Neuronal Organization

Neuronal organization is the spatial arrangement and connectivity of neurons that enables nervous systems to process and transmit information. It arises through coordinated cell migration, axon guidance, synapse formation, and interactions with extracellular matrix and neighboring glial cells, producing structured networks with distinct pathways and functional regions. In bioengineering, researchers recreate these features using patterned substrates, biomaterials, microfluidic systems, and three-dimensional neural cultures. Such models support studies of neural development and disease, improve the design of brain-on-chip platforms and neural interfaces, and help guide strategies for repairing or replacing damaged nervous tissue.

Neuronal Organization - Related Videos

Research

JoVE Journal - Neuroscience

Imaging Neuronal Responses in Slice Preparations of Vomeronasal Organ Expressing a Genetically Encoded Calcium Sensor

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Cited by 12 •

2011

The vomeronasal organ (VNO) detects intraspecies chemical signals that convey social and reproductive information. We have performed Ca2+ imaging experiments using transgenic mice expressing G-CaMP2 in VNO tissue. This approach allows us to analyze the complicated response patterns of the vomeronasal neurons to large numbers of pheromone stimuli.

Automated Multimodal Stimulation and Simultaneous Neuronal Recording from Multiple Small Organisms

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Cited by 2 •

2023

We present a method for the flexible chemical and multimodal stimulation and recording of simultaneous neural activity from many Caenorhabditis elegans worms. This method uses microfluidics, open-source hardware and software, and supervised automated data analysis to enable the measurement of neuronal phenomena such as adaptation, temporal inhibition, and stimulus crosstalk.

Fabrication of Magnetic Platforms for Micron-Scale Organization of Interconnected Neurons

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Cited by 3 •

2021

This work presents a bottom-up approach to the engineering of local magnetic forces for control of neuronal organization. Neuron-like cells loaded with magnetic nanoparticles (MNPs) are plated atop and controlled by a micro-patterned platform with perpendicular magnetization. Also described are magnetic characterization, MNP cellular uptake, cell viability, and statistical analysis.

Presynapse Formation Assay Using Presynapse Organizer Beads and “Neuron Ball” Culture

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Cited by 3 •

2019

Presynapse formation is a dynamic process including accumulation of synaptic proteins in proper order. In this method, presynapse formation is triggered by beads conjugated with a presynapse organizer protein on axonal sheets of “neuron ball” culture, so that accumulation of synaptic proteins is easy to be analyzed during presynapse formation.

Protocols for Visualizing Steroidogenic Organs and Their Interactive Organs with Immunostaining in the Fruit Fly Drosophila melanogaster

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Cited by 9 •

2017

We describe a protocol for dissection, fixation, and immunostaining of steroidogenic organs in Drosophila larvae and adult females to study steroid hormone biosynthesis and its regulatory mechanism. In addition to steroidogenic organs, we visualize the innervation of steroidogenic organs as well as steroidogenic target cells such as germline stem cells.

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