In Vivo Development

In vivo development refers to the growth and maturation of cells, tissues, or organisms within a living system, where native physiological signals and interactions shape biological outcomes. In neuroscience, neural stem and progenitor cells respond to developmental cues that regulate proliferation, migration, differentiation, axon guidance, and synapse formation within the intact nervous system. Studying these processes in vivo reveals how neural circuits assemble and how gene expression, cell-cell signaling, and the tissue environment influence brain structure and function. This approach supports research into neurodevelopmental disorders, injury and repair, and the evaluation of therapies in biologically realistic settings.

In Vivo Development - Related Videos

Research

JoVE Journal - Neuroscience

Ex vivo Culturing of Whole, Developing Drosophila Brains

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Cited by 16 •

2012

This article describes a method by which one can mimic in vivo development of the Drosophila mushroom body in an ex vivo culture system.

In vivo Electroporation of Developing Mouse Retina

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Cited by 33 •

2011

A method for the incorporation of plasmid DNA into murine retinal cells for the purpose of performing either gain- or loss of function studies in vivo is presented. This method capitalizes on the transient increase in permeability of cell plasma membranes induced by the application of an external electrical field.

An Ex vivo Culture System to Study Thyroid Development

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Cited by 14 •

2014

This protocol describes dissection of mouse embryonic thyroid anlagen and the culture of explants on semiporous filters or on microscopy plastic slides. This system is ideal to study morphogenetic or differentiation events occurring during thyroid development of wild type or knockout embryos, and is amenable to gain- and loss-of-function experiments.

Mesoscopic Fluorescence Tomography for In-vivo Imaging of Developing Drosophila

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Cited by 9 •

2009

Mesoscopic fluorescence tomography operates beyond the penetration limits of tissue-sectioning fluorescence microscopy. The technique is based on multi-projection illumination and a photon transport description. We demonstrate in-vivo whole-body 3D visualization of the morphogenesis of GFP-expressing wing imaginal discs in Drosophila melanogaster.

Gene Transfer to the Developing Mouse Inner Ear by In Vivo Electroporation

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Cited by 23 •

2012

The mouse inner ear is a placode-derived sensory organ whose developmental program is elaborated during gestation. We define an in utero gene transfer technique consisting of three steps: mouse ventral laparotomy, transuterine microinjection, and in vivo electroporation. We use digital video microscopy to demonstrate the critical experimental embryological techniques.

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