Bio-hybrid Drone

A bio-hybrid drone is an aerial system that combines engineered components with living biological material or organisms to achieve functions that conventional drones may perform less efficiently. Its operation relies on integrating biological capabilities, such as sensing, movement, or adaptive responses, with electronics, sensors, communication systems, and mechanical structures that provide control and support. In engineering, bio-hybrid drones can inform new approaches to aerial mobility, environmental monitoring, navigation, and operation in complex settings. They also provide a platform for studying how biological and artificial systems can work together, potentially enabling smaller, more adaptable, and energy-efficient robotic vehicles.

Bio-hybrid Drone - Related Videos

Research

JoVE Journal - Engineering
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Electroantennography-based Bio-hybrid Odor-detecting Drone using Silkmoth Antennae for Odor Source Localization

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Cited by 13 •

2021

This study introduces experimental protocols for a bio-hybrid odor-detecting drone based on silkmoth antennae. The operation of an experimental electroantennogram device with silkmoth antennae is presented, in addition to the structure of a bio-hybrid drone designed for odor source localization using the spiral-surge algorithm.

Research

JoVE Journal - Environment
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Collecting and Processing Drone-based Remotely Sensed Data for Use in Forest Recovery Monitoring

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Cited by 1 •

2025

Recent advancements in remotely piloted aircraft systems (RPAS) allow sub-meter resolution, ideal for forest recovery monitoring. Integrating artificial intelligence (AI) enables deeper insights from large remotely sensed datasets. This protocol improves monitoring by supporting more efficient assessment and management of forested lands recovering from disturbance.

Research

JoVE Journal - Engineering

Development of a Bio-Hybrid Mosquito Stinger-Based Atomic Force Microscopy Probe

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Cited by 1 •

2024

Quantitative and controlled investigations into insect biting behaviors are crucial for devising effective strategies to combat vector-borne diseases. In this context, a method for fabricating a bio-hybrid atomic force microscopy (AFM) probe is introduced.

Bridging the Bio-Electronic Interface with Biofabrication

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Cited by 3 •

2012

This article describes a biofabrication approach: deposition of stimuli-responsive polysaccharides in the presence of biased electrodes to create biocompatible films which can be functionalized with cells or proteins. We demonstrate a bench-top strategy for the generation of the films as well as their basic uses for creating interactive biofunctionalized surfaces for lab-on-a-chip applications.

Patterning of Embryonic Stem Cells Using the Bio Flip Chip

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Cited by 2 •

2007

We demonstrate a simple method for placing cells at desired locations on a substrate. This method patterns cells by flipping a silicone chip containing microwells filled with cells onto the substrate. This method provides a new way to modulate diffusible and juxtacrine signaling between cells.

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