Medial Perforant Path

The medial perforant path is a major excitatory pathway in the hippocampal formation that connects layer II neurons of the medial entorhinal cortex with the dentate gyrus and CA3 region, where it supports memory-related processing. Its glutamatergic axons cross the hippocampal fissure and terminate mainly in the middle molecular layer of the dentate gyrus, transmitting spatial and contextual information to granule cells. This circuit contributes to pattern separation, synaptic plasticity, learning, and navigation, making it an important model for studying hippocampal function and dysfunction in disorders involving memory, epilepsy, or neurodegeneration.

Medial Perforant Path - Related Videos

Research

JoVE Journal - Neuroscience

Foraging Path-length Protocol for Drosophila melanogaster Larvae

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Cited by 18 •

2016

We provide a detailed protocol for a Drosophila melanogaster foraging path-length assay. We discuss the preparation and handling of test animals, how to perform the assay and analyze the data.

Education

JoVE Core - Physics

Mean free path and Mean free time

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2025

Consider the gas molecules in a cylinder. They move in a random motion as they collide with each other and change speed and direction. The average of all the path lengths between collisions is known as the "mean free path." The mean free path varies inversely with the density of the molecules because when there are more molecules inside a volume, they have a greater chance of colliding with each other, thus reducing the mean free path. Additionally, the mean free path is inversely related to...

A Standardized Surgical Technique for Tessier Medial Transnasal Canthopexy

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2026

Medial canthopexy allows correction of the position and fixation of the medial canthal tendon. Due to the technical difficulties of this procedure, there is a need for a detailed protocol for educational purposes. Here, we describe a standardized reproducible technique for bilateral medial transnasal canthopexy by an orbitonasal approach.

Induction of a Subarachnoid Hemorrhage in a Mouse Model through Endovascular Perforation

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2025

The video demonstrates the induction of subarachnoid hemorrhage via endovascular perforation in a mouse model. An incision is made in the neck region of the anesthetized mouse to access the common carotid artery and its bifurcation. A filament is inserted through the arteries to perforate an intracranial artery branch, inducing subarachnoid hemorrhage.

Path Between Thermodynamics States

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2023

Consider the two thermodynamic processes involving an ideal gas that are represented by paths AC and ABC in Figure 1: In the first process for path A to C, the gas is kept at constant temperature T. It undergoes an expansion from volume V1 to V2. The work done by an ideal gas is expressed as Substituting for pressure as nRT/V from the ideal gas equation and integrating the terms, the work done by an ideal gas at constant temperature is obtained as In the second process, for path A to B, the...

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