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Motion detection in goldfish investigated with the optomotor response is "color blind".

The action spectrum of the optomotor response in goldfish was measured to investigate which of the four cone types involved in color vision contributes to motion detection. In the dark-adapted state, the action spectrum showed a single maximum in the range of 500-520 nm, and resembled the rod spectral sensitivity function. Surprisingly, the action spectrum measured in the light-adapted state also revealed a single maximum only, located in the long wavelength range between 620 and 660 nm. A comparison with spectral sensitivity functions of the four cone types suggests that motion detection is dominated by the L-cone type. Using a two colored, "red-green" cylinder illuminated with two monochromatic lights separately adjustable in intensity, it could be shown that motion vision is "color-blind": the optomotor response disappeared whenever "isoluminant" red and green stripes were offered. Under this condition, calculations revealed that the L-cones were only slightly modulated by the "red-green" stimulus.

Adaptation, Ocular↗

Digital vision theory: Boolean logic model.

Guild (1932) stated the general requirements for processing signals in color vision system and a digital format of his paradigm is developed in this paper. The disk structure generates the digital receptor pulse. The input modalities form sets, linked by intersections, joins, and complement junctions. The synapses are elements in these junctions. Complex synapses form complex junctions to create Boolean logic processing. A computer program using these Boolean logic functions calculates: Light and dark adaptation responses; Color matching and spectral coordinate functions; Chromatic adaptation and color shift responses; and dynamic neural responses. These calculations compare favorably with the experimental data.

Adaptation, Physiological↗

Comparison of color and luminance vision on a global shape discrimination task.

We compared the performances of the blue-yellow, red-green and luminance systems on a shape discrimination task. Stimuli were radial frequency patterns (radially modulated fourth derivative of a Gaussian) with a peak spatial frequency of 0.75 cpd. Stimuli isolated the chromatic (red-green and blue-yellow) and achromatic post-receptoral mechanisms. We showed that in all cases performance, measured as a radial modulation threshold for discrimination between a circular and non-circular stimulus, improves with contrast. Performance was compared across radial frequencies with contrast matched in multiples of stimulus detection threshold. We find that blue-yellow color system performs the worse on this shape discrimination task, followed by the red-green, with the achromatic system performing best. The average difference is a factor of 2 between achromatic and blue-yellow performance, and a factor of 1.7 between red-green and achromatic. Despite these performance losses, chromatic shape discrimination can still reach hyperacuity performance levels. In a secondary experiment we contrast modulate the radial contour to eliminate either the "corners" or "sides" of an RF4 (square) pattern. We find that for the achromatic system, the sides are more important for the task than the corners. However, for the chromatic system, removal of sides or corners produces similar performance deficits. We conclude that color vision has a selective although relatively mild deficit for two-dimensional form perception.

Color Perception↗

Spatial structure of chromatically opponent receptive fields in the human visual system.

This study investigates the receptive-field structure of mechanisms operating in human color vision, by recording visual evoked potentials (VEPs) to multiharmonic gratings modulated either in luminance or color (red-green). Varying the Fourier phase of the harmonics from 0 deg to 90 deg produced a family of stimulus profiles that varied from lines to edges. The stimuli were contrast reversed to elicit steady-state VEPS, and also randomly jittered (at a higher temporal frequency than the contrast reversal) to ensure that the evoked response resulted from the polarity reversal, rather than from local variation of luminance or color. Reliable VEPs were recorded from both luminance and chromatic stimuli at all phases, suggesting that the mechanisms sensitive to chromatic contrast and those sensitive to luminance contrast have both symmetric and asymmetric receptive fields. Contrast thresholds estimated by extrapolation of the contrast response curves were very similar to psychophysical thresholds for phase discrimination, suggesting that the VEP response is generated by mechanisms mediating phase discrimination. The results support the idea that human color mechanisms have receptive fields with a variety of spatial symmetries (including odd- and even-symmetric fields) and that these mechanisms may contribute to phase discrimination of chromatic stimuli in a similar way to what has been suggested for luminance vision.

Color Perception↗

The growth regulators warts/lats and melted interact in a bistable loop to specify opposite fates in Drosophila R8 photoreceptors.

Color vision in Drosophila relies on the comparison between two color-sensitive photoreceptors, R7 and R8. Two types of ommatidia in which R7 and R8 contain different rhodopsins are distributed stochastically in the retina and appear to discriminate short (p-subset) or long wavelengths (y-subset). The choice between p and y fates is made in R7, which then instructs R8 to follow the corresponding fate, thus leading to a tight coupling between rhodopsins expressed in R7 and R8. Here, we show that warts, encoding large tumor suppressor (Lats) and melted encoding a PH-domain protein, play opposite roles in defining the yR 8 or pR8 fates. By interacting antagonistically at the transcriptional level, they form a bistable loop that insures a robust commitment of R8 to a single fate, without allowing ambiguity. This represents an unexpected postmitotic role for genes controlling cell proliferation (warts and its partner hippo and salvador) and cell growth (melted).

Animals↗

DISCO! Dissociation of cone opsins: the fast and noisy life of cones explained.

Vertebrate retinas contain two types of photoreceptors. Rods are for vision in dim light, while cones provide high-speed color vision in bright light. In this issue of Neuron, Kefalov et al. present data to explain the reduced sensitivity and faster response kinetics of cones. They show that the chromophore dissociates from cone but not rod visual pigment, yielding apo-opsin. This apo-opsin activates the signaling cascade to desensitize cones and speed the photoresponse.

Ambystoma↗

The visual cycle of the cone photoreceptors of the retina.

The photoreceptors of the eye's retina consist of rods and cones; rods serve vision in dim light, whereas cones serve high-resolution color vision in daylight. The first event in vision is the light-initiated isomerization of 11-cis-retinal, which is attached to rod or cone opsin, to all-trans-retinal. The regeneration of 11-cis-retinal comprises the well-known visual cycle in rods. By using cone-dominant retinas from chickens and ground squirrels, a visual cycle has been discovered in cones that differs radically from that in rods, mainly in the mechanism of isomerization of all-trans-retinol to 11-cis-retinol, and the latter's oxidation to 11-cis-retinal.

Animals↗

Ethambutol alters spinule-type synaptic connections and induces morphologic alterations in the cone pedicles of the fish retina.

PURPOSE: Ethambutol can cause optic neuropathy and deficiencies in color-opponent visual processing in patients treated for tuberculosis. In fish, Ethambutol induces color vision deficiencies similar to those observed in humans and affects color coding in retinal ganglion cells. Color opponency in fish is mainly mediated by a horizontal cell feedback onto cones thought to be provided by spinules. The authors examined whether Ethambutol affects spinules and is, therefore, able to alter color processing at a distal stage, that is, at the first synaptic connection within the retina. METHODS: Ethambutol was injected into the vitreous of either dark- or light-adapted fish. After drug application, fish were held under different illumination conditions. Thereafter, the retinas were dissected and prepared for electron microscopy. Ultrathin tangential sections of retinas were examined at the level of the outer plexiform layer. RESULTS: In already light-adapted retinas, a high dose of Ethambutol (10 mM) reduced the number of spinules by 30%. Ethambutol application in the dark with subsequent light adaptation resulted in severe dose-related inhibition of light-induced spinule formation. In these experiments, low doses (0.1 mM) of Ethambutol caused 40% inhibition, and high doses (10 mM) caused 70% inhibition. Besides affecting spinules, Ethambutol occasionally induced a degeneration of cone pedicles. This neurotoxicity only occurred in cones exposed to light. CONCLUSIONS: Results show that Ethambutol alters synaptic connections between horizontal cells and cones in a dose-related fashion; Ethambutol treatment can be toxic for cone pedicles and can cause their degeneration; and the rod pathway is not affected by the drug. This indicates that Ethambutol influences the color-coding process already at the level of the cone-horizontal cell synapse.

Animals↗

[Correctional aspects of anisometropia in railway machine operators].

The authors assessed occupationally significant visual functions in anisometropy varying in type and degree. Disorders of occupationally significant visual functions depend reliably on anisometropy degree. Correction of anisometropy with recovered vision and binocular functions restores all parameters of night and color vision. Optic and operative correction of anisometropy could be used for rehabilitation of railway machine operators with long length of service. The article provides recommendations to use intraocular lenses for artiphakia in railway machine operators.

Anisometropia↗

Numbers of word associations to color patches and color names differ across two opponent pairs.

68 female undergraduate students completed word-association and semantic-differential tasks in response to stimuli which were patches or names of eight colors. The number of word associations for the group viewing color patches differed from that of the group responding to color names on the basis of four colors forming two of the three opponent pairs of the opponent-process theory of color vision.

Adult↗

Changes in visual functions of children exposed as infants to prolonged illumination.

The visual system can be modified by early experience. Many infants requiring extensive medical treatment spend time in neonatal intensive care units in which they experience prolonged and relatively intense illumination. Visual functions were measured in a group of 7-year-old children who, as infants, were in intensive care for treatment of neonatal jaundice. Using procedures disguised as games, these children were tested for spatial and temporal resolution, receptor functions, and binocular vision. Especially in children whose eyes had not been shielded, deficits were found in color vision, spatial contrast sensitivity, and stereopsis, but not in rod vision.

Child↗

Remarks on signal-processing explanations of the trichromacy of vision.

We present criticism of signal-processing arguments recently used to explain the trichromacy of color vision. In particular, we note that illuminant spectral power distributions (SPD's) can be metameric even when the signal-processing arguments state that trichromatic vision represents such SPD's without ambiguity. Being statistical in nature, these arguments need not apply to each individual SPD; however, further use of the arguments calls for attributing them to some ensemble of SPD's and then testing whether the ensemble satisfies the underlying statistical assumptions.

Color Perception↗

The relationship between spectral sensitivity and spatial sensitivity for the primate r-g X-channel.

Which visual channel detects high spatial frequencies during careful fixation? Color vision models based on psychophysical data contradict electrophysiological results. According to electrophysiology, the channel which mediates foveal acuity originates in the small, tonic color-opponent r-g units of the X-cell pathway. However, psychophysical models assign acuity to the V lambda channel because when acuity is used as a criterion for equating luminosity it is additive. In all opponent-color models the r-g channel is subadditive and hence is excluded from mediating acuity. We show that the r-g channel adds cone signals for high spatial frequencies and subtracts them for low, and conclude that the major achromatic channel for human foveal vision originates within the r-g color-opponent channel. Quantitative analysis makes explicit the interaction between the spatial and spectral variables for the simple-opponent cells which predominate in primate foveal vision.

Color Perception↗

An epidemic in Cuba of optic neuropathy, sensorineural deafness, peripheral sensory neuropathy and dorsolateral myeloneuropathy.

An epidemic outbreak of peripheral neuropathy affected Cuba in 1992-93 resulting in 50,862 cases (national cumulative incidence rate (CIR) 461.4 per 100,000). Clinical forms included retrobulbar optic neuropathy, sensory and dysautonomic peripheral neuropathy, dorsolateral myeloneuropathy, sensorineural deafness, dysphonia and dysphagia, spastic paraparesis, and mixed forms. For epidemiological purposes, cases were classified as optic forms (CIR 242.39) or peripheral forms (CIR 219.25). Increased risk was found among smokers (odds ratio (OR) 4.9), those with history of missing meals (OR 4.7) resulting in lower intake of animal protein, fat, and foods that contain B-vitamins, combined drinking and smoking (OR 3.5), weight loss (OR 2.8), excessive sugar consumption (OR 2.7) and heavy drinking (OR 2.3). Optic neuropathy was characterized by decreased vision, bilateral and symmetric central or cecocentral scotomata, and loss of color vision due to selective lesion of the maculopapillary bundles. Peripheral neuropathy was a distal axonopathy lesion affecting predominantly large myelinated axons. Deafness produced selective high frequency (4-8 kHz) hearing loss. Myelopathy lesions combined dorsal column deficits and pyramidal involvement of lower limbs with spastic bladder. Clinical features were those of Strachan syndrome and beriberi. Intensive search for neurotoxic agents, in particular organophosphorus esters, chronic cyanide, and trichloroethylene intoxication, yielded negative results. Treatment of patients with B-group vitamins and folate produced rewarding results. Most patients improved significantly and less than 0.1% of them remained with sequelae; there were no fatal cases. Supplementation of multivitamins to the entire Cuban population resulted in curbing of the epidemic. Overt malnutrition was not present, but a deficit of micronutrients, in particular thiamine, cobalamine, folate and sulfur amino acids appears to have been a primary determinant of this epidemic.

Adolescent↗

Sensitivity to ultraviolet light in the gerbil (Meriones unguiculatus): characteristics and mechanisms.

In earlier electrophysiological experiments on the Mongolian gerbil (Meriones unguiculatus) evidence was obtained to suggest that the retina of this rodent contains only a single type of cone. The cones were found to have peak sensitivity of about 493 nm. Gerbil rods have peak sensitivity of about 500 nm, yielding a Purkinje shift that is small in magnitude and reversed in direction from that conventionally found among mammals. In a series of experiments we extended electrophysiological and behavioral measurements to include UV stimulation and this reveals a second photopic mechanism. Several pieces of evidence suggest this second mechanism is a cone having peak sensitivity of about 360 nm. Results from adaptation experiments show that the sensitivities of the two cone mechanisms can be independently manipulated, and thus they presumably reflect the operation of two types of cone photopigment. The results from behavioral experiments verify that the gerbil UV mechanism provides information that can be used to make visual discriminations based on intensity differences. A test of color vision additionally suggests that the two cone pigments can support some color discriminations.

Adaptation, Ocular↗

Advances in color matching.

Recent advances in color matching have been driven by the market demand for high-quality esthetic restorations. Improved shade guides, availability of shade-taking devices, and research in the area of human color vision have improved the potential of clinicians to achieve excellent color-matched restorations. A thorough understanding of appearance attributes of natural teeth is required along with these new tools to maximize shade-matching results.

Color Perception↗

Psychometric performance of the National Eye Institute visual function questionnaire in Latinos and non-Latinos.

OBJECTIVE: To compare the psychometric performance of Spanish versions of the 25-item National Eye Institute Visual Function Questionnaire (NEI VFQ-25) and the NEI VFQ-39 administered to Latino patients with the psychometric performance of the standard English NEI VFQ-25 and NEI VFQ-39 administered to non-Latino patients. DESIGN: Clinic-based cross-sectional survey. PARTICIPANTS: Four hundred three patients (160 Latinos and 243 non-Latinos) recruited from general ophthalmology clinics of an urban public hospital over a 6-month period. METHODS: Structured face-to-face interviews were conducted in Spanish and English to collect data for the NEI VFQ-25 and NEI VFQ-39. We calculated the mean, standard deviation, and percentage of participants having the minimum (floor) and maximum (ceiling) possible score for each item and scale. Internal consistency reliability of the NEI VFQ-25 and NEI VFQ-39 was estimated using the Cronbach alpha and average inter-item correlation. Construct validity for the instruments was assessed by comparing scores for participants classified as having normal versus impaired visual acuity. MAIN OUTCOME MEASURES: Instrument scales for general health; general vision; ocular pain; near activities; distance activities; vision-specific social functioning, mental health, role difficulties, and dependency; driving; color vision; and peripheral vision. RESULTS: Internal consistency reliability was significantly lower in the Spanish version than in the English version for 3 scales of the NEI VFQ-25. More importantly, 3 scales in the Spanish version manifested inadequate reliability (alpha< or =0.70), compared with only 1 inadequately reliable subscale in the English version. Reliability coefficients associated with the Spanish NEI VFQ-39 scales exceeded commonly accepted minimum standards. Comparison of reliability coefficients between Latino and non-Latino subgroups demonstrated statistically significant differences for 4 scales: Ocular Pain, Mental Health, Role Difficulties, and Dependency. In each case, the Latino group had the lower internal consistency reliability. However, only for the Ocular Pain subscale was reliability both significantly lower and inadequate (alpha<0.70). CONCLUSION: Overall performance of the NEI VFQ in Latino populations is adequate. However, in the absence of modifications to improve the reliability of specific Spanish version subscales, comparisons between Latino and non-Latino subgroups using the NEI VFQ must be interpreted with appropriate caution.

Adult↗

Effect of viewed color on hand-grip strength.

Published reports on the effects of viewed color on physical strength are compromised by failure to specify each of the three dimensions of the color stimuli used. The present study investigated the relationship between color and grip strength by independently measuring the effects of the three dimensions of color. 80 students with normal color vision were tested for hand-grip strength while viewing color-stimuli sets which differed only in hue, saturation, or lightness. A two-way analysis of variance with two repeated measures showed no significant difference in hand-grip strength with changes in any dimension of color. Formal equivalence testing indicated that these results were not due to low statistical power but rather to an actual similarity in grip strength across different viewing conditions. The findings give clear support to those studies that have found no relationship between viewed color and strength.

Color Perception↗