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At least 91 records · Page 5Linked to original sources

Melatonin synthesis in retina: circadian regulation of arylalkylamine N-acetyltransferase activity in cultured photoreceptor cells of embryonic chicken retina.

The key regulatory enzyme in melatonin synthesis is arylalkylamine N-acetyltransferase (AANAT). In vivo, AANAT activity in chicken retinal photoreceptor cells exhibits a circadian rhythm that peaks at night. The purpose of the present study was to investigate the temporal development of light/dark and circadian oscillations of AANAT activity in cultured retinal cells prepared from 6- and 8-day-old chicken embryos (E6, E8, respectively). Photoreceptor cells prepared from E6 retinas and incubated under a 14-h light/10-h dark (LD) cycle of illumination for 5-7 days displayed prominent daily fluctuations in AANAT activity on days 5 and 6 in vitro. However, when E6 cells, incubated for 5 days under LD, were transferred to continuous (24 h/day) darkness (DD) on day 6, no daily pattern of activity was observed. This result indicates that AANAT fluctuations were light-driven and not circadian at this stage. In contrast, cells prepared from E8 embryos and incubated under conditions identical to those for E6 cells displayed prominent rhythms of AANAT activity in both LD and DD, indicative of circadian control. To determine if circadian control of AANAT activity would develop in E6 cells incubated for a longer period of time to allow maturation, cells were incubated for 8 days in LD followed by 2 days in DD. AANAT activity in these cells was rhythmic in both LD and DD. In cells incubated in this manner, a 2-h light pulse in the middle of the subjective night suppressed AANAT activity, indicating that the enzyme activity in the cultured cells is acutely suppressed by light, as it is in vivo. These results indicate that the ability to express circadian regulation of AANAT activity is an intrinsic property of retinal cells that can develop in vitro. Development of light-dark regulation of AANAT activity appears to precede the circadian clock-control of enzyme activity.

Animals↗

Gyrate atrophy of the choroid and retina: ERG of the neural retina and the pigment epithelium.

The function of the neural retina and the pigment epithelium in 10 patients with gyrate atrophy was examined by the conventional alternating current electroretinogram and by direct current electroretinography to study the c-wave. The a- and b-wave responses were subnormal in all patients and the ERG was undetectable in patients with an advanced stage of the disease. The c-wave was recordable by the DC ERG from three patients with a less advanced stage of the disease. In one patient the c-wave could be recorded only from the other eye but the a- and b-wave responses were recordable in both his eyes.

Adolescent↗

Heidelberg retina tomograph measurements of the optic disc and parapapillary retina for detecting glaucoma analyzed by machine learning classifiers.

PURPOSE: To determine whether topographical measurements of the parapapillary region analyzed by machine learning classifiers can detect early to moderate glaucoma better than similarly processed measurements obtained within the disc margin and to improve methods for optimization of machine learning classifier feature selection. METHODS: One eye of each of 95 patients with early to moderate glaucomatous visual field damage and of each of 135 normal subjects older than 40 years participating in the longitudinal Diagnostic Innovations in Glaucoma Study (DIGS) were included. Heidelberg Retina Tomograph (HRT; Heidelberg Engineering, Dossenheim, Germany) mean height contour was measured in 36 equal sectors, both along the disc margin and in the parapapillary region (at a mean contour line radius of 1.7 mm). Each sector was evaluated individually and in combination with other sectors. Gaussian support vector machine (SVM) learning classifiers were used to interpret HRT sector measurements along the disc margin and in the parapapillary region, to differentiate between eyes with normal and glaucomatous visual fields and to compare the results with global and regional HRT parameter measurements. The area under the receiver operating characteristic (ROC) curve was used to measure diagnostic performance of the HRT parameters and to evaluate the cross-validation strategies and forward selection and backward elimination optimization techniques that were used to generate the reduced feature sets. RESULTS: The area under the ROC curve for mean height contour of the 36 sectors along the disc margin was larger than that for the mean height contour in the parapapillary region (0.97 and 0.85, respectively). Of the 36 individual sectors along the disc margin, those in the inferior region between 240 degrees and 300 degrees, had the largest area under the ROC curve (0.85-0.91). With SVM Gaussian techniques, the regional parameters showed the best ability to discriminate between normal eyes and eyes with glaucomatous visual field damage, followed by the global parameters, mean height contour measures along the disc margin, and mean height contour measures in the parapapillary region. The area under the ROC curve was 0.98, 0.94, 0.93, and 0.85, respectively. Cross-validation and optimization techniques demonstrated that good discrimination (99% of peak area under the ROC curve) can be obtained with a reduced number of HRT parameters. CONCLUSIONS: Mean height contour measurements along the disc margin discriminated between normal and glaucomatous eyes better than measurements obtained in the parapapillary region.

Area Under Curve↗

GABA and glutamate as retina neurotransmitters in rabbit retina.

In summary, both glutamate and GABA appear to be functional neurotransmitters in the inner plexiform layer of the rabbit retina. Autoradiograph localization suggests they are both subpopulations of amacrine cells which are found primarily in the amacrine cell layer, although some appear as displaced amacrines in the ganglion cell layer. The characteristics of these two transmitter systems are similar to those described in brain including systems for transport, release and receptor binding. There is considerable evidence that GABAnergic cells may be responsible for the specificity of on-center ganglion cells through inhibitory modulation of cholinergic transmission. The role of glutamate is much more speculative at this point, however, it is suggested that the excitatory input to the GABAnergic neurons may be mediated by glutaminergic transmission.

Animals↗

Improving the repeatability of Heidelberg retina tomograph and Heidelberg retina tomograph II rim area measurements.

AIMS: To devise and test strategies for improving Heidelberg retina tomograph (HRT and HRT-II) rim area (RA) repeatability and assess the benefit of the strategies in time series of HRT images. METHODS: The effect of the standard and 320 microm reference planes and image quality on RA repeatability was assessed in a test-retest HRT image dataset from 74 subjects. A longitudinal HRT image dataset from 30 ocular hypertensive subjects was analysed by linear regression of RA over time, with each of the reference planes and using a manual image alignment facility. RA variability was estimated by comparing the standard deviation of residuals (RSD) generated by each linear regression. RESULTS: RA repeatability was better with the 320 microm reference plane (repeatability coefficient 0.17 mm(2)), improving further with only good quality images (repeatability coefficient 0.08 mm(2)). For the longitudinal data, a significant (p<0.0001) reduction in the RSD from 0.10 to 0.05 mm(2) was obtained with the 320 microm reference plane. Manual alignment led to a further significant (p<0.0001) reduction in the RSD to 0.04 mm(2). CONCLUSIONS: The findings support the use of a 320 microm reference plane and manual image alignment to analyse RA over time. The estimates of RA repeatability may be used to define thresholds for glaucomatous change.

Adult↗

[Radioautographic study of melanin synthesis in cells of the pigmented epithelium of the retina in adult tritons following surgical removal of the retina].

The results are given for the autoradiographic study of melanin synthesis in the pigment epithelium cells of eye retina in the adult newts by the incorporation of 3H-dioxyphenylalanine (3H-DOPA). The synthesis of melanin began 4--8 days after the operation in the peripheral parts of the eye and but it was not observed in the central region of the eye fundus even 25 days alter the operation. A suggestion is put forward to the effect of the existence of different mechanisms for the initiation of melanin synthesis in these subpopulations of pigment epithelium.

Animals↗

Ontogeny of the retina and optic nerve in Xenopus laevis. I. Stages in the early development of the retina.

A staging series for retinal histogenesis is described for Xenopus laevis. It is based on scanning EM studies of intact eyes and serial section analysis of silver-stained preparations. Retinal development is arbitrarily divided into twelve stages (I--XII) based on distinct morphological and histological changes. In general, four different phases of retinal development can be identified: an embryonic phase of rapid histogenesis (Nieuwkoop-Faber stages 21--39) and onset of visual function; a second or functional phase completed by stage 52 is a period of growth, synaptogenesis, and the organization of visual function; a third phase ending at metamorphic climax (NF57) when mature function is achieved and binocular vision begins; and a final mature phase at the end of metamorphosis, when road and cones are adult size and the visuotectal projection extends over the entire tectum. Ten of the twelve developmental stages are assigned to the first phase since this is the period of intense morphogenesis and differentiation.

Acetylcholine↗

Fibroblast growth factor receptor function is required for the orderly projection of ganglion cell axons in the developing mammalian retina.

During the early stages of development various cell adhesion molecules (CAMs) and fibroblast growth factor receptors (FGFR) are expressed throughout the retinal neuroepithelium. The ability of retinal ganglion cells to project their axons to the optic fissure depends, in part, on cell-cell interactions mediated by cell adhesion molecules. In the present study we show that the ability of the firstborn rat retinal ganglion cells to extend axons in vitro can be stimulated by NCAM and L1, but not N-cadherin. Both CAM responses can be fully inhibited by antibodies that block neuronal fibroblast growth factor receptor function and by agents that block defined steps in the FGFR signal transduction cascade. When added to living E13.5 rat retinal whole-mount preparations the same agents induced errors in the orderly establishment of young axon patterns in the retinal periphery and caused axons in the retinal center to defasciculate. These results suggest that the activation of the fibroblast growth factor receptor signal cascade not only promotes survival and proliferation of various cell types but can also mediate intraretinal axon guidance.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗