Fetal Brain Dissection

Fetal brain dissection is a neuroanatomical technique for examining the structure and organization of the developing brain, helping researchers connect anatomy with prenatal nervous-system development. The procedure uses careful removal and separation of fetal brain tissue, often after preservation, to expose regions, pathways, ventricles, and other structures while maintaining their spatial relationships for gross or microscopic analysis. In neuroscience education and research, these observations support the study of brain morphogenesis, developmental abnormalities, and regional specialization, and can complement histology, imaging, and molecular methods. Standardized handling and ethical oversight are essential when working with human fetal specimens.

Fetal Brain Dissection - Related Videos

Research

JoVE Journal - Biology

The Gateway to the Brain: Dissecting the Primate Eye

0 Views •

Cited by 7 •

2009

The non-human primate is an important translational species for our understanding of development and aging. The anatomical organization of the primate retina may provide important insights into normal and pathological conditions in humans.

Progenitor-derived Oligodendrocyte Culture System from Human Fetal Brain

0 Views •

Cited by 38 •

2012

Primary, human fetal brain-derived, multipotential progenitor cells proliferate in vitro while maintaining the capacity to differentiate into neurons and astrocytes. This work shows that neural progenitors can be induced to differentiate through stages of the oligodendrocytic lineage by conditioning with select growth factors.

Zebrafish Brain Dissection: A Technique of Fish Neurobiology

0 Views •

2023

This video describes the technique of microdissection of the brain from an adult zebrafish. This method helps in obtaining whole brain derived neuorospheres that can be studied further.

Ex Vivo Optogenetic Dissection of Fear Circuits in Brain Slices

0 Views •

Cited by 8 •

2016

Optogenetic approaches are widely used to manipulate neural activity and assess the consequences for brain function. Here, a technique is outlined that upon in vivo expression of the optical activator Channelrhodopsin, allows for ex vivo analysis of synaptic properties of specific long range and local neural connections in fear-related circuits.

Dissection and Mounting of Fruit Fly Larval Brain Explants

0 Views •

2025

This video demonstrates the dissection and mounting of brain explants from Drosophila larvae. The central nervous system (CNS), attached to eye disks, is extracted from the larvae and then mounted on a glass slide in a physiological saline solution.

View All Results

FAQs

Related Topics