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Automated cyborg Cockroach factory can churn out a bug a minute

While the use cases for cyborg bugs are small this new factory brings all kinds of possibilities to life - for better and worse.

Key takeaways

  • An automated cyborg cockroach factory could help bring the idea to life.
  • First, the researchers anesthetized the cockroaches by exposing them to carbon dioxide for 10 minutes.
  • A four-bug team was able to cover 80 percent of a 20-square-foot outdoor test environment filled with obstacles in about 10 minutes.
Cite or link to this article

Griffin, M. (2025) 'Automated cyborg Cockroach factory can churn out a bug a minute', 311 Institute, 17 January. Available at: https://www.311institute.com/automated-cyborg-cockroach-factory-can-churn-out-one-cyborg-bug-a-minute/ (Accessed: 1 October 2026).

Envisioning armies of electronically controllable insects is probably nightmare fuel for most people. But scientists think they could help rescue workers scour challenging and hazardous terrain. An automated cyborg cockroach factory could help bring the idea to life. And yes you heard that right, and yes we’re talking about actual cyborg cockroaches.

The merger of living creatures with machines is a staple of science fiction, but it’s also a serious line of research for academics. Several groups have implanted electronics into dragonflies, locusts, moths, beetles, and cockroaches that allow simple control of the insects.

However, building these cyborgs is tricky as it takes considerable dexterity and patience to surgically implant electrodes in their delicate bodies. This means that creating enough for most practical applications is simply too time-consuming.

To overcome this obstacle, researchers at Nanyang Technological University in Singapore have automated the process, using a robotic arm with computer vision to install electrodes and tiny backpacks full of electronics on Madagascar hissing cockroaches. The approach cuts the time required to attach the equipment from roughly half an hour to just over a minute.

“In the future, factories for insect-computer bio-hybrid robots could be built to satisfy the needs for fast preparation and application of the hybrid robots,” the researchers write in a non-peer-reviewed paper on arXiv.

“Different sensors could be added to the backpack to develop applications on the inspection and search missions based on the requirements.”

Cyborg insects could be a promising alternative to conventional robots thanks to their small size, ability to operate for hours on little food, and their adaptability to new environments. As well as helping with search and rescue operations, the researchers suggest that swarms of these robot bugs could be used to inspect factories.

The researchers had already shown that signals from electrodes implanted into cockroach abdomens could be used to control the direction of travel and get them to slow down and even stop. But installing these electrodes and a small backpack with control electronics required painstaking work from a trained researcher.

That kind of approach makes it difficult to scale up to the hundreds or even thousands of insects required for practically useful swarms. So, the team developed an automated system that could install the electronics on a cockroach with minimal human involvement.

First, the researchers anesthetized the cockroaches by exposing them to carbon dioxide for 10 minutes. They then placed the bugs on a platform where a pair of rods powered by a motor pressed down on two segments of their hard exoskeletons to expose a soft membrane just behind the head.

A computer vision system then identified where to implant the electrodes and used this information to guide a robotic arm carrying the electronic backpack. Electrodes in place, the arm pressed the backpack down until its mounting mechanism hooked into another section of the insect’s body. The arm then released the backpack, and the rods retracted to free the cyborg bug.

The entire assembly process takes just 68 seconds, and the resulting cockroaches are just as controllable as ones made manually, the researchers found. A four-bug team was able to cover 80 percent of a 20-square-foot outdoor test environment filled with obstacles in about 10 minutes.

Fabian Steinbeck at Bielefeld University in Germany told New Scientist that using these cyborg bugs for search and rescue might be tricky as they currently have to be controlled remotely. Getting signal in collapsed buildings and similar challenging terrain would be difficult, and we don’t yet have the technology to get them to navigate autonomously.

Rapid improvements in both Artificial Intelligence (AI) and communication technologies could soon change that though. So, it may not be too far-fetched to imagine swarms of robot bugs coming to your rescue in the near future.

FAQ

Why does this matter?

While the use cases for cyborg bugs are small this new factory brings all kinds of possibilities to life - for better and worse.

Matthew Griffin

About the author

Matthew Griffin Founder, 311 Institute

Matthew Griffin is a multi-award winning Futurist and expert in Disruption and Innovation, Geopolitics, Leadership, and Technology, who NASA have described as a "walking encyclopaedia of the future" and a "futurist Polymath."

Read full bio

Matthew Griffin is a multi-award winning Futurist and expert in Disruption and Innovation, Geopolitics, Leadership, and Technology, who NASA have described as a "walking encyclopaedia of the future" and a "futurist Polymath." 15-time best selling author of the "Codex of the Future" series, Matthew is the Founder and Futurist in Chief of the 311 Institute, a global Futures and Deep Futures advisory firm working with royal households, world leaders, G7, G20, and G77 governments, NGOs, and multi-national mid and mega cap firms to help them explore, shape, and lead the next 50 years of business and society.

An award-winning YouTube creator with over a million followers, with an unrivalled global reach and impact, Matthew is a highly sought-after international keynote speaker, lecturer, and mentor who collaborates with global leaders through the United Nations Alliance of Civilizations (UNAOC) and United Nations General Assembly (UNGA) to shape pivotal initiatives such as the UN’s AI for Humanity program, the United Nations Conference of the Parties (UN COP), and the World Economic Forum in Davos.

As the former Global Head of Cloud, National Security, and Enterprise Sales for companies including Atos, Dell-EMC, and IBM, Matthew has a proven track record of building multi-billion dollar business units and turning failing divisions into market leaders. His ability to identify, analyse, and communicate the implications of hundreds of emerging technologies and trends is unparalleled, and his insights are trusted by many of the world’s most respected organisations, including ABB, Accenture, Adidas, AON, ARM, BCG, Centrica, Citi, Coca-Cola, Dentons, Deloitte, Dow Jones, EY, Google, KPMG, Lego, Legal & General, LinkedIn, Microsoft, PepsiCo, Qualcomm, RWE, Samsung, Siemens AG and Siemens Energy, T-Mobile, UBS, VISA, Walmart, Workday, Worldpay and many others.

Regularly featured in the global media including the AP, BBC, Bloomberg, CNBC, Discovery, Forbes, Khaleej Times, Telegraph, TIME, ViacomCBS, WIRED, and the WSJ, Matthews mission is to help organisations create a fair and sustainable future whose benefits are shared by everyone irrespective of their ability, background, or circumstances.

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Sources and further reading

  1. Cyborg moths can be controlled mid flight by scientists vice.com
  2. Beetle computer hybrid wired.com
  3. Roach biobots embs.org
  4. 2411.13164 arxiv.org
  5. told New Scientist newscientist.com

Source: first published by the 311 Institute on 17 January 2025. Cite as: Griffin, M. (2025). Automated cyborg Cockroach factory can churn out a bug a minute. 311 Institute. https://www.311institute.com/automated-cyborg-cockroach-factory-can-churn-out-one-cyborg-bug-a-minute/

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