Linear Track Navigation

Linear track navigation is a behavioral paradigm in which an animal moves along a one-dimensional path to locate rewards, avoid errors, or reach defined destinations, providing a controlled measure of spatial behavior. As the subject repeatedly traverses the track, it uses environmental cues, landmark information, and task rules to learn route-relevant locations, while researchers quantify speed, stopping patterns, choice accuracy, and learning across trials. This method helps assess spatial memory, navigation strategies, motivation, and behavioral flexibility. It is widely used in neuroscience and behavioral research to examine how brain circuits, sensory information, and disease-related changes influence goal-directed movement.

Linear Track Navigation - Related Videos

Research

JoVE Journal - Medicine
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Technical Approach for Infrared Tracking for Soft Tissue Navigation with a Holographic Head-Mounted Display and Preclinical Validation

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2025

This protocol offers a guide to implement infrared marker tracking for free-moving phantoms (e.g., organs) and holographic visualization using Augmented Reality. Additionally, it outlines a setup for preclinical validation of holographic navigation systems using electromagnetic tracking on free-moving phantoms.

Research

JoVE Journal - Behavior
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Practical Methodology of Cognitive Tasks Within a Navigational Assessment

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Cited by 1 •

2015

Children who have complex communication needs can benefit from the use of a speech-generating device (SGD). Cognitive skills were identified as having an impact on the ability to navigate between levels of SGDs. This protocol describes the steps needed for Speech-language Pathologists to assess cognitive skills and navigational abilities.

Research

JoVE Journal - Biology

Linearization of the Bradford Protein Assay

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Cited by 292 •

2010

The accuracy and sensitivity of protein determination by the rapid and convenient Bradford assay is compromised by intrinsic nonlinearity. We show a simple linearization procedure that greatly increases the accuracy, improves the sensitivity of the assay about 10-fold, and significantly reduces interference by detergents.

Two-photon Calcium Imaging in Mice Navigating a Virtual Reality Environment

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Cited by 98 •

2014

Here we describe the experimental procedures involved in two-photon imaging of mouse cortex during behavior in a virtual reality environment.

Research

JoVE Journal - Neuroscience
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A Standardized Protocol for Functional Motor Mapping Using Navigated Transcranial Magnetic Stimulation

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2026

Here, we describe a standardized protocol for motor mapping using nTMS combined with diffusion tensor imaging (DTI)-based reconstruction of the corticospinal tract (CST). The protocol is reproducible, clinically feasible, and readily integrable into routine clinical workflows, providing a robust and valuable framework for motor pathway assessment, neuroplasticity research, and rehabilitation planning.

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