Search results for "Inner plexiform layer"

showing 6 items of 16 documents

Impaired formation of the inner retina in an AChE knockout mouse results in degeneration of all photoreceptors

2004

Blinding diseases can be assigned predominantly to genetic defects of the photoreceptor/pigmented epithelium complex. As an alternative, we show here for an acetylcholinesterase (AChE) knockout mouse that photoreceptor degeneration follows an impaired development of the inner retina. During the first 15 postnatal days of the AChE-/- retina, three major calretinin sublaminae of the inner plexiform layer (IPL) are disturbed. Thereby, processes of amacrine and ganglion cells diffusely criss-cross throughout the IPL. In contrast, parvalbumin cells present a nonlaminar IPL pattern in the wild-type, but in the AChE-/- mouse their processes become structured within two 'novel' sublaminae. During t…

Retinagenetic structuresbiologyGeneral NeuroscienceRetinalInner plexiform layerAcetylcholinesteraseeye diseasesGanglionchemistry.chemical_compoundmedicine.anatomical_structurechemistryKnockout mousemedicinebiology.proteinsense organsCalretininNeuroscienceParvalbuminEuropean Journal of Neuroscience
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Retinal ganglion cells projecting to the optic tectum and visual thalamus of lizards.

2002

Retinal ganglion cells projecting to the optic tectum and visual thalamus have been investigated in the lizard, Podarcis hispanica. Injections of biotinylated dextran-amine in the optic tectum reveal seven morphological cell varieties including one displaced ganglion cell type. Injections in the visual thalamus yield similar ganglion cell classes plus four giant ganglion cells, including two displaced ganglion cell types. The present study constitutes the first comparison of tectal versus thalamic ganglion cell types in reptiles. The situation found in lizards is similar to that reported in mammals and birds where some cell types projecting to the thalamus are larger than those projecting t…

Retinal Ganglion CellsRetinaSuperior ColliculiPhysiologyBistratified cellGiant retinal ganglion cellsLizardsAnatomyVisual systemBiologyInner plexiform layerRetinal ganglionSynaptic TransmissionSensory SystemsParasol cellGanglionmedicine.anatomical_structurenervous systemThalamusmedicineAnimalsVisual Pathwayssense organsNeuroscienceCell SizeVisual neuroscience
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Retinal neurodegenerative changes in the adult insulin receptor substrate-2 deficient mouse.

2014

Abstract Insulin receptor substrate-2 (Irs2) mediates peripheral insulin action and is essential for retinal health. Previous investigations have reported severe photoreceptor degeneration and abnormal visual function in Irs2-deficient mice. However, molecular changes in the Irs2 − / −  mouse retina have not been described. In this study, we examined retinal degenerative changes in neuronal and glial cells of adult (9- and 12-week old) Irs2 − / −  mice by immunohistochemistry. 9-week old Irs2 − / −  mice showed significant thinning of outer retinal layers, concomitant to Muller and microglial cell activation. Photoreceptor cells displayed different signs of degeneration, such as outer/inner…

Retinal degenerationRetinal Ganglion CellsRetinal Bipolar Cellsgenetic structuresOuter plexiform layerBiologyRetinal ganglionCellular and Molecular Neurosciencechemistry.chemical_compoundMicemedicineElectroretinographyAnimalsVision OcularRetinaMicroscopy Confocalmedicine.diagnostic_testRetinal DegenerationRetinalmedicine.diseaseInner plexiform layerImmunohistochemistrySensory SystemsCell biologyMice Inbred C57BLOphthalmologyMicroglial cell activationDisease Models Animalmedicine.anatomical_structurechemistryInsulin Receptor Substrate Proteinssense organsNeuroscienceElectroretinographyPhotoreceptor Cells VertebrateExperimental eye research
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Projections from the medial cortex in the brain of lizards: correlation of anterograde and retrograde transport of horseradish peroxidase with Timm s…

1988

Efferent projections of the medial cortex of the lizards Podarcis hispanica and Gallotia stehlinii were studied by examining the transport of horseradish peroxidase; results were correlated with those from Timm-stained sections. Two efferent systems were found. The first reaches the distal part of the outer plexiform layer in the medial, dorsomedial, and dorsal cortices, i.e., zones that are negative to Timm staining, and possibly originates from horizontal fusiform neurons. The second reaches the Timm-positive zones in the cortex and septum and is topographically arranged: the vertical portion of the intermediate and caudal medial cortex and the entire rostral medial cortex project to the …

genetic structuresMedial cortexEfferentHippocampusOuter plexiform layerPodarcis hispanicaCortex (anatomy)Neural PathwaysmedicineAnimalsHorseradish PeroxidaseCerebral CortexBrain MappingStaining and LabelingbiologyHistocytochemistryGeneral NeuroscienceLizardsAnatomybiology.organism_classificationInner plexiform layerZincmedicine.anatomical_structurenervous systemMetalsCerebral cortexsense organs
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Glaucomatous Maculopathy: Thickness Differences on Inner and Outer Macular Layers between Ocular Hypertension and Early Primary Open-Angle Glaucoma U…

2020

The purpose of this study was to compare the thickness of all inner and outer macular layers between ocular hypertension (OHT) and early primary open-angle glaucoma (POAG) using spectral domain optical coherence tomography (SD-OCT) 8 × 8 posterior pole algorithm (8 × 8 PPA). Fifty-seven eyes of 57 OHT individuals and fifty-seven eyes of 57 early POAG patients were included. The thickness of macular retinal nerve fiber layer (mRNFL), ganglion cell layer (GCL), inner plexiform layer (IPL), inner nuclear layer (INL), outer plexiform and nuclear layer, photoreceptor layer (PRL) and retinal pigment epithelium were obtained in 64 cells for each macular layer and mean thickness of superior and inf…

heatmapgenetic structuresPosterior poleNerve fiber layerlcsh:MedicineGlaucomaArticle03 medical and health scienceschemistry.chemical_compound0302 clinical medicineglaucoma; ocular hypertension; optical coherence tomography; posterior pole algorithm; macula; layer; heatmap; Spectralis; outer retina; inner retinaMedicinemaculaGanglion cell layerposterior pole algorithmoptical coherence tomographyRetinal pigment epitheliumbusiness.industrylayerlcsh:Router retinaRetinalGeneral MedicineInner plexiform layermedicine.diseaseeye diseasesinner retinaglaucomamedicine.anatomical_structurechemistrySpectralisInner nuclear layer030221 ophthalmology & optometryocular hypertensionsense organsbusinessAlgorithm030217 neurology & neurosurgeryJournal of Clinical Medicine
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Macula structural and vascular differences in glaucoma eyes with and without high axial myopia

2021

AbstractAimsTo assess the thickness of various retinal layers, and the superficial vessel density (sVD) in the macula of glaucomatous eyes and their associations with axial length (AL) and visual field mean deviation (VFMD) to identify parameters useful for glaucoma management in myopic eyes.Methods248 glaucoma patients (401 eyes) participating in the Diagnostic Innovations in Glaucoma Study observational cohort representing 3 axial myopia groups (non-myopia: n=146 eyes; mild myopia: n=208 eyes; high myopia (AL>26 mm): n=47 eyes) who completed macular OCT and OCT-Angiography imaging were included. The cross-sectional associations of AL and VFMD with the thickness of the ganglion cell inn…

medicine.medical_specialtygenetic structuresbusiness.industryNerve fiber layerGlaucomaRetinalmedicine.diseaseInner plexiform layereye diseasesGanglionVisual fieldchemistry.chemical_compoundmedicine.anatomical_structurechemistryOphthalmologymedicineWeak associationsense organsbusinessAxial myopia
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