Neural Development Study

Neural development study examines how the nervous system forms, organizes, and matures from early embryonic stages through later life, providing a foundation for understanding brain function and neurological disorders. It investigates coordinated processes such as neural stem cell proliferation, differentiation, migration, axon guidance, synapse formation, and activity-dependent circuit refinement, regulated by genetic programs and environmental signals. In neuroscience, these studies use methods including imaging, molecular analysis, cell culture, and animal models to track developing neurons and circuits. Findings help explain normal brain development and inform research on neurodevelopmental conditions, injury, regeneration, and potential therapeutic strategies.

Neural Development Study - Related Videos

Research

JoVE Journal - Biology

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.

Developing a Micro-Tissue-Engineered Neural Network Using a Hydrogel-Based Micro-column

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2025

Source: Struzyna, L. A. et. al., Anatomically Inspired Three-dimensional Micro-tissue Engineered Neural Networks for Nervous System Reconstruction, Modulation, and Modeling. J. Vis. Exp. (2017)This video demonstrates the development of micro-tissue-engineered neural networks using a hydrogel micro-column with an extracellular matrix core. Seeded neuronal aggregates adhere, extend projections, and form structured neural networks, contributing to advancements in neurodevelopment and...

Time-lapse Live Imaging of Clonally Related Neural Progenitor Cells in the Developing Zebrafish Forebrain

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Cited by 11 •

2011

The present video demonstrates a method which takes advantage of the combination of electroporation and confocal microscopy to perform live imaging on individual neural progenitor cells in the developing zebrafish forebrain. In vivo analysis of the development of forebrain neural progenitor cells at a clonal level can be achieved in this way.

Research

JoVE Journal - Neuroscience
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Enumeration of Neural Stem Cells Using Clonal Assays

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Cited by 5 •

2016

Neural stem cells (NSCs) refer to cells which can self-renew and differentiate into the three neural lineages. Here, we describe a protocol to determine NSC frequency in a given cell population using neurosphere formation and differentiation under clonal conditions.

Research

JoVE Journal - Neuroscience
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High-resolution Live Imaging of Cell Behavior in the Developing Neuroepithelium

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Cited by 21 •

2012

Imaging embryonic tissue in real-time is challenging over long periods of time. Here we present an assay for monitoring cellular and sub-cellular changes in chick spinal cord for long periods with high spatial and temporal resolution. This technique can be adapted for other regions of the nervous system and developing embryo.

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