← All decks

Ophthalmology

Anatomy of Visual Pathway and Neurophysiology of Vision

Built from Khurana — Neuro-Ophthalmology

The first 25 slides of Anatomy of Visual Pathway and Neurophysiology of Vision
The first 25 slides, exactly as they appear. The full deck has 82 content slides.

What’s inside

8 sections · 82 slides

  1. 01

    Overview

    • What this topic covers

    1 slide

  2. 02

    Anatomy of the Visual Pathway

    The relay chain from retina to occipital cortex

    • The visual pathway - the whole chain at a glance
    • The visual pathway from eye to occipital cortex
    • Optic chiasma - the great crossroads
    • Chiasma position over the pituitary
    • Positions of the optic chiasma over the sella
    • Relations of the optic chiasma
    • Vascular and sellar relations of the chiasma
    • Optic tracts and the lateral geniculate body (LGB)
    • Optic radiations - the fan into the occipital lobe
    • Course of the optic radiations
    • Visual cortex - the final screen
    • Striate and para-striate visual areas 17, 18, 19
    • Six-layered microscopic structure of the cortex

    13 slides

  3. 03

    Arrangement of Nerve Fibres

    The seating plan at every station - the key to field defects

    • Fibre arrangement in the retina
    • Nerve-fibre pattern of the retina
    • Fibre arrangement in the optic nerve
    • Fibre lamination at the optic disc
    • Fibre quadrants in the optic nerve
    • Macular fibres central near the chiasma
    • Fibre crossing in the optic chiasma
    • Fibre crossing at the chiasma
    • Fibre arrangement in the optic tract
    • Fibre arrangement in the optic tract
    • Fibre arrangement in the lateral geniculate body (LGB)
    • Position of fibres in the lateral geniculate body
    • Six-laminae relay in the lateral geniculate body
    • Fibres in the optic radiations and visual cortex
    • Fibre arrangement in the optic radiations
    • Fibre relay in the visual cortex

    16 slides

  4. 04

    Neurophysiology: the Retina

    Turning light into signal and pre-processing it before it leaves the eye

    • Genesis of the visual impulse in photoreceptors
    • The dark current in a photoreceptor
    • Phototransduction cascade
    • Cone versus rod receptor potential
    • Passing the signal on inside the retina
    • Horizontal cells and lateral inhibition
    • Lateral inhibition by horizontal cells
    • Bipolar cells and their centre-surround field
    • Centre-surround antagonism of bipolar cells
    • Amacrine cells - timing and motion analysis
    • Amacrine-cell reciprocal inhibition at the dyad
    • Ganglion cells - the eye's output
    • AM versus FM signalling in the retina
    • Sustained X and transient Y cell responses

    14 slides

  5. 05

    Transmission Along the Pathway

    Optic nerve, chiasma, tract and the two channels of the LGB

    • Optic nerve, chiasma and optic tract
    • Lateral geniculate body - relay and gate
    • Two channels through the LGB - magno vs parvo
    • Electrophysiology of the LGB and the optic radiations
    • Magnocellular and parvocellular channels

    5 slides

  6. 06

    Analysis in the Visual Cortex

    From dots to lines, columns, colour blobs and the specialized areas

    • Retinotopy and the layout of the visual cortex
    • Six-layered lamination of the visual cortex
    • Connections of the primary visual cortex
    • Receptive fields of the striate cortex
    • Simple cells - orientation detectors
    • Receptive fields of simple cortical cells
    • Complex and hypercomplex cells
    • Complex-cell responses to an oriented moving slit
    • Columnar organization - orientation columns
    • Orientation columns across the cortex
    • Ocular dominance columns and colour blobs
    • Ocular dominance columns
    • Serial versus parallel analysis of the image
    • Hubel-Wiesel hierarchical model
    • Role of the extra-striate (association) cortex
    • Psychophysiological aspect of vision
    • Psychophysiological connections of the visual pathway

    17 slides

  7. 07

    The 'Three-Part-System'

    How the brain splits and then reunites the image

    • Three-part-system hypothesis of visual perception
    • The three-part system of visual perception

    2 slides

  8. 08

    Summary and Review

    • Vision by the numbers
    • Key take-home messages
    • A patient with a pituitary tumour develops bitemporal hemianopia. Why, and which fibres are involved first?
    • References (1/2)
    • References (2/2)
    • Neuro-Ophthalmology

    6 slides