Embryonic Transparency

Embryonic transparency is the optical clarity of an embryo that allows researchers to observe internal cells, tissues, and developing organs without dissection. It results when embryonic structures absorb, scatter, or reflect relatively little light, often before pigmentation and tissue opacity increase during development. In biology, transparent embryos such as those of zebrafish support live imaging, lineage tracing, and time-lapse microscopy, enabling direct study of cell migration, organ formation, and developmental abnormalities. This noninvasive access helps connect genetic or environmental changes with visible developmental outcomes and supports research in embryology, genetics, toxicology, and regenerative biology.

Embryonic Transparency - Related Videos

Research

JoVE Journal - Biology

A System for ex vivo Culturing of Embryonic Pancreas

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Cited by 23 •

2012

Here, we describe a method for isolation, culture and manipulation of mouse embryonic pancreas. This represents an excellent ex vivo system for studying various aspects of pancreatic development, including morphogenesis, differentiation and growth. Pancreatic bud explants can be cultured for several days and used in a range of different applications, including whole-mount immunofluorescence and live imaging.

The Mammalian Ocular Lens in Focus: Development, Anatomy, Physiology, Transparency, Biomechanics, and Age-Related Challenges

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2026

The function of the ocular lens to focus light onto the retina depends on tissue transparency, biomechanics, and refractive index. This review highlights the three-dimensional architecture of the lens and discusses the complex mechanisms that maintain tissue homeostasis.

Fabrication of Nano-engineered Transparent Conducting Oxides by Pulsed Laser Deposition

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Cited by 15 •

2013

We describe the experimental method to deposit nanostructured oxide thin films by nanosecond Pulsed Laser Deposition (PLD) in the presence of a background gas. By using this method Al-doped ZnO (AZO) films, from compact to hierarchically structured as nano-tree forests, can be deposited.

Imaging Cell Viability on Non-transparent Scaffolds — Using the Example of a Novel Knitted Titanium Implant

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Cited by 6 •

2016

Here we present a fluorophore based imaging technique to detect cell viability on a non-transparent titanium scaffold as well as to detect glimpses of the scaffold impurities. This protocol troubleshoots the drawback of imaging cell-cell or cell-metal interactions on non-transparent scaffolds.

Patterning Cells on Optically Transparent Indium Tin Oxide Electrodes

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Cited by 1 •

2007

Non-fouling PEG silane monolayer was desorbed from individually addressable ITO electrodes on glass by application of a reductive potential. Electrochemical stripping of PEG-silane layer from ITO microelectrodes allowed for cell adhesion to take place in a spatially defined fashion, with cellular patterns corresponding closely to electrode patterns.

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