Translational and rotational diffusion of fluorescent molecules on the surface of small biological systems such as vesicles, proteins and micelles depolarize the fluorescence. A recent study has treated the case of the translational dynamics of surface probes (M. M. G. Krishna, R. Das, N. Periasamy and R. Nityananda, J. Chem. Phys., 112 (2000) 8502-8514) using Monte Carlo and theoretical methods. Here we extend the application of the methodologies to apply the case of rotational dynamics of surface probes. The corresponding fluorescence anisotropy decays were obtained using the Monte Carlo simulation methods for the two cases: surface probes undergoing rotational dynamics on a plane and on a sphere. The results were consistent with the theo...
The theory of fluorescent emission anisotropy [r(t)] of a cylindrical probe in a membrane suspension...
A method has been developed for the measurement of the rotational motion of membrane components. In ...
Time decay of the fluorescence anisotropy ratio due to diffusion of dyes in micelles is usually inte...
Translational and rotational diffusion of fluorescent molecules on the surface of small biological s...
Structural properties of model membranes, such as lipid vesicles, may be investigated through the ad...
Translational diffusion of fluorescent molecules on curved surfaces (micelles, vesicles, and protein...
Translational diffusion of fluorescent molecules on curved surfaces (micelles, vesicles, and protein...
The fast dynamics of biomolecular systems are believed to be important to their physiological functi...
Fluorescence depolarization is a powerful technique in resolving dynamics of molecular systems. Data...
Fluorescence depolarization is a powerful technique in resolving dynamics of molecular systems. Data...
We discussed the time-dependence of fluorescent emission anisotropy of a cylindrical probe in membra...
The analytical expression for the polarization anisotropy is derived for a luminophore undergoing ro...
Effects of internal rotation on the fluorescence decay functions and time-dependent anisotropies of ...
We introduce the time-resolved phosphorescence anisotropy (TPA) method to study rotational diffusion...
AbstractA novel method, single-molecule anisotropy imaging, has been employed to simultaneously stud...
The theory of fluorescent emission anisotropy [r(t)] of a cylindrical probe in a membrane suspension...
A method has been developed for the measurement of the rotational motion of membrane components. In ...
Time decay of the fluorescence anisotropy ratio due to diffusion of dyes in micelles is usually inte...
Translational and rotational diffusion of fluorescent molecules on the surface of small biological s...
Structural properties of model membranes, such as lipid vesicles, may be investigated through the ad...
Translational diffusion of fluorescent molecules on curved surfaces (micelles, vesicles, and protein...
Translational diffusion of fluorescent molecules on curved surfaces (micelles, vesicles, and protein...
The fast dynamics of biomolecular systems are believed to be important to their physiological functi...
Fluorescence depolarization is a powerful technique in resolving dynamics of molecular systems. Data...
Fluorescence depolarization is a powerful technique in resolving dynamics of molecular systems. Data...
We discussed the time-dependence of fluorescent emission anisotropy of a cylindrical probe in membra...
The analytical expression for the polarization anisotropy is derived for a luminophore undergoing ro...
Effects of internal rotation on the fluorescence decay functions and time-dependent anisotropies of ...
We introduce the time-resolved phosphorescence anisotropy (TPA) method to study rotational diffusion...
AbstractA novel method, single-molecule anisotropy imaging, has been employed to simultaneously stud...
The theory of fluorescent emission anisotropy [r(t)] of a cylindrical probe in a membrane suspension...
A method has been developed for the measurement of the rotational motion of membrane components. In ...
Time decay of the fluorescence anisotropy ratio due to diffusion of dyes in micelles is usually inte...