The high resolution proton magnetic resonance spectrum of the sciatic nerve of the frog was studied in both the polarized and depolarized states. Paramagnetic salts were introduced into the system in order to separate the signals from the intra- and extracellular environments. It was determined that about 65% of the proton signal from the nerve trunk was accounted for by the intracellular environment in the polarized nerve trunk and that this percentage decreased to about 34% in the depolarized case.The temperature dependence of the line widths of the intracellular proton signal was studied. The enthalpy and entropy of activation for proton exchange between the intra- and extracellular environments were found to be 11.1 kcal/mole and -17.1 ...
AbstractFrog sciatic nerve and its thin bundles were loaded with fluorescein diacetate in order to m...
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 high resolution proton magnetic resonance spectrum of the sciatic nerve of the frog was studied ...
Proton magnetic resonance spectra (220-megahertz field) of an isolated rabbit sciatic nerve in its n...
The nuclear magnetic reasonance (NMR) relaxation times of protons in toad muscle water have been mea...
From the earliest days of nuclear magnetic resonance investigation, the ability of para-magnetic ion...
NMR-spin echo method has been used to study spin-lattice relaxation time of protons T1 in plant and ...
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...
1. The behaviour of intracellular pH (pHi) was studied with micro-electrodes in frog semitendinosus ...
1. The properties of the systems that regulate intracellular pH (pHi) in frog muscle (Rana pipiens) ...
An extensive investigation of water NMR response in the mucular tissue (frog gastrocnemius) is prese...
The authors have studied the effect of the paramagnetic ions - Mn2+ and Fe3+ - on the spin-lattice r...
The nuclear magnetic resonance linewidth of 1H in water of frog muscle was studied as a function of ...
AbstractFrog sciatic nerve and its thin bundles were loaded with fluorescein diacetate in order to m...
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 high resolution proton magnetic resonance spectrum of the sciatic nerve of the frog was studied ...
Proton magnetic resonance spectra (220-megahertz field) of an isolated rabbit sciatic nerve in its n...
The nuclear magnetic reasonance (NMR) relaxation times of protons in toad muscle water have been mea...
From the earliest days of nuclear magnetic resonance investigation, the ability of para-magnetic ion...
NMR-spin echo method has been used to study spin-lattice relaxation time of protons T1 in plant and ...
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...
1. The behaviour of intracellular pH (pHi) was studied with micro-electrodes in frog semitendinosus ...
1. The properties of the systems that regulate intracellular pH (pHi) in frog muscle (Rana pipiens) ...
An extensive investigation of water NMR response in the mucular tissue (frog gastrocnemius) is prese...
The authors have studied the effect of the paramagnetic ions - Mn2+ and Fe3+ - on the spin-lattice r...
The nuclear magnetic resonance linewidth of 1H in water of frog muscle was studied as a function of ...
AbstractFrog sciatic nerve and its thin bundles were loaded with fluorescein diacetate in order to m...
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...