The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(8) Hz at several temperatures, and the deuteron T1 of muscle water was studied from 2.0 X 10(3) to 1.54 X 10(7) Hz at several temperatures. Proton T1's of muscle and brain water with different D2O contents were measured at 25 degrees C and 35 MHz. From the results of variable frequency and temperature measurements and the data of isotope substitution, it is concluded that the major relaxation mechanism for the protons in muscle water is the intermolecular dipolar interaction between the protons of the macromolecules and the protons of the water molecules in the hydration layer. It is also suggested that the relaxation of deuterons can be acco...
The inflection frequency of the deuteron magnetic relaxation dispersion from water in rotationally i...
The deuterated hydration shells of bovine serum (BSA) albumin, and purple membrane sheets have been ...
Proton nuclear magnetic resonance relaxation investigations of water dynamics in hydrated protein po...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
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...
Whole gastrocnemius muscles were incubated in Ringer's solution enriched with H2–17O; the paired con...
Whole frog sartorius and gastrocnemius muscles were incubated in Ringer's solutions, either unenrich...
The electric quadrupole moment of the deuterium nucleus provides a nuclear magnetic resonance (NMR) ...
Spin-lattice (T1) and spin-spin (T2) relaxation times of proton, deuteron, and oxygen-17 in muscle w...
Proton nuclear magnetic resonance (NMR) relaxation measurements are reported for frog muscle as a fu...
The observation of the spin-echo decay in a long time domain has revealed that there exist at least ...
The nuclear magnetic reasonance (NMR) relaxation times of protons in toad muscle water have been mea...
Kimmich and co-workers (cf., Winter, F., and R. Kimmich. 1982. Biochim. Biophys. Acta. 719:292–298) ...
ABSTRACT Measurments of absolute proton signal intensities, free induction decays, spin-spin relaxat...
The inflection frequency of the deuteron magnetic relaxation dispersion from water in rotationally i...
The deuterated hydration shells of bovine serum (BSA) albumin, and purple membrane sheets have been ...
Proton nuclear magnetic resonance relaxation investigations of water dynamics in hydrated protein po...
The spin-lattice relaxation time (T1) of water protons in mouse muscle was studied from 10(4) to 10(...
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...
Whole gastrocnemius muscles were incubated in Ringer's solution enriched with H2–17O; the paired con...
Whole frog sartorius and gastrocnemius muscles were incubated in Ringer's solutions, either unenrich...
The electric quadrupole moment of the deuterium nucleus provides a nuclear magnetic resonance (NMR) ...
Spin-lattice (T1) and spin-spin (T2) relaxation times of proton, deuteron, and oxygen-17 in muscle w...
Proton nuclear magnetic resonance (NMR) relaxation measurements are reported for frog muscle as a fu...
The observation of the spin-echo decay in a long time domain has revealed that there exist at least ...
The nuclear magnetic reasonance (NMR) relaxation times of protons in toad muscle water have been mea...
Kimmich and co-workers (cf., Winter, F., and R. Kimmich. 1982. Biochim. Biophys. Acta. 719:292–298) ...
ABSTRACT Measurments of absolute proton signal intensities, free induction decays, spin-spin relaxat...
The inflection frequency of the deuteron magnetic relaxation dispersion from water in rotationally i...
The deuterated hydration shells of bovine serum (BSA) albumin, and purple membrane sheets have been ...
Proton nuclear magnetic resonance relaxation investigations of water dynamics in hydrated protein po...