Featured Research

from universities, journals, and other organizations

Thought-controlled prosthesis changing lives of amputees

Date:
November 28, 2012
Source:
Chalmers University of Technology
Summary:
The world’s first implantable robotic arm controlled by thoughts is being developed. The first operations on patients will take place this winter.

Max Ortiz Catalan demonstrates how the system works with the aid of electrodes, which capture bio-electric signals from the surface of the arm. Amputees will, however, have the electrodes implanted directly on the nerves and muscles inside the body, which will be permanently accessible through the Brånemark osseointegrated implant (OPRA Implant System).
Credit: Oscar Mattsson

The world's first implantable robotic arm controlled by thoughts is being developed by Chalmers researcher Max Ortiz Catalan. The first operations on patients will take place this winter.

Every year, thousands of people across the world lose an arm or a leg.

"Our technology helps amputees to control an artificial limb, in much the same way as their own biological hand or arm, via the person's own nerves and remaining muscles. This is a huge benefit for both the individual and to society," says Max Ortiz Catalan, industrial doctoral student at Chalmers University of Technology in Sweden.

Ever since the 1960s, amputees have been able to use prostheses controlled by electrical impulses in the muscles. Unfortunately, however, the technology for controlling these prostheses has not evolved to any great extent since then. For example, very advanced electric hand prostheses are available, but their functionality is limited because they are difficult to control.

"All movements must by pre-programmed," says Max Ortiz Catalan. "It's like having a Ferrari without a steering wheel. Therefore, we have developed a new bidirectional interface with the human body, together with a natural and intuitive control system."

Today's standard socket prostheses, which are attached to the body using a socket tightly fitted on the amputated stump, are so uncomfortable and limiting that only 50 percent of arm amputees are willing to use one at all.

This research project is using the world-famous Brånemark titanium implant instead (OPRA Implant System), which anchors the prosthesis directly to the skeleton through what is known as osseointegration.

"Osseointegration is vital to our success. We are now using the technology to gain permanent access to the electrodes that we will attach directly to nerves and muscles," says Max Ortiz Catalan.

Currently, in order to pick up the electrical signals to control the prosthesis, electrodes are placed over the skin. The problem is that the signals change when the skin moves, since the electrodes are moved to a different position. Additionally, the signals are also affected when we sweat, since the resistance on the interface changes.

In this project, the researchers are planning to implant the electrodes directly on the nerves and remaining muscles instead. Since the electrodes are closer to the source and the body acts as protection, the bio-electric signals become much more stable. Osseointegration is used to enable the signals inside the body to reach the prosthesis. The electrical impulses from the nerves in the arm stump are captured by a neural interface, which sends them to the prostheses through the titanium implant. These are then decoded by sophisticated algorithms that allow the patient to control the prosthesis using his or her own thoughts.

In existing prostheses, amputees use only visual or auditory feedback. This means, for example, that you have to look at or hear the motors in the prosthesis in order to estimate the grip force applied to a cup if you want to move it around. With the new method, patients receive feedback as the electrodes stimulate the neural pathways to the patient's brain, in the same way as the physiological system. This means that the patient can control his or her prosthesis in a more natural and intuitive way. This has not been possible previously.

"Many of the patients that we work with have been amputees for more than 10 years, and have almost never thought about moving their missing hand during this time," says Max Ortiz Catalan. "When they arrived here, they got to test our virtual-reality environment or our more advanced prostheses in order to evaluate the decoding algorithms. We placed electrodes on their amputation stumps, and after a few minutes, they were able to control the artificial limbs in ways that they didn't know they could, most of the times. This made the patients very excited and enthusiastic."

The first operations on patients will take place this winter.

"By testing the method on a few patients, we can show that the technology works and then hopefully get more grants to continue clinical studies and develop the technology further. This technology can then become a reality for lots of people. We want to leave the lab and become part of the patients' everyday life. If the first operations this winter are successful, we will be the first research group in the world to make 'thought-controlled prostheses' a reality for patients to use in their daily activities, and not only inside research labs."

About osseointegration

Osseointegration (osseo=bone) is a method for anchoring prostheses directly to the skeleton, and it was developed in the 1960s by Professor Per-Ingvar Brånemark. He discovered that titanium is not rejected by the body, but is integrated into the surrounding bone tissue. In the beginning, the method was used to treat tooth loss using dental titanium implants. Since then, the method has been further developed and is also used today for leg, arm and face prostheses as well as for anchoring hearing aids. Since 1990, over 200 amputees have been treated using this method (OPRA Implant System) and have gained increased movement and enhanced quality of life.

About the artificial hand

The artificial hand can mimic a living hand. The motors in each finger can be controlled individually and simultaneously, for example, with a turning motion of the wrist. It is possible to demonstrate how the system works by using electrodes which capture myoelectric signals on the surface of the arm.


Story Source:

The above story is based on materials provided by Chalmers University of Technology. Note: Materials may be edited for content and length.


Cite This Page:

Chalmers University of Technology. "Thought-controlled prosthesis changing lives of amputees." ScienceDaily. ScienceDaily, 28 November 2012. <www.sciencedaily.com/releases/2012/11/121128093438.htm>.
Chalmers University of Technology. (2012, November 28). Thought-controlled prosthesis changing lives of amputees. ScienceDaily. Retrieved October 20, 2014 from www.sciencedaily.com/releases/2012/11/121128093438.htm
Chalmers University of Technology. "Thought-controlled prosthesis changing lives of amputees." ScienceDaily. www.sciencedaily.com/releases/2012/11/121128093438.htm (accessed October 20, 2014).

Share This



More Mind & Brain News

Monday, October 20, 2014

Featured Research

from universities, journals, and other organizations


Featured Videos

from AP, Reuters, AFP, and other news services

Court Ruling Means Kids' Online Activity Could Be On Parents

Court Ruling Means Kids' Online Activity Could Be On Parents

Newsy (Oct. 17, 2014) — In a ruling attorneys for both sides agreed was a first of its kind, a Georgia appeals court said parents can be held liable for what kids put online. Video provided by Newsy
Powered by NewsLook.com
The Best Foods To Boost Your Mood

The Best Foods To Boost Your Mood

Buzz60 (Oct. 17, 2014) — Feeling down? Reach for the refrigerator, not the medicine cabinet! TC Newman (@PurpleTCNewman) shares some of the best foods to boost your mood. Video provided by Buzz60
Powered by NewsLook.com
You Can Get Addicted To Google Glass, Apparently

You Can Get Addicted To Google Glass, Apparently

Newsy (Oct. 15, 2014) — Researchers claim they’ve diagnosed the first example of the disorder in a 31-year-old U.S. Navy serviceman. Video provided by Newsy
Powered by NewsLook.com
First Confirmed Case Of Google Glass Addiction

First Confirmed Case Of Google Glass Addiction

Buzz60 (Oct. 15, 2014) — A Google Glass user was treated for Internet Addiction Disorder caused from overuse of the device. Morgan Manousos (@MorganManousos) has the details on how many hours he spent wearing the glasses, and what his symptoms were. Video provided by Buzz60
Powered by NewsLook.com

Search ScienceDaily

Number of stories in archives: 140,361

Find with keyword(s):
 
Enter a keyword or phrase to search ScienceDaily for related topics and research stories.

Save/Print:
Share:  

Breaking News:

Strange & Offbeat Stories

 

Health & Medicine

Mind & Brain

Living & Well

In Other News

... from NewsDaily.com

Science News

Health News

Environment News

Technology News



Save/Print:
Share:  

Free Subscriptions


Get the latest science news with ScienceDaily's free email newsletters, updated daily and weekly. Or view hourly updated newsfeeds in your RSS reader:

Get Social & Mobile


Keep up to date with the latest news from ScienceDaily via social networks and mobile apps:

Have Feedback?


Tell us what you think of ScienceDaily -- we welcome both positive and negative comments. Have any problems using the site? Questions?
Mobile iPhone Android Web
Follow Facebook Twitter Google+
Subscribe RSS Feeds Email Newsletters
Latest Headlines Health & Medicine Mind & Brain Space & Time Matter & Energy Computers & Math Plants & Animals Earth & Climate Fossils & Ruins