In this work, we propose a relaxation model for the interpretation of NMR proton spin-lattice and spin-spin relaxation times of mammalian lenses. The framework for this model is based on nuclear magnetic spin-lattice relaxation measurements as a function of temperature at different Larmor frequencies for whole rabbit lenses and fragments of the lens. According to this model, two different dynamic processes of the water molecules determine the relaxation behaviour, namely rotational diffusion and translational surface diffusion. These dynamic processes in conjuction with a two site exchange model give a good explanation of all the measured relaxation data. From the experimental data, we were able to obtain the activation parameters fbr rotat...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
In this work, we propose a relaxation model for the interpretation of NMR proton spin-lattice and sp...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
Water molecules in the lenses of animal eyes exist in two different states: water which is bound to ...
Water molecules in the lenses of animal eyes exist in two different states: water which is bound to ...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
In this work, we propose a relaxation model for the interpretation of NMR proton spin-lattice and sp...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
In this work, we propose a relaxation model for the interpretation of NMR proton spinlattice and spi...
Water molecules in the lenses of animal eyes exist in two different states: water which is bound to ...
Water molecules in the lenses of animal eyes exist in two different states: water which is bound to ...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...
The dynamic properties of water molecules in the rabbit lens were studied by proton nuclear magnetic...