Technology Review - Published By MIT
Advertisement

Building a Self-Assembling Stomach-Bot

Modules that self-assemble inside the stomach could perform more-sophisticated diagnosis and treatment.

By Kristina Grifantini

Monday, September 22, 2008

smaller text tool iconmedium text tool iconlarger text tool icon

Doctors have long sought better ways to examine the workings of the human body without having to cut their patients open. A swallowable camera, little bigger than a normal pill, can already snap pictures as it floats through the stomach and intestine, offering a less invasive way to perform diagnosis than an endoscope or surgery. Now a consortium of European researchers is testing a way to connect several swallowable devices to create a surgical "robot" that would self-assemble inside the stomach.

Linked up: By using magnetic links between capsules, researchers hope to build a snake-like robot that can self-assemble inside a patient’s stomach.
Credit: ETH Zurich
Multimedia
video  Click here to see how researchers conducted the self-assembling modular experiment.
video  Click here to see a proof of concept of the swallowable modules in action.

The Israeli company that developed the first pill cameras, Given Imaging, is currently working on a way to control the movement of its camera capsule from outside the body. Several academic research groups are also looking at ways to let swallowable capsules maneuver themselves by rolling, crawling, or sticking to tissue. With greater control, doctors should be able to better diagnose and possibly even treat illness. But the capabilities of such intestinal devices will still be limited because a capsule must remain small enough to be comfortably swallowed.

A collaboration of researchers from Italy, France, Switzerland, and Spain, called ARES, is testing a way for multiple capsules to automatically snap together. Each would be swallowed individually before assembling into a more complex device once safely in the stomach.

The ultimate goal is for each capsule to perform a different task: one for imaging, one for power, one to take samples, and so on. Once inside the stomach, the capsules would link together, creating a snake-like device that could slide through the intestines, performing more-complex tasks than those performed by a single capsule or several free-floating ones.

"Instead of having a single capsule, we propose a modular approach where each of the capsules could have different functionalities," says Zoltán Nagy, a researcher at the Swiss Federal Institute of Technology (ETH), in Zurich, and a member of the ARES project. "Before we can actually talk about such complex robots inside the stomach, we need to solve the fundamental problem of self-assembly. Our work suggests one [way that] this can be done robustly," says Nagy.

The ETH group decided to use magnets to connect its modules, since they don't require onboard power and can be easily monitored from outside the body.

Story continues below

To find the best design for the self-assembling capsules, the researchers tested different designs in a plastic model of the stomach filled with liquid. They ran around 50 tests for each of 12 different configurations of module size, magnet type, and magnet arrangement. A single magnet with its positive-negative axis on the surface of a longer capsule worked best, yielding a 75 percent rate of success at linking the two capsules; modifying the magnet module to make it more flexible increased this to 90 percent. The group will present details of the linking modules this week at the International Conference on Intelligent Robots and Systems in France.

"[The] work is interesting as a concept since modular robots assembling inside the body could enable more flexible and complex gastrointestinal-related robotic applications," says Metin Sitti, a scientist who works on gripping robotic capsules at Carnegie Mellon University. "Current capsules typically get bigger by adding more functionalities . . . Assembling modules would have [fewer] such issues."

Comments

Log In

Forgot your password?     Register »
Advertisement

Videos

Making 3D Maps on the Move
Technology Review November/December 2009

Current Issue

Natural Gas Changes the Energy Map
The United States has vast supplies of this cleaner fossil fuel. But how should we use it?
Featured Content
Sponsored by:
White Papers

Twelve ways to reduce costs with SQL Server 2008
Find out how to reduce costs and get more efficient

Download

Total Economic Impact of SQL Server 2008 Upgrade
Forrester reports on increasing productivity and management capabilities

Download 

Achieving Cost and Resource Savings with UC
How Office Communications Server R2 and Exchange Server can make your business smarter and more efficient

Download 

The Compelling Case for Conferencing
Read how you can improve workload support and find IT efficiencies

Download

How Windows Server 2008 R2 Helps Optimize IT and Save you Money
Read how you can improve workload support and find IT efficiencies

Download

Windows Server 2008 R2 Hyper-V Live Migration
See how Windows Server 2008 R2 and Hyper-V enable virtualization and Live Migration

Download
Advertisement
Subscribe to Technology Review's daily e-mail update. Enter your e-mail address

TECHNOLOGY RESOURCES
Advertisement
MIT Massachusetts Institute of Technology © 2009 Technology Review. All Rights Reserved.