Zobrazeno 1 - 9
of 9
pro vyhledávání: '"Georgi I. Zheltov"'
Publikováno v:
SPIE Proceedings.
The radial distribution of Gaussian beams radiation intensity on the focal plain of the ocular optical system has been calculated using the human eye Modulation Transfer Function. The dependencies of the distribution on the distance to the beam's con
Publikováno v:
Ophthalmic Technologies V.
Action on biotissues of power laser pulses about 20 nsec was investigated by using high level mathematical model. The system of equations contains five unknown functions: temperature, pressure, axial and radial convection velocity, density. The 2D so
Publikováno v:
Lasers in Ophthalmology II.
High level mathematical models have been used for optimizing regimes of photocoagulation of choroid new growths with minimal damage of the sensitive retina. Supposed spectral range and temporal irradiation regimes have given good results in experimen
Publikováno v:
SPIE Proceedings.
A mathematical model of interaction between laser radiation and multilayer biological tissue has been developed. At a pulse duration shorter than 1 ms acoustic or shock waves are generated in the tissues simultaneously with a rapid temperature rise.
Autor:
V. N. Glazkov, A. Linnik, Yu. A. Ivanishko, Alexander P. Privalov, M. V. Belokon, A. I. Kirkovsky, Georgi I. Zheltov, Alexander S. Podol'tsev
Publikováno v:
SPIE Proceedings.
The article is devoted to photocoagulation of the chorioretinal complex by two laser wavelengths (lambda) 1 and (lambda) 2 simultaneously with a controlled ratio of these components intensities. The thermal and biological effects such as mixing under
Publikováno v:
SPIE Proceedings.
The report includes information about the new solid laser ophthalmocoagulator working at two wavelengths (lambda) 1 and (lambda) 2 simultaneously with a controlled ratio of these components intensities. The thermal and biological effects such as mixi
Publikováno v:
SPIE Proceedings.
In this paper we consider the results of investigations and mathematical modeling of the main physical processes leading to fundus tissue destruction under the action of 10 ns - 1. 0 s radiation pulses of the visible and near IR spectral ranges as ap
Conference
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Conference
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