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Color fusion and flicker fusion frequencies using tritanopic pairs.

We determined color fusion and flicker fusion frequencies for tritanopic color pairs, so that only short wavelength sensitive cones were modulated. The minimally distinct border (MDB) technique was used to determine tritanopic pairs for each observer. If S-cones do not contribute to the luminance channel, color fusion and flicker fusion frequencies should be equal, because the achromatic flicker perceived beyond color fusion frequency is supposed to be elicited just by the luminance channel. The results show a significant difference between color fusion and flicker fusion frequencies for all pairs and for all subjects, which suggests a contribution of S-cones to the luminance channel. However, the results also showed that the residual achromatic flicker can not be eliminated by adjusting relative luminance of two colors flickering in counter-phase. The relative luminance stayed the same as the MDB setting when residual flicker was minimized. This means that minimum flicker was obtained when L- and M-cones are temporally silenced, and suggests little or no contribution of S-cones to luminance channel. These conflicting results might be explained by phase shift between responses of S-cones and other longer-wavelength-sensitive cones.

Adult

The flicker-fusion threshold in schizophrenia and depression.

The flicker-fusion threshold was determined in 76 patients who complained of depression and who were diagnosed as suffering from either schizophrenia or depression. It was found to be lowered in schizophrenia and lowered further in depression as compared with 28 healthy volunteers. The differences between the three groups were all highly significant with P less than 0.0005 in each case. The flicker-fusion threshold was found to be lowered by intravenous chlorpromazine and raised by intravenous amitriptyline, so it is unlikely that these differences were due to medication that the patients had been taking.

Amitriptyline

Flicker fusion thresholds in Best macular dystrophy.

Flicker fusion threshold intensities were measured as a function of flicker frequency for patients with Best macular dystrophy having normal or near-normal Snellen visual acuity. These data were found to differ from normal in ways that may be interpreted to be an abnormal elevation of the foveal cone threshold, a loss of cone temporal resolution, or both. The results led to the conclusion that Best macular dystrophy affects the neurosensory retina even when Snellen visual acuity is normal.

Flicker Fusion

Behavioral determination of critical flicker fusion in dogs.

Steady-state critical flicker-fusion frequencies (CFFs) were determined for four beagle dogs using the psychophysical technique of conditioned suppression. The CFFs obtained demonstrated that the dog can discriminate flicker at much faster rates than has been suggested by ERG data. In addition, dog rods may support the discrimination of flicker at much higher rates than can human rods. An indication of a psychophysical rod-cone break occurred at a luminance level intermediate to those previously reported in ERG CFF studies. This level is similar to that in the cat, but much higher than that in man. The high CFFs provide the first psychophysical evidence of a well-developed functioning cone system in the dog.

Animals

Flicker fusion thresholds in multiple sclerosis. A functional measure of neurological damage.

Patients with multiple sclerosis (MS) have been shown to have a measurable deterioration in the ability to perceive temporal variations of light. Compared to the traditional critical flicker fusion (CFF) measure, a modified flicker fusion test showed an improved sensitivity for denoting neurological deficit in temporal vision. One hundred twenty-two patients with MS were examined. The traditional CFF test exhibited abnormalities in 48%; the modified test exhibited abnormalities in 78% of the same patients. These results appear to be independent of whether or not the demyelinating disease clinically involved the visual system. Also, the percentage of abnormalities demonstrated by combining both techniques was unexpectedly high (60% to 80%) in patients with minimal evidence of neurological involvement.

Flicker Fusion

[Changes in psychological performance parameters of concentration and critical flicker-fusion frequency with advancing age and in relation to diffuse cerebral arterial affections of the circulation].

Psychometric performance parameters and the critical flicker-fusion frequency are studied in various groups and in patients with chronic cerebral circulation trouble. Test d2 proves to be effective in the measuring of such impaired performance. There is a higher degree of correlation with Paul's addition test. A correlation between the performance parameters and the patient's age can be statistically substantiated. Among patients up to one third in the age group 55 and over show and affection of the cerebral performance turbances in spite of the absence of pathological clinical findings. The figure is twice as high in the group of patients undergoing treatment. The increased occurrence in old age shows the significance of pathological processes. There appears to be no relationship between critical flicker-fusion frequency and performance and stress factors. Individual correlations would support other physiological relations, such as an at present only hypothetical link with the psychic state (nervousness) of the test person. Our tables are suitable for practical purposes.

Adolescent

[The influence of centrally acting drugs on flicker fusion frequency].

From the research results given we may conclude that the flicker fusion frequency is reduced not only by tranquillisers but also by neuroleptic drugs. The records obtained of the effect of the dosage can be seen as a measure of the efficiency of this method. It should be established by means of similar experiments, by including additional substances, in which regions of the cortico-retinal system the site of action should be presumed to be.

Caffeine

Effects of fasting on visual flicker fusion.

Two experiments are reported which investigated the effects of fasting on visual flicker fusion (VFF). In Exp. 1 the VFF of 40 undergraduate students, 20 men and 20 women, whose mean age was 22.5 yr., was measured in nonfasting conditions 1 to 2 weeks before and in fasting conditions during the Muslim fasting month of Ramadan. In Exp. 2 the VFF of a comparable group of 15 men and 15 women, whose mean age was 23.2 yr., was measured in a different month in both fasting and nonfasting conditions. Subjects were assigned randomly to these two conditions. Analysis shows that fasting reduced VFF significantly in both experiments. This finding indicates that fasting is likely to reduce perceptual sensitivity. The results were explained in terms of fatigue and physical exhaustion effects produced by fasting.

Adult

Retinal and cortical activity in human subjects during color flicker fusion.

Pattern electroretinograms (PERG) and cortical visually evoked potentials (VEP) were simultaneously recorded from 7 visually normal and 1 protanopic subjects. Stimuli were color checkerboards (0.5 degrees check size), phase-reversing at 17 Hz (i.e. 34 reversals/sec). Using a stepwise sweep procedure, the luminance of the red (lambda peak = 550 nm) and green (lambda peak = 630 nm) checks varied in 11 steps in opposite directions from 0 to 30 cd/m2, embracing the subjective equiluminance point. For normal subjects at subjective equiluminance, the VEP amplitude dropped sharply down to 13 +/- 2% of the value at pure luminance contrast. The PERG, however, was only reduced to 56 +/- 10% at this point, an attenuation 4 times less than that of the VEP. In contrast to normal subjects, in the protanopic subject the PERG was sharply reduced at equiluminance, parallel to the VEP. This would be expected when L-cones are missing. Assuming that the PERG reflects the activity of the retinal ganglion cells, our findings suggest that human retinal ganglion cells respond well under the condition of equiluminant flicker fusion, which is in agreement with recent single-cell studies in the monkey. Consequently, the temporal low-pass filter, which mediates color-flicker fusion, would seem to lie central to the retinal ganglion cells.

Adult

Flicker fusion thresholds of red-green dichromats.

Measurements of the relative energies required for critical flicker fusion (CFF) at each of 14 wavelengths were obtained in normal, protanopic, and deuteranopic observers. Normals required more energy beyond 580 nm in going from 30 to 40 flashes per second than protanopes or deuteranopes. This suggests an adaptational collapse of the red-sensitive mechanism of normals which is not present in the red cones of deuteranopes or the green cones of protanopes over the same intensity range.

Color Vision Defects

[The effect of a monotonous repetitive task on flicker fusion and subjective feelings].

The effects of a uniform repetitive and of an activating task on critical flicker fusion (cff) and subjective feelings were measured on 15 subjects under laboratory conditions. With the uniform repetitive task the cff decreased significantly and the subjective feelings showed marked changes. With the activating task we could determine changes neither for cff nor for subjective feelings (except factor "subjective recovery").

Boredom

Double branched flicker fusion curves from the all-rod skate retina.

Electrical responses from the skate retina will only follow flicker up to frequencies of 5 hertz when intensities are below rod saturation. At greater luminances, the eye responds to rates as high as 30 hertz. As a result, a plot of critical flicker fusion as a function of intensity is a double branched curve. It seems that prolonged stimulation of skate rods, at high intensities, permits them to change their temporal response characteristics so that they follow high frequencies much as cones do in the duplex retina.

Animals

A comment on critical flicker fusion as an objective measure of alcohol tolerance by alcoholics.

A previous paper reported that for alcoholics the threshold for critical flicker fusion is relatively unchanged by the ingestion of alcohol and concluded therefore that the technique could be used to indicate tolerance to alcohol. The present paper urges caution in this respect owing to the evidence that clinical subjects frequently adopt more cautious response strategies than normals with psychophysical procedures. Reports are also reviewed which indicate that alcoholics consume more tobacco than normals and that the stimulant effect of nicotine could antagonize the depressant effect of alcohol on CFF.

Alcoholism

Information processing, critical flicker fusion threshold and benzodiazepines: results and speculations.

There is evidence to suggest that the rate of information processing, as measured by the critical flicker fusion threshold (CFFT), is slower following some benzodiazepines than others. Changes in CFFT brought about by benzodiazepine administration are usually, but not always, correlated with changes in other measures of cognitive performance and memory. However, the drug-induced changes in information processing and memory cannot be fully explained by simple postulates regarding alterations in the overall level of CNS arousal. Results from a series of studies of the effect of benzodiazepines on measures of CFFT and memory will be reviewed and the utility of CFFT in evaluating the amnesic or mnemonic potential of CNS-active drugs will be assessed.

Anti-Anxiety Agents

Foveal flicker-fusion frequencies: a simple, new apparatus (4F).

While spatial resolution may be easily assessed with contrast-sensitivity frequency (CSF) data, determination of foveal flicker-fusion frequency (4F) is a simple method of providing the ophthalmic practitioner with accurate information about temporal resolution. The authors describe a simple apparatus that controls luminance, light intensity, light intervals, stimulus size, homogeneity of background illumination, and binocular gaze, especially when using two wavelengths, allowing an increased number of applications with reliable and comparable results. It may prove to be a useful tool for screening, clinical and subclinical assessment, and for evaluating visual acuity, also during follow-up.

Adolescent

Variegated color sensations from rod-cone interactions: flicker-fusion experiments.

Multicolored images were produced by the combination of two different color-separation images, one illuminated with 656 nm light and the other illuminated with 500 nm light. Flicker-fusion frequency measurements were used to identify the conditions in which the 500 nm light was below cone threshold. Under those conditions the multicolored images were shown to be generated by rod and long-wave cone interactions.

Color Perception

Critical flicker-fusion frequency as an indicator of human receptive field-like properties.

A psychophysical function, believed to reflect receptive field-like properties, is described. It is based on the determination of the critical flicker fusion frequency (CFF) of a tiny test target, centered on a round background of fixed luminance, the size of which is varied as the test parameter. Under optimal conditions, the maximal obtained frequency difference is 10 Hz. This function is compared with the so-called sustained-like function, with which it has some common aspects. Additionally, a portion of the flicker-based function apparently derives from a non-sustained-like source.

Flicker Fusion

[Evaluation of the effects of pneumogenic hypoxemia on the nervous tissue by the determination of the critical flicker fusion frequency of the central retina].

Considering the eye an extroflection of the brain it is possible to detect a decrease of nervous tissues efficiency during hypoxia through a deficit of eye function. The authors studied a highly specialized retinal function that is extremely sensitive to low values of PaO2: the so called "critical flicker fusion frequency". The authors tested 14 patients with respiratory disorders and PaO2 levels between 36.5 and 67.1 mmHg. All patients showed impairment of this function.

Adult