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The suit contains no less than 41 sensors, and is equipped with a portable transmitter.
November 30, 2016
By: University of Twente
From now on it will be possible to accurately monitor and analyze how stroke patients move during everyday life. This involves the use of a new suit fitted with 41 sensors, plus the infrastructure needed to transmit, store and process all of the data collected. This technology and information will make it possible to improve the rehabilitation process and cut healthcare costs. Bart Klaassen developed the system together with an international team of engineers and healthcare professionals. He will defend his thesis (which is based on this research) on 30 November, at the University of Twente. “The technology is finally ready.” As many as 33 million people throughout the world suffered strokes in 2010. With our aging population, it seems logical to expect a further increase in these numbers in the upcoming years. Stroke survivors often have to cope with physical limitations. They generally take part in rehabilitation programs, which are intended to help patients function as effectively as possible in their everyday lives. In practice, however, rehabilitation mainly takes place in rehabilitation clinics. Not enough is known about how, after completing such programs, patients cope with their limitations in a daily life setting. Yet it is known that a better understanding of how these people function in everyday life could lead to more effective rehabilitation, at a lower cost. In the context of a European FP7 research project, Bart Klaassen (a PhD student at the University of Twente) and a large team of researchers developed a system for accurately measuring and modeling these patients’ movement quality, and for transmitting the relevant information to the therapist. This project is a world first. Never before have researchers used systems like this to analyze these patients’ every movement in a daily life setting. “There has long been a great need for systems like this, but the technology simply was not ready,” said Klaassen. “That is now changing rapidly, thanks to rapid developments in the fields of battery technology, wearables, smart e-textiles, and big data analysis.” 41 Sensors Together with a large consortium of engineers and healthcare professionals, Bart Klaassen developed the INTERACTION System. This consists of a suit that study subjects had to wear under their clothing for three months, as well as the entire technical infrastructure needed to transmit, store and process the data collected. The suit contains no less than 41 sensors, including sensors on a large number of body segments, sensors that measure muscle strength, stretch sensors on the back and the hands, and force sensors in the soles of the shoes. In addition, the suit is equipped with a portable transmitter that can transmit all of the information gathered through the internet to data processing servers at the University of Twente.
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