Cortico-hippocampal Tissue

Cortico-hippocampal tissue comprises interconnected regions of the cerebral cortex and hippocampus that support learning, memory, and related cognitive functions. Its function depends on reciprocal neural communication, in which patterned electrical activity and synaptic plasticity modify connections between cortical and hippocampal circuits. Experimental study of this tissue, including prepared brain sections and cultured neural models, helps researchers examine circuit organization, memory encoding, and information transfer. These approaches also provide valuable systems for investigating neurological disorders, evaluating cellular mechanisms of disease, and testing how structural or functional changes affect cognition.

Cortico-hippocampal Tissue - Related Videos

Research

JoVE Journal - Medicine

Working with Human Tissues for Translational Cancer Research

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Cited by 4 •

2015

Translational cancer research is dependent on extraction of human tissues. Much work has gone into optimizing extraction methods for ex vivo analysis. Here, we describe tissue processing methods allowing for maximal data output from limited samples.

Research

JoVE Journal - Bioengineering
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Tissue Engineering of a Human 3D in vitro Tumor Test System

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Cited by 34 •

2013

Methods to create human 3D tumor tissues as test systems are described. These technologies are based on a decellularized Biological Vascularized Scaffold (BioVaSc), primary human cells and a tumor cell line, which can be cultured under static as well as under dynamic conditions in a flow bioreactor.

Y-27632 Enriches the Yield of Human Melanocytes from Adult Skin Tissues

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Cited by 3 •

2020

This paper reports that the addition of Y-27632 to TIVA medium can significantly increase the yield of melanocytes from adult skin tissues.

Engineering Skeletal Muscle Tissues from Murine Myoblast Progenitor Cells and Application of Electrical Stimulation

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Cited by 40 •

2013

Engineered muscle tissue has great potential in regenerative medicine, as disease model and also as an alternative source for meat. Here we describe the engineering of a muscle construct, in this case from mouse myoblast progenitor cells, and the stimulation by electrical pulses.

SpOT the Correct Tissue Every Time in Multi-tissue Blocks

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Cited by 5 •

2015

The purpose of the Specimen Orientation Tag (SpOT) is to function as an orientation tool to aid in individual tissue identification in multi-tissue paraffin blocks. These protocols demonstrate how it is constructed easily from common, low-cost histology materials and serves as a reliable visual marker in paraffin blocks and sections.

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