Fetal Organ Dissection

Fetal organ dissection is a hands-on anatomical technique used to examine organ formation, structure, and spatial relationships during prenatal development. In developmental biology, researchers carefully expose and separate organs from fetal specimens, often documenting their size, shape, position, and connections at defined developmental stages. This process links visible anatomy with underlying patterns of tissue differentiation, growth, and morphogenesis. Findings can establish normal developmental anatomy, support comparisons across stages or species, and provide context for investigating congenital abnormalities. When combined with microscopy, imaging, or molecular analysis, fetal organ dissection helps clarify how coordinated developmental processes produce functional organ systems.

Fetal Organ Dissection - Related Videos

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JoVE Journal - Biology
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Dissection of Organs from the Adult Zebrafish

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Cited by 168 •

2010

This protocol describes a procedure for identifying and dissecting organs from the adult zebrafish.

Human Placental and Decidual Organ Cultures to Study Infections at the Maternal-fetal Interface

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Cited by 7 •

2016

A simple method to establish primary human placental (villous) and decidual organ cultures is described. Villous and decidual organ cultures are invaluable tools for studying pathogenesis at the human maternal-fetal interface. Infection with the facultative intracellular bacterium Listeria monocytogenes is demonstrated.

Research

JoVE Journal - Developmental Biology

Using Ex Vivo Upright Droplet Cultures of Whole Fetal Organs to Study Developmental Processes during Mouse Organogenesis

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Cited by 13 •

2015

The ex vivo upright droplet culture is an alternative to current in vitro and in vivo experimental techniques. This protocol is easy to perform and requires smaller amounts of reagent, while permitting the ability to manipulate and study fetal vascularization, morphogenesis, and organogenesis.

Larval Ring Gland Dissection: Isolation of Developmental Endocrine Organs from Drosophila

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2023

This video describes the Drosophila ring gland, a complex endocrine structure important for biosynthesis and secretion of ecdysteroids and other hormones. The featured protocol demonstrates its dissection, fixation, and immunostaining.

An Optimized Procedure for Fluorescence-activated Cell Sorting (FACS) Isolation of Autonomic Neural Progenitors from Visceral Organs of Fetal Mice

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Cited by 6 •

2012

An optimized procedure to purify neural crest-derived neuronal progenitors from fetal mouse tissues is described. This method takes advantage of expression from fluorescent reporter alleles to isolate discrete populations by fluorescence-activated cell sorting (FACS). The technique can be applied to isolate neuronal subpopulations throughout development or from adult tissues.

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