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1.
Vision plays a paramount role in some spider families such as the Salticidae, Lycosidae and Thomisidae, as it is involved in prey hunting, orientation or choice of substrate. In the thomisid Misumena vatia, for which the substrate colour affects the body colour, vision seems to mediate morphological colour changes. However, nothing is known about which component of visual signals from the substrate might be perceived, nor whether M. vatia possesses the physiological basis for colour vision. The aim of this study is thus to investigate the vision of this spider species by measuring the spectral sensitivities of the different pairs of eyes using electrophysiological methods. Extra- and intracellular electrophysiological recordings combined with selective adaptation revealed the presence of two classes of photoreceptor cells, one sensitive in the UV region of the spectrum (around 340 nm) and one sensitive in the green (around 520 nm) regions in the four pairs of eyes. We conclude that M. vatia possesses the physiological potential to perceive both chromatic and achromatic components of the environment. 相似文献
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Three caste groups of the Maharashtrian population, namely Brahmin (N=58), Maratha (N=989) and Scheduled caste (N=1073), were
studied for defective colour vision and for the ability to taste phenylthiocarbamide (PTC). Comparisons of defective colour
vision and PTC taste sensitivity were made with other Maharashtrian populations studied previously by various authors.
The incidence of defective colour vision is lowest among the Brahmins (3.44%) and highest in the Scheduled caste people (4.28%).
Taste sensitivity to PTC is highest among the Brahmins (72.5%) with a value which is close to the Vednagar Brahmins (73.3%)
who show the highest frequency of the ‘T’ gene recorded so far in Maharashtra. 相似文献
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G Buchsbaum J L Goldstein 《Proceedings of the Royal Society of London. Series B, Containing papers of a Biological character. Royal Society (Great Britain)》1979,205(1159):245-266
A statistical approach to account for psychophysical phenomena in human colour vision is presented. The central visual processor is viewed as an optimum recognizer of stochastic patterns supplied by the periphery. The processor makes an optimum estimate of the spectral parameters of the stimulus, given the wavelength filter characteristics of the periphery, the stochastic nature of the information and an internal template to which the external stimulus is matched. The estimate is constrained in ways inferred from empirical phenomena. Subjective brightness of monochromatic stimuli and related constant brightness manifolds in the colour space constitute the constraint for brightness estimation. Results analogous and in accord with those of earlier line element theories are obtained. The Bezold-Brücke hue shift constitutes the basic constraint for hue estimation. The hue estimate involves interrelation between the fields in the experiment. Similarities and differences both in basic conceptions and results introduced by the template matching notions are discussed. 相似文献
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In the oceanic midwater environment, many fish, squid, and shrimp use luminescent countershading to remain cryptic to silhouette-scanning predators. The mid-water penaeid shrimp, Sergestes similis Hansen, responds to downward-directed light with a dim bioluminescence that dynamically matches the spectral radiance of oceanic down-welling light at depth. Although the sensory basis of luminescent countershading behavior is visual, the relationship between visual and behavioral sensitivity is poorly understood. In this study, visual spectral sensitivity, based on microspectrophotometry and electrophysiological measurements of photoreceptor response, is directly compared to the behavioral spectral efficiency of luminescent countershading. Microspectrophotometric measurements on single photoreceptors revealed only a single visual pigment with peak absorbance at 495 nm in the blue-green region of the spectrum. The peak electrophysiological spectral sensitivity of dark-adapted eyes was centered at about 500 nm. The spectral efficiency of luminescent countershading showed a broad peak from 480 to 520 nm. Both electrophysiological and behavioral data closely matched the normalized spectral absorptance curve of a rhodopsin with lambda(max) = 495 nm, when rhabdom length and photopigment specific absorbance were considered. The close coupling between visual spectral sensitivity and the spectral efficiency of luminescent countershading attests to the importance of bioluminescence as a camouflage strategy in this species. 相似文献
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Ethan E. Allen Russell D. Fernald 《Journal of comparative physiology. A, Neuroethology, sensory, neural, and behavioral physiology》1985,157(2):247-253
Summary Spectral sensitivity of the cichlid fishHaplochromis burtoni was measured under both scotopic and photopic conditions using a two-choice, food reward, operant conditioning paradigm. The highest absolute sensitivity (scotopic) is one quantum for every 5 to 50 rods measured at 475 nm (equivalent to a corneal irradiance of 3.8×106 Q s–1 cm–2). A P5001 photopigment apparently mediates spectral sensitivity over most of the visible spectrum; microspectrophotometric studies of rods had previously shown them to contain this photopigment. However, the scotopic behavioral action spectrum shows a sensitivity to short wavelength light higher than is consistent with a P5001 photopigment alone mediating the scotopic visual process. Determinations made under photopic conditions reveal a behavioral action spectrum broader than that found under scotopic conditions and consistent with mediation by interaction of the three known cone types in an opponent processing manner. The calculated photopic threshold value of approximately 104 Q s–1 (receptor)–1 is in agreement with results from other species and corresponds to a corneal irradiance of about 7×1010Q s–1cm–2. 相似文献
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C M Williams 《The British journal of physiological optics》1976,31(4):29-31
Results are reported of a preliminary survey of colour vision changes in fifteen patients with central serous retinopathy. Colour vision was monitored with the HRR plates, 100-hue test and Nagel anomaloscope. In those patients revealing an acquired dyschromatopsia the defect had a tritan-like response. However, diagnosis is made difficult because of the positively correlated trend between 100-hue error score and visual acuity. 相似文献
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Some fundamental principles of colour vision, deduced from perceptual studies, have been understood for a long time. Physiological studies have confirmed the existence of three classes of cone photoreceptors, and of colour-opponent neurons that compare the signals from cones, but modern work has drawn attention to unexpected complexities of early organization: the proportions of cones of different types vary widely among individuals, without great effect on colour vision; the arrangement of different types of cones in the mosaic seems to be random, making it hard to optimize the connections to colour-opponent mechanisms; and new forms of colour-opponent mechanisms have recently been discovered. At a higher level, in the primary visual cortex, recent studies have revealed a simpler organization than had earlier been supposed, and in some respects have made it easier to reconcile physiological and perceptual findings. 相似文献
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Dieter Herzmann Thomas Labhart 《Journal of comparative physiology. A, Neuroethology, sensory, neural, and behavioral physiology》1989,165(3):315-319
1. | Tethered crickets (Gryllus campestris) walking on an air-suspended ball exhibit a spontaneous response to thee-vector of polarized light presented from above. In this study we determined the spectral sensitivity of polarization vision by finding the threshold light intensities for eliciting thise-vector response at different wavelengths. |
2. | The behaviorally determined spectral sensitivity was compared with the spectral sensitivity of the three spectral receptor types of the cricket eye (UV, blue, green) as measured electrophysiologically. The best match was obtained with the blue-receptor. This supports the thesis that polarization vision in crickets is mediated by the anatomically and physiologically specialized dorsal rim area of the eye. This part of the eye contains only blue-receptors, whereas other eye regions consist of UV- and green-receptors. |
3. | The absolute sensitivity of the cricket'se-vector detection system is very high. The threshold irradiance (at 50% of the maximal response) at 433 nmis 2.5×107 quanta cm–2 s–1, which is even lower than the effective quantum flux (range 380–500 nm) under the clear, moonless night sky. |
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Metamorphosis and fish vision 总被引:1,自引:0,他引:1
Many species of fish exhibit metamorphosis in which dramatic external transformations occur as a consequence of coordinated changes in gene expression within an organism. Because postembryonic development and change appears to be the rule rather than the exception in teleost fish species, we view metamorphosis as one of many developmental strategies in fish which have continued plasticity as a common theme. Metamorphic changes are manifested in the visual system by modification of photoreceptor peak sensitivity, rod photoreceptor cell addition, and retinal reorganization. These changes correspond to significant changes in the natural habitat of the animal and in its visual capabilities as demonstrated behaviorally. Thyroxine is the main metamorphic hormone as has also been found in amphibia. The sequence of metamorphic events occur in all teleosts, but they are compressed in time in direct developing animals suggesting that such animals might prove useful for understanding the evolution of metamorphosis in fish. It seems likely that rod photoreceptors may have evolved in conjunction with the change from larval to juvenile stage through metamorphosis in indirect developing fishes. During evolution, the contraction and/or loss of the larval stage has resulted in earlier appearance of rod photoreceptors during development although they always arise later than cone photoreceptors. This ontogenetic developmental sequence supports Walls's (1942) proposal that cones are phylogenetically older than rods and suggests that rods may have evolved several times. 相似文献
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Many species of fish exhibit metamorphosis in which dramatic external transformations occur as a consequence of coordinated changes in gene expression within an organism. Because postembryonic development and change appears to be the rule rather than the exception in teleost fish species, we view metamorphosis as one of many developmental strategies in fish which have continued plasticity as a common theme. Metamorphic changes are manifested in the visual system by modification of photoreceptor peak sensitivity rod photoreceptor cell addition, and retinal reorganization. These changes correspond to significant changes in the natural habitat of the animal and in its visual capabilities as demonstrated behaviorally. Thyroxine is the main metamorphic hormone as has also been found in amphibia. The sequence of metamorphic events occur in all teleosts, but they are compressed in time in direct developing animals suggesting that such animals might prove useful for understanding the evolution of metamorphosis in fish. It seems likely that rod photoreceptors may have evolved in conjunction with the change from larval to juvenile stage through metamorphosis in indirect developing fishes. During evolution, the contraction and/or loss of the larval stage has resulted in earlier appearance of rod photoreceptors during development although they always arise later than cone photoreceptors. This ontogenetic developmental sequence supports Walls's (1942) proposal that cones are phylogenetically older than rods and suggests that rods may have evolved several times. 相似文献
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Randolf Menzel Dora Fix Ventura Annette Werner Luiz Claudio Martins Joaquim Werner Backhaus 《Journal of comparative physiology. A, Neuroethology, sensory, neural, and behavioral physiology》1989,166(2):151-164
1. | The spectral sensitivities of the photoreceptors in the compound eye of the stingless bee, Melipona quadrifasciata (Hymenoptera, Apoidea), was determined by the spectral scanning method. Three spectral receptor types were found with max at 356 nm, 424 nm, and 532 nm (Fig. 1). Intracellular markings confirmed one morphological type of green receptor (svf 1) and one type of UV receptor (1vf 1) whose axon morphology resembles that of the corresponding spectral receptor types in the honeybee, Apis mellifera (Fig. 2). |
2. | Training experiments with a large number of color signals were performed at the hive entrance and the feeding place under natural daylight conditions (Figs. 4–6). The tests were either dual (2 alternative color signals) choice tests or multiple (12 simultaneously presented alternative color signals) choice tests. Melipona discriminates colors very well in both behavioral contexts, but discrimination is generally better at the feeding place (Fig. 7). A comparison with Apis shows that Melipona discriminates colors in the bluish green better than Apis, and that Apis discriminates all other colors better. |
3. | The spectral properties of the receptor types were used to construct a color space in which all the color signals tested in the behavioral experiments are represented at particular loci (Fig. 3). A receptor model of color vision as proposed by Backhaus and Menzel (1987) for the honeybee is used to calculate the perceptual distance between the colors corresponding to the loci of the color stimuli. This model interprets the perceptual distance between two color stimuli as the number of just noticeable difference steps in the corresponding receptor voltage signals. The predicted distances are highly correlated with the discrimination values of the behavioral tests (Fig. 12). |
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Gerald H. Jacobs 《Philosophical transactions of the Royal Society of London. Series B, Biological sciences》2009,364(1531):2957-2967
Colour vision allows animals to reliably distinguish differences in the distributions of spectral energies reaching the eye. Although not universal, a capacity for colour vision is sufficiently widespread across the animal kingdom to provide prima facie evidence of its importance as a tool for analysing and interpreting the visual environment. The basic biological mechanisms on which vertebrate colour vision ultimately rests, the cone opsin genes and the photopigments they specify, are highly conserved. Within that constraint, however, the utilization of these basic elements varies in striking ways in that they appear, disappear and emerge in altered form during the course of evolution. These changes, along with other alterations in the visual system, have led to profound variations in the nature and salience of colour vision among the vertebrates. This article concerns the evolution of colour vision among the mammals, viewing that process in the context of relevant biological mechanisms, of variations in mammalian colour vision, and of the utility of colour vision. 相似文献
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J Birch 《The British journal of physiological optics》1976,31(4):32-37
Pseudoisochromatic plates are among the most popular tests for defective colour vision. They are particularly good for screening but are less good in assessing the degree and type of the colour vision defect. To select colours for use in diagnostic plates a large number of colour defective subjects have made colour matches with the Lovibond Tintometer and the isochromatic data collected. Pseudoisochromatic plates have been printed using pairs of colours only and incorporating both a random dot and a regular dot format. These plates have proved effective in a clinical trial. Not only must pairs of inks be carefully selected to lie upon appropriate isochromatic lines but the luminance contrast between the two colours must be kept within 5%. Failure to control luminance contrast is as much a source of error in currently available pseudoischromatic tests as the inappropriate use of colour. 相似文献
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S. Andersson T. Amundsen 《Proceedings. Biological sciences / The Royal Society》1997,264(1388):1587-1591
Many birds see in the ultraviolet (300–400 nm), but there is limited evidence for colour communication (signalling by spectral shape independently of brightness) in this ''hidden'' waveband. Such data are critical for the understanding of extravagant plumage colours, some of which show considerable UV reflectance. We investigated UV colour vision in female social responses to the male UV/violet ornament in bluethroats, Luscinia s. svecica. In an outdoor aviary at the breeding grounds, 16 females were each presented with a unique pair of males of equal age. In UVR (UV reduction) males, sunblock chemicals reduced only the UV reflectance and thereby the spectral shape (colour) of the throat ornament. In NR (neutral reduction) males, an achromatic pigment in the same base solvent (preen gland fat) was used for a corresponding but uniform brightness reduction. Both colour and brightness effects were invisible to human eyes, and were monitored by spectrometry. In 13 of the 16 trials, the female associated most with the NR male, a preference that implies that UV colour vision is used in mate choice by female bluethroats. Reflectance differences between one-year-old and older males were significant only in UV, suggestive of a UV colour cue in age-related mate preferences. 相似文献
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