Muscle, spleen, and kidney tissues from 4-wk-old C57 black mice were studied by proton magnetic resonance. Spin-lattice relaxation times at high fields and in the rotating frame, as well as the spin-spin relaxation times, are reported as a function of temperature in the liquid and frozen phase. Motions of large molecules and of water molecules and their changes at the freezing phase transition are studied. The shortcomings of the two-state fast-exchange relaxation model are discussed
Nuclear magnetic resonance (NMR) measurements provide both structural and dynamical information abou...
The nuclear magnetic resonance relaxation times of solvent water nuclei are known to decrease upon a...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
NMR spin relaxation experiments performed on healthy mouse muscle tissue at 40 MHz and 293 K are rep...
A molecular theory is presented for the field-dependent spin-lattice relaxation time of water in tis...
measurements of water proton spin-lattice relaxation time, T1, at 20 and -15 degrees C have been per...
ABSTRACT Measurments of absolute proton signal intensities, free induction decays, spin-spin relaxat...
Measurements of absolute proton signal intensities, free induction decays, spin-spin relaxation time...
The origin of the nonexponentiality of proton spin echoes of skeletal muscle has been carefully exam...
The nuclear magnetic resonance (NMR) of water protons in live and glycerinated muscle, suspensions o...
Proton nuclear magnetic resonance (NMR) relaxation measurements are reported for frog muscle as a fu...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
Immobilized protein solute, approximately 20 wt %, alters the longitudinal and transverse nuclear ma...
The observation of the spin-echo decay in a long time domain has revealed that there exist at least ...
The results presented in this thesis demonstrate that the magnetic relaxation dispersion (MRD) techn...
Nuclear magnetic resonance (NMR) measurements provide both structural and dynamical information abou...
The nuclear magnetic resonance relaxation times of solvent water nuclei are known to decrease upon a...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
NMR spin relaxation experiments performed on healthy mouse muscle tissue at 40 MHz and 293 K are rep...
A molecular theory is presented for the field-dependent spin-lattice relaxation time of water in tis...
measurements of water proton spin-lattice relaxation time, T1, at 20 and -15 degrees C have been per...
ABSTRACT Measurments of absolute proton signal intensities, free induction decays, spin-spin relaxat...
Measurements of absolute proton signal intensities, free induction decays, spin-spin relaxation time...
The origin of the nonexponentiality of proton spin echoes of skeletal muscle has been carefully exam...
The nuclear magnetic resonance (NMR) of water protons in live and glycerinated muscle, suspensions o...
Proton nuclear magnetic resonance (NMR) relaxation measurements are reported for frog muscle as a fu...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
Immobilized protein solute, approximately 20 wt %, alters the longitudinal and transverse nuclear ma...
The observation of the spin-echo decay in a long time domain has revealed that there exist at least ...
The results presented in this thesis demonstrate that the magnetic relaxation dispersion (MRD) techn...
Nuclear magnetic resonance (NMR) measurements provide both structural and dynamical information abou...
The nuclear magnetic resonance relaxation times of solvent water nuclei are known to decrease upon a...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...