Mouse Platform Tilting

Mouse platform tilting is an experimental method that evaluates how mice respond to controlled changes in body orientation, providing insight into balance, motor coordination, and vestibular function. During testing, a motorized platform tilts at defined angles or speeds, stimulating sensory systems that detect head and body position while researchers record postural adjustments, latency, movement, or loss of balance. In medicine, this approach supports the study of inner-ear disorders, neurological disease, motor impairment, and drug effects in preclinical models. By producing standardized behavioral measurements, mouse platform tilting helps connect physiological mechanisms with disease progression and treatment responses.

Mouse Platform Tilting - Related Videos

Research

JoVE EoE - Neuronal Culture Techniques

Generation of Tilted Amygdala Slices from a Mouse Brain

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2025

The video demonstrates the generation of tilted amygdala slices from a mouse brain. The brain is positioned at an angle on the vibratome specimen stage to obtain slices containing the amygdala and axons from the medial prefrontal cortex that form synaptic connections with the amygdala. The brain slices are maintained at the physiological temperature to preserve the tissue for further experiments.

Tilt Testing with Combined Lower Body Negative Pressure: a "Gold Standard" for Measuring Orthostatic Tolerance

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Cited by 31 •

2013

We describe a "gold standard" for evaluating orthostatic tolerance (OT) using tilt testing with combined lower body negative pressure (LBNP). This can be combined with non-invasive evaluations of cardiovascular reflex control. Normal and abnormal responses are defined.

Single Particle Electron Microscopy Reconstruction of the Exosome Complex Using the Random Conical Tilt Method

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Cited by 35 •

2011

This article describes a standard method to get a three-dimensional (3D) reconstruction of biological macromolecules using negative staining electron microscopy (EM). In this protocol, we explain how to get the 3D structure of the Saccharomyces cerevisiae exosome complex at medium resolution using the random conical tilt reconstruction method (RCT).

Inducing a Spinal Cord Contusion in a Mouse Model Using a Spinal Cord Injury Coaxial Platform

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2025

Source: Elzat, E. Y. Y., et al., Establishing a Mouse Contusion Spinal Cord Injury Model Based on a Minimally Invasive Technique. J. Vis. Exp. (2022).This video demonstrates the method for inducing a contusion injury at the T9 level spinal cord in a mouse model, using a spinal cord injury coaxial platform. A weight is dropped on the T9 level spinal cord that creates a contusion that immediately causes tissue discoloration and swelling.

A Novel Stretching Platform for Applications in Cell and Tissue Mechanobiology

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Cited by 6 •

2014

We present in this article a novel stretching platform that can be used to investigate single cell responses to complex anisotropic biaxial mechanical deformation and quantify the mechanical properties of biological tissues.

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