Fetal Eye Sectioning

Fetal eye sectioning is a histological technique used to prepare thin, sequential slices of fetal ocular tissue for microscopic examination, enabling assessment of eye development and abnormalities. After fixation preserves tissue architecture, the eye is processed, embedded in a supportive medium, and cut with a microtome; sections are mounted, stained, and examined to distinguish structures such as the retina, lens, optic nerve, and developing chambers. In medicine, this approach supports developmental anatomy, investigation of congenital anomalies, and research into prenatal ocular disease by linking tissue organization with developmental stage and pathological change.

Fetal Eye Sectioning - Related Videos

Research

JoVE Journal - Biology
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Preparation of Adult Drosophila Eyes for Thin Sectioning and Microscopic Analysis

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Cited by 21 •

2011

A standard approach to prepare adult Drosophila eyes for semi-thin sectioning and light microscopic analysis is presented here. The protocol can be used for gross morphological analysis of eye defects, or with the indicated adjustments can be used to determine genetic requirements of genes in specific cell types of the eye (e.g. clonal analysis of photoreceptors) or for electron microscopic analysis.

Research

JoVE Journal - Medicine
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Grossing of Non-neoplastic Globes, Including Fetal Eyes

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Cited by 1 •

2025

Thorough grossing and standardized sectioning of non-neoplastic globes are important for obtaining high-quality reproducible histopathologic sections. Guidelines for a standardized grossing of adult and fetal non-neoplastic globes are provided herein. Different options for globe sectioning are demonstrated and discussed, including criteria for case-based decision-making.

Research

JoVE Journal - Medicine

Murine Fetal Echocardiography

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Cited by 7 •

2013

Fetal and perinatal death is a common feature when studying genetic alterations affecting cardiac development. High-frequency ultrasound imaging has improved 2-D resolution and can provide excellent information on early cardiac development and is an ideal method to detect the impact on cardiac structure and function prior to death.

Fetal Echocardiography and Pulsed-wave Doppler Ultrasound in a Rabbit Model of Intrauterine Growth Restriction

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Cited by 11 •

2013

We describe examination of fetal cardiac function with contemporary functional fetal echocardiography and fetoplacental Doppler ultrasound using the VisualSonics VEVO 2100 microultrasound in a surgically induced model of intrauterine fetal growth restriction in a rabbit.

A Mouse Fetal Skin Model of Scarless Wound Repair

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Cited by 24 •

2015

During mammalian development, early gestational skin wounds heal without a scar. Here we detail a reliable and reproducible model of fetal scarless wound healing in the cutaneous dorsum of E16.5 (scarless) and E18.5 (scarring) mouse embryos.

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