We have developed a non-invasive diagnostic instrument based on a scanning fluorophotometer integrating autofluorescence and dynamic light scattering techniques. The device makes a scan along the optical axis of the eye. In a DLS measurement, it is extremely important to precisely define the position of the volume-under-test inside the eye and its effective volume. In this work, a specific optical computer aided design tool based on the Navarro's model of the human eye is used to simulate the optical path of the DLS laser beams and to calculate position and size of the volume-under-test
Purpose. Dynamic light scattering (DLS) is a well known non-invasive diagnostic tool used in the ant...
Pharmacologic Vitreolysis is a new therapy intended to enzymatically liquefy vitreous and separate t...
The ability of the crystalline lens to change shape and bring near objects into focus is known as ac...
We have developed a non-invasive diagnostic instrument based on a scanning fluorophotometer integrat...
The paper describes an ophthalmic instrument designed to perform in-vivo dynamic light scattering an...
Over the past two decades, great efforts have been made in ophthalmology to use optical techniques b...
A new optical instrument for `in vivo' analysis of ocular tissue is presented. The instrument is bas...
Dynamic light scattering (DLS) and autofluorescence (AF) are non-invasive diagnostic techniques that...
A new optical instrument for in vivo dynamic light-scattering measurements in the human eye isdescri...
Dynamic light scattering (DLS) and autofluoresence (AF) are two promising optical diagnostic techniq...
The process and results of numerical Monte Carlo simulation of optical radiation propagation in lase...
Hollow-beam geometry, in conjunction with mode-selective detection, is of importance for the develop...
The adaptive optics scanning light ophthalmoscope used in this study consists of three main arms or ...
The authors report on the design of a system which will enable real time measurements of (therapeuti...
<p>To induce fluorescence, the sample is illuminated by incident laser light. The irradiating laser ...
Purpose. Dynamic light scattering (DLS) is a well known non-invasive diagnostic tool used in the ant...
Pharmacologic Vitreolysis is a new therapy intended to enzymatically liquefy vitreous and separate t...
The ability of the crystalline lens to change shape and bring near objects into focus is known as ac...
We have developed a non-invasive diagnostic instrument based on a scanning fluorophotometer integrat...
The paper describes an ophthalmic instrument designed to perform in-vivo dynamic light scattering an...
Over the past two decades, great efforts have been made in ophthalmology to use optical techniques b...
A new optical instrument for `in vivo' analysis of ocular tissue is presented. The instrument is bas...
Dynamic light scattering (DLS) and autofluorescence (AF) are non-invasive diagnostic techniques that...
A new optical instrument for in vivo dynamic light-scattering measurements in the human eye isdescri...
Dynamic light scattering (DLS) and autofluoresence (AF) are two promising optical diagnostic techniq...
The process and results of numerical Monte Carlo simulation of optical radiation propagation in lase...
Hollow-beam geometry, in conjunction with mode-selective detection, is of importance for the develop...
The adaptive optics scanning light ophthalmoscope used in this study consists of three main arms or ...
The authors report on the design of a system which will enable real time measurements of (therapeuti...
<p>To induce fluorescence, the sample is illuminated by incident laser light. The irradiating laser ...
Purpose. Dynamic light scattering (DLS) is a well known non-invasive diagnostic tool used in the ant...
Pharmacologic Vitreolysis is a new therapy intended to enzymatically liquefy vitreous and separate t...
The ability of the crystalline lens to change shape and bring near objects into focus is known as ac...