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Clinical specular microscopy. I. Optical principles.

The clinical specular microscope yields a corneal endothelial image. Depending on the slit width of the illumination source, a typical endothelial photomicrograph contains three or four distinct zones. The appearance of the boundary between the endothelial cell pattern and the adjacent dark zone, called the dark boundary, reflects the configuration of the endothelial cell-aqueous humor interface and provides important information about the posterior corneal surface.

Adult

Allvar Gullstrand.

Explore the source record for details and available documents.

History, 19th Century

Contrast (modulation) sensitivity functions measured in patients with high refractive error with emphasis on aphakia: I. Theoretical considerations.

Recently, alterations in contrast (modulation) sensitivity functions of patients with high refractive errors have been noted. For example, this seems to be a common finding in aphakia. In some measure the observed alterations are due to the effect of the corrective lens and the optics of the eyes. These optical effects (in addition to blur) must be factored out in order to determine whether residual effects on the visual system remain. The argument is applicable to photographs of sine wave fringes as well as devices designed to produce interference patterns directly on the retina. A simple means for largely correcting these lens effects is discussed.

Aphakia

Mechanisms of chromosome banding. IV. Optical properties of the Giemsa dyes.

A thorough understanding of the mechanisms of R-, C- and G-banding will come only from studies of the binding of Giemsa dyes to isolated and characterized preparations of heterochromatin and euchromatin. Since such studies require an exact knowledge of the optical characteristics of Giemsa, the spectral absorption curves and extinction coefficients of Giemsa and its component dyes at various concentrations in the presence and absence of DNA were determined. - Although Giemsa is a complex mixture of thiazin dyes plus eosin; methylene blue, and azure A, B or C alone gave good banding. Thionin, with no methyl groups, gave poor or no banding. Eosin was not necessary component for banding. - The most striking characteristic of the thiazin dyes is that they are strongly metachromatic, i.e., their absorption spectra and extinction coefficients change as the concentration of the dye increases or as they bind to positively charged compounds (chromotropes). These changes, especially for methylene blue, are described in detail and allow a distinction between concentration dependent binding to DNA by intercalation and binding by side stacking.

Aniline Compounds

Why rods and cones?

A key problem in vision is to normalize one's lightness scale so that surface reflectances are always assigned the same gray value regardless of the illumination level. The solution requires an assessment of the relation between the strength of the illuminant and the strength of the image signal-information that is not available in the image alone. However, the level of scattered light in the optical system does provide an independent measure of the illuminant strength, and can be used to solve the lightness scale normalization problem. To do this requires a comparison between two imaging systems, each of which respond differently to the internal optical scatter. The rod and cone systems have properties that are ideally suited for such a role.

Color Perception

Molecular mechanism for the initial process of visual excitation. III. Theoretical studies of optical spectra and conformations of chromophores in visual pigments, their analogues and intermdiates based on the torsion model.

The torsion model with which we proposed to interpret the specific properties of the photoisomerization reaction of rhodopsin has been developed to apply to isorhodopsin I, isorhodopsin II and some intermediates. Based on this model, optical absorption wavelengths and oscillator strengths, as well as rotational strengths of visual pigments, analogues and intermediates at low temperatures are analyzed by varying twisted conformations of the chromophores. As a result, it was found that most of the optical data could be very well accounted for quantitatively by the torsion model. The twisting characters in the chromophore of rhodopsin are very similar to those of isorhodopsin. The obtained conformations of the chromophores are very similar in rhodopsin and its analogues, and in isorhodopsin and its analogues. Those of the chromophores of bathorhodopsin, lumirhodopsin and metarhodopsin I are similar to one another except that the conjugated chain of metarhodopsin I bends considerably when compared with the other intermediates.

Animals

Species-specific effects on the optical signals of voltage-sensitive dyes.

The absorption changes of two merocyanine dyes in response to membrane potential changes were measured on several neuronal preparations to see whether the dyes would be useful in recording from these cells. We were able to record large signals without averaging from barnacle and leech neurons. The greatest signal with WW375 was seen at 750 nm. Much smaller increases in transmitted light intensity were seen at all other wavelengths between 500 and 780 nm. In contrast, vertebrate neuronal preparations produced much smaller signals with an entirely different action spectrum. Essentially the same spectrum was seen in cells of the sympathetic ganglion of the bullfrog, Rana catesbiana, dissociated chick spinal cord neurons, or dissociated rat superior cervical ganglion neurons. In each case an action potential was accompanied by increases in transmitted light intensity between 500 and 600 nm and 730 and 780 nm, and decreases in intensity between 600 and 730 nm with the dye WW375, the best dye tested. Similar results were obtained with dye NK2367 on both vertebrate and invertebrate preparations, except that the spectral properties were shifted 30 nm towards the blue. Both dyes caused some photodynamic damage to the cultured neurons after a few minute's exposure to the illuminating light. Several analogues of these dyes were also tried, but did not produce larger signals.

Action Potentials

The optical quality of currently manufactured intraocular lenses.

We selected 95 intraocular lenses from ten lens manufacturers for a study of optical quality. Tremendous variation in resolution from a high of 313 line pairs per millimeter to a low of 40 line pairs per millimeter was seen. All of the lenses from eight manufacturers showed greater than 100 line pairs per millimeter resolution, the American National Standards Institute proposed minimum. Five of the 95 lenses had greater than 1.0 diopter error, whereas 79 of the 95 lenses had less than 0.5 diopter error from the stated power. With respect to toricity, there were 11 lenses with greater than 0.25 diopter (built-in astigmatism), however, no lenses showed more than 0.5 diopter astigmatism. Two lenses had a built-in double image, another clinically significant problem. We believe the optical quality of the lenses from some lens manufacturers cannot be guaranteed.

Lenses, Intraocular

An optical scan system for encoding and tabulation of visually scored sleep data.

A system for computer-assisted encoding, tabulation and analysis of visually scored sleep data is presented. The main features of the system are: (1) The use of computer-readable optical scan sheets for direct encoding of the sleep data. This eliminates the need for a separate transcription and/or key-punching operation. (2) The development of a visually scored data base, organized by NREM and REM periods, which contains all items of visually scored data indexed by time and/or page of occurrence in the sleep record. The advantages of this new system are: (a) the low cost per night of operation; (b) the facilitation of analysis of cycle phenomena and testing of new hypotheses that would usually involve retabulation of the data; and (c) the facilitation of analysis of real-time correlates of visually scored sleep stages.

Computers