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Radiology

Cortical Development and Disorders

Built from Obstetric Imaging

The first 25 slides of Cortical Development and Disorders
The first 25 slides, exactly as they appear. The full deck has 126 content slides.

What’s inside

10 sections · 126 slides

  1. 01

    Overview

    • What you will learn here

    1 slide

  2. 02

    Building the fetal cortex

    Seven weeks of stem cells to a six-layered cortex

    • The cortex is built, not delivered ready-made
    • How the cortex is built
    • Two kinds of cell come out of the nursery
    • A second stream of neurons arrives sideways
    • The busy window and the finishing line
    • 7 wk
    • The cortex is not building alone
    • One set of genes, many body parts
    • Timing matters more than the cause
    • From insult to outcome

    10 slides

  3. 03

    Malformations of cortical development

    One family name, three ways to fail

    • What the umbrella term means
    • Three ways the build can fail
    • Classification of cortical malformations as printed
    • Classification of Malformations of Cortical Development
    • Uncommon
    • Why the cortex goes wrong
    • Causes that come from outside the fetus
    • Where the causes sit
    • How affected children present

    9 slides

  4. 04

    Knowing normal before calling abnormal

    Sulci, fissures and the weeks they appear

    • The normal fetal brain keeps changing shape
    • Ultrasound does the first-line work
    • Ultrasound planes that show the early sulci and fissures
    • Colour map of the medial sulci
    • The order in which grooves appear
    • Weeks at which each fissure becomes visible
    • Gestational Ages When Cerebral Sulci Become Visible on Ultrasound (US) and Magnetic Resonance Imaging (MRI)
    • How to use that table at the scanner
    • MRI is the second look
    • Normal sulci on fetal MRI at 28 weeks
    • What operculization means on that picture
    • What MRI adds, and where it stops
    • Ultrasound and MRI compared

    13 slides

  5. 05

    Microcephaly

    A head too small, and what that does or does not mean

    • What a small head is defined as
    • A description, not a diagnosis
    • 1:10,000
    • When the small head shows itself
    • Causes of a small head, inherited and acquired
    • Etiologies of Microcephaly
    • Two families of cause
    • What was found when small heads were followed up
    • 48%
    • What ultrasound shows in microcephaly
    • Rules of thumb on the measurements
    • Small head and sloping forehead at 20 weeks
    • Why the small head is the hardest to scan
    • What MRI adds when the head is small
    • The picture at a glance
    • Points to carry away
    • The honest limit of prenatal diagnosis

    17 slides

  6. 06

    Macrocephaly and hemimegalencephaly

    A head too big, and half a brain too big

    • Three words that are not the same thing
    • Defining a big head
    • ~2%
    • Most big heads are perfectly fine
    • Conditions that come with a big head
    • Conditions Associated With Macrocephaly
    • The commonest cause runs in families
    • Wide fluid space of familial macrocephaly
    • The cortical vein sign
    • When a big head does and does not appear
    • Syndromes that come with one overgrown hemisphere
    • Syndromes Associated With Hemimegalencephaly
    • When one half of the brain overgrows
    • How hemimegalencephaly presents
    • One enlarged hemisphere at 26 weeks
    • What to look for on the scan
    • What MRI adds in a big head
    • Two pictures side by side
    • Points to carry away

    20 slides

  7. 07

    When neurons never arrive

    Lissencephaly, agyria, pachygyria and heterotopia

    • Cells made, but never delivered
    • The words for a smooth brain
    • Two major groups
    • 1-4 per 100,000
    • The genes behind lissencephaly
    • Why both parents should be examined
    • The environment can copy the genetics
    • Heterotopia behaves differently
    • What comes with Miller-Dieker syndrome
    • Why the same gene hits boys harder
    • Why ultrasound struggles early
    • Smooth brain of Miller-Dieker syndrome at 26 weeks
    • What to notice on that pair of images
    • What MRI adds when neurons are lost on the way
    • Walker-Warburg syndrome at 19 weeks
    • The kinked brainstem sign
    • The picture at a glance
    • What else can look like this
    • Points to carry away

    19 slides

  8. 08

    Arrived, but badly arranged

    Polymicrogyria, schizencephaly and overmigration

    • The last stage that can fail
    • Polymicrogyria: too many tiny folds
    • Schizencephaly: a split brain
    • The finding that names the disease
    • Overmigration: neurons that go too far
    • What causes polymicrogyria
    • What causes schizencephaly
    • How children present
    • What HARD-E stands for
    • Why ultrasound misses these
    • What ultrasound can pick up instead
    • ~80%
    • Small abnormal folds after a sinus thrombosis at 30 weeks
    • Brain surface in polymicrogyria
    • Open cleft in the front of the brain
    • Reading the edge of a cleft
    • Neurons parked along the ventricle
    • Nodules lining the ventricles at 21 weeks
    • What overmigration looks like on imaging
    • What MRI adds in organisation disorders
    • What else can look like this
    • Points to carry away

    22 slides

  9. 09

    Counselling and management

    What can be offered, before and after birth

    • Before birth
    • After birth
    • What the referring physician needs to know
    • What to arrange

    4 slides

  10. 10

    Pulling it together

    Three stages, three families of disease

    • The three stages and what fails at each
    • Rules that hold across the whole group
    • Two habits worth keeping
    • References
    • References (continued)
    • References (continued)
    • References (continued)
    • References (continued)
    • References (continued)
    • Suggested reading
    • Obstetric Imaging: Fetal Diagnosis and Care, 2nd Edition

    11 slides