Time-dependent Increase in the Network Response to the Stimulation of Neuronal Cell Cultures on Micro-electrode Arrays

9.9K Views

10:45 min

May 29th, 2017

DOI :10.3791/55726-v

May 29th, 2017

Transcript

Explore More Videos

Keywords Microelectrode Arrays

Chapters in this video

0:05

Title

1:04

Embryo Removal and Brain Extraction

3:19

Frontal Cortext Removal

4:46

Cell Dissociation

6:48

Plating Cells and Maintaining the Cultures

8:01

Visual Inspections and Recording

9:24

Results: Trained Networks Have Significantly Altered Spike Frequencies

10:19

Conclusion

Related Videos

Multi-electrode Array Recordings of Neuronal Avalanches in Organotypic Cultures

26.5K Views

Assessment of the Effects of Endocrine Disrupting Compounds on the Development of Vertebrate Neural Network Function Using Multi-electrode Arrays

6.0K Views

How to Culture, Record and Stimulate Neuronal Networks on Micro-electrode Arrays (MEAs)

55.0K Views

Functional Evaluation of Biological Neurotoxins in Networked Cultures of Stem Cell-derived Central Nervous System Neurons

9.4K Views

Interfacing 3D Engineered Neuronal Cultures to Micro-Electrode Arrays: An Innovative In Vitro Experimental Model

10.1K Views

Spiral Ganglion Neuron Explant Culture and Electrophysiology on Multi Electrode Arrays

9.9K Views

Interfacing Microfluidics with Microelectrode Arrays for Studying Neuronal Communication and Axonal Signal Propagation

8.2K Views

Two-Photon Polymerization 3D-Printing of Micro-scale Neuronal Cell Culture Devices

1.6K Views

A Multi-Electrode Array Platform for Modeling Epilepsy Using Human Pluripotent Stem Cell-Derived Brain Assembloids

1.3K Views

Utilizing Multielectrode Arrays to Measure Synaptic Physiology in 3D Coculture Spheres

151 Views