Neural Hypertrophy Detection

Neural Hypertrophy Detection is the identification and measurement of abnormal or adaptive enlargement in neurons, glial cells, or other neural structures, helping researchers characterize changes in nervous-system organization. It typically combines microscopy or neuroimaging with morphometric analysis, comparing cell size, tissue volume, or structural features across experimental conditions and controls. In neuroscience, these measurements can support investigations of neural plasticity, development, injury responses, and disease-related remodeling. Reliable detection helps distinguish genuine hypertrophic changes from variations caused by tissue preparation or measurement methods, strengthening links between cellular structure and neural function.

Neural Hypertrophy Detection - Related Videos

Research

JoVE Journal - Medicine

Ascending Aortic Constriction in Rats for Creation of Pressure Overload Cardiac Hypertrophy Model

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Cited by 17 •

2014

We describe a stepwise procedure for creating pressure overload and left ventricular hypertrophy in Wistar rats by constriction of the ascending aorta using a small metallic clip. This model is extensively used for studying remodeling changes during cardiac hypertrophy and for identifying and evaluating strategies for regression of such changes.

Education

JoVE Core - Pathophysiology

Cellular Adaptation II: Hypertrophy

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2026

Hypertrophy is the increase in the size of individual cells, resulting in the enlargement of a tissue or organ. Unlike hyperplasia, which involves an increase in cell number, hypertrophy is characterized by an increase in cell volume. This process often occurs in response to higher functional demand or hormonal stimulation, leading to the production of more structural proteins and organelles, thereby enhancing the cells' work capacity.There are two primary types of hypertrophy: physiological...

Technique of Minimally Invasive Transverse Aortic Constriction in Mice for Induction of Left Ventricular Hypertrophy

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Cited by 34 •

2017

The aim of this protocol is to describe step-by-step the technique of minimally invasive transverse aortic constriction (TAC) in mice. By elimination of intubation and ventilation which are mandatory for the commonly used standard procedure, minimally invasive TAC simplifies the operative procedure and reduces the strain put on the animal.

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
Free Sample

Neural-Colony Forming Cell Assay: An Assay To Discriminate Bona Fide Neural Stem Cells from Neural Progenitor Cells

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Cited by 36 •

2011

This video protocol demonstrates how to discriminate and enumerate bona fide neural stem cells in a mixed population of neural precursor cells using the neural colony-forming cell assay.

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