Assistive Walking Device

An assistive walking device is an engineered tool that helps a person stand, balance, or move when strength, coordination, or mobility is limited. Devices such as canes, crutches, walkers, orthoses, and powered exoskeletons work by redistributing body weight, widening the base of support, guiding joint motion, or adding controlled mechanical assistance during gait. In bioengineering, their design combines biomechanics, materials science, sensors, and user-centered principles to match support with individual needs. These devices support rehabilitation, improve functional mobility, and provide platforms for studying human movement, while ongoing development aims to increase comfort, adaptability, safety, and independence.

Assistive Walking Device - Related Videos

Research

JoVE Journal - Medicine

Use of Two Intracorporeal Ventricular Assist Devices As a Total Artificial Heart

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Cited by 4 •

2018

Here, we present a protocol using two centrifugal pumps as a total artificial heart replacement.

In Vitro Thrombosis Test for Ventricular Assist Devices

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2025

We present a benchtop protocol to induce thrombosis in ventricular assist devices (VAD) within a recirculating test platform. This method serves to identify thrombogenic hotspots in the blood flow path and can help improve thromboresistance ahead of preclinical testing in animal models.

Tracking Freely Walking Flies: A Method to Assess Locomotion in Drosophila

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2023

This video describes how to track freely walking flies to assess their general locomotion ability. The featured protocol demonstrates the assay's setup and data analysis using video tracking software.

The Ladder Rung Walking Task: A Scoring System and its Practical Application.

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Cited by 305 •

2009

The ladder rung walking task is a new test to assess skilled walking and measure both forelimb and hindlimb placing, stepping, and inter-limb co-ordination.

Extracellular Wire Tetrode Recording in Brain of Freely Walking Insects

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Cited by 24 •

2014

We previously developed a technique for implanting tetrode wires into the central complex of cockroach brains that allows us to monitor activity in individual units of tethered cockroaches. Here we present a modified version of that technique that allows us to also record brain activity in freely moving insects.

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