relaxation rates are here proposed to be more sensitive to interface characteristics than the non-selective ones. © 1983
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
The frequency dependence of the longitudinal relaxation rate, known as the magnetic relaxation dispe...
The concept that water in living cells may exist in a physical state different from that of normal l...
The water proton spin-lattice relaxation rate has been measured for a condensed 50% deuterated eryth...
Non-selective and selective longitudinal relaxation rates were measured for water protons in protein...
A molecular theory is presented for the field-dependent spin-lattice relaxation time of water in tis...
AbstractNMR water-proton spin-lattice relaxation times were studied as probes of water structure in ...
Five different types of expt. are described which make it possible to measure various relaxation rat...
In complex biological systems (e.g. gels, cross-linked proteins and biological tissues), the longitu...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
AbstractWater proton spin-lattice relaxation is studied in dilute solutions of bovine serum albumin ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
AbstractThe water-proton spin-lattice relaxation rate constant, 1/T1, was measured as a function of ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
The frequency dependence of the longitudinal relaxation rate, known as the magnetic relaxation dispe...
The concept that water in living cells may exist in a physical state different from that of normal l...
The water proton spin-lattice relaxation rate has been measured for a condensed 50% deuterated eryth...
Non-selective and selective longitudinal relaxation rates were measured for water protons in protein...
A molecular theory is presented for the field-dependent spin-lattice relaxation time of water in tis...
AbstractNMR water-proton spin-lattice relaxation times were studied as probes of water structure in ...
Five different types of expt. are described which make it possible to measure various relaxation rat...
In complex biological systems (e.g. gels, cross-linked proteins and biological tissues), the longitu...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
AbstractWater proton spin-lattice relaxation is studied in dilute solutions of bovine serum albumin ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
AbstractThe water-proton spin-lattice relaxation rate constant, 1/T1, was measured as a function of ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
Water-protein interactions help to maintain flexible conformation conditions which are required for ...
The frequency dependence of the longitudinal relaxation rate, known as the magnetic relaxation dispe...
The concept that water in living cells may exist in a physical state different from that of normal l...