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Image: three images of someone walking with the help of the prosthetic knee; Copyright: Helen Huang

Using AI to train robotic prosthetics

18/01/2019

Researchers from North Carolina State University, the University of North Carolina and Arizona State University have developed an intelligent system for "tuning" powered prosthetic knees, allowing patients to walk comfortably with the prosthetic device in minutes, rather than the hours necessary if the device is tuned by a trained clinical practitioner.
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Image: robot hand and human hand are going to shake hands in front of a laptop; Copyright: MedUni Vienna

Bionic reconstruction after amputation of a hand

15/01/2019

Modern prostheses offer patients who have had a hand amputated much greater capability in everyday life than was possible with previous prosthetic reconstructive techniques. Redundant nerves from the amputated extremity can be surgically transferred to provide a much better connection between the patient’s body and the prosthesis.
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Image: Proband with a neuroprosthesis; Copyright: MoreGrasp

MoreGrasp – being able to grasp again with paraplegia

22/11/2018

Every year between 250.000 and 500.000 people suffer a spinal cord injury, MoreGrasp is intended to make their lives easier. The project aims to restore the lost gripping function in people with high paraplegia. Researchers at Graz University of Technology have developed a neuroprosthesis that is currently undergoing a feasibility study.
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Image: View over the shoulders of two doctors at a screen showing a model of a heart; Copyright: panthermedia.net/Wavebreakmedia ltd

Regenerative heart valves: from simulation to replacement

23/07/2018

Every year, more than 250,000 patients worldwide receive heart valve implants. Children require repeated replacement surgery because their bodies are still growing, the prosthetic heart valves are not. Regenerative heart valves solve this problem. Until now, we have only been able to monitor how these living implants develop in the body after the fact. Computer models now make this predictable.
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Image: Dr. Betsch next to a computer screen showing scans of the spine; Copyright: privat

Light and Bluetooth – dynamic measurement techniques for orthopedics

02/05/2018

X-rays for diagnostic imaging and therapy evaluation are still the norm in orthopedics. Meanwhile, patients who frequently need X-rays are repeatedly exposed to radiation. That's why the University Hospital RWTH Aachen uses and develops methods that are not just radiation-free but can also capture motions.
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Image: Woman is standing on a 3D scanner that measures her feet; Copyright: panthermedia.net/roman023

Biomechanical measuring systems: Versatile tools for many disciplines

02/05/2018

When human movements are no longer as smooth as they should be – due to misalignments or as the result of an injury for example – biomechanical measuring systems spring into action. Thanks to different types of sensors and optical technologies, physicians, therapists, and sports scientists embark on a search for possible causes and corrective options.
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Image: Computer-generated graphic showing two hip balls next to each other. Implantation of a sleeve is demonstrated on them; Copyright: revomotion GmbH Köln

Hip joint: sleeve versus endoprosthesis

10/04/2017

People with hip osteoarthritis often suffer from severe pain and only an endoprosthesis implantation can provide relief. This involves a major intervention and long-term rehabilitation because the implant requires the removal of a section of the thigh bone. The "MioHIP" research project looks for an elastic alternative.
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