A new generation of bionic prostheses based on the controlled design of the modular fingers, the wrist and the elbow of the elbow for people with different levels of upper limb amputation. (Q77625): Difference between revisions
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(Removed claim: summary (P836): The project is part of the National Smart Specialisation in Healthy Society:KIS 1 — Technology of medical engineering, including medical biotechnology, in the field of artificial organs (V Artificial organs).The project involves the development of innovative medical devices in the form of a prosthesis of a hand controlled by biological signals related to muscle progression and sound signals produced during their contraction.The prosthesis rese...) |
(Created claim: summary (P836): The project is part of the National Intelligent Specialisation in Health Society, i.e. KIS 1 – Technology of Medical Engineering, including medical biotechnology, in the field of artificial organs (V Artificial Organs). The subject of the project is the development of innovative medical devices in the form of hand prosthesis controlled by biological signals related to muscle vibration and sound signals generated during their contraction. The pro...) |
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The project is part of the National Intelligent Specialisation in Health Society, i.e. KIS 1 – Technology of Medical Engineering, including medical biotechnology, in the field of artificial organs (V Artificial Organs). The subject of the project is the development of innovative medical devices in the form of hand prosthesis controlled by biological signals related to muscle vibration and sound signals generated during their contraction. The prosthesis research will be carried out on the basis of the principles of bionic engineering – kinematic processes of the palm structure, will be mapped into the design prosthesis. The prosthesis will be based on the modular mechanical structure of the fingers (five independently controlled fingers allowing you to perform complex gripping movements, allowing precise gripping of objects of different sizes and different shapes) and moving wrist. In addition, the elbow joint module will be developed as part of the project, allowing the use of the prosthetic prosthesis to persons who have had a peritoneal amputation. For the processing of signals obtained from muscles remaining on the stump or from other areas of the body of a disabled person, a modern microcontroller will be used to ensure high speed of operation on the signal and with a wide set of advanced peripheral devices, which makes it possible to significantly miniaturise the measuring system and control system used in the drive device. The proposed solution will be an innovation in the field of medical engineering on a national and international scale, not only because of its functionality, but also because of the use of patented solutions and self-development and execution of control systems and algorithms. Our product will be used medically to replace the lost limb and will be directed to people who have had an amputation of the upper limbs- hand amputations, epidermal amputations and epidermal amputations. (English) | |||||||||||||||
Property / summary: The project is part of the National Intelligent Specialisation in Health Society, i.e. KIS 1 – Technology of Medical Engineering, including medical biotechnology, in the field of artificial organs (V Artificial Organs). The subject of the project is the development of innovative medical devices in the form of hand prosthesis controlled by biological signals related to muscle vibration and sound signals generated during their contraction. The prosthesis research will be carried out on the basis of the principles of bionic engineering – kinematic processes of the palm structure, will be mapped into the design prosthesis. The prosthesis will be based on the modular mechanical structure of the fingers (five independently controlled fingers allowing you to perform complex gripping movements, allowing precise gripping of objects of different sizes and different shapes) and moving wrist. In addition, the elbow joint module will be developed as part of the project, allowing the use of the prosthetic prosthesis to persons who have had a peritoneal amputation. For the processing of signals obtained from muscles remaining on the stump or from other areas of the body of a disabled person, a modern microcontroller will be used to ensure high speed of operation on the signal and with a wide set of advanced peripheral devices, which makes it possible to significantly miniaturise the measuring system and control system used in the drive device. The proposed solution will be an innovation in the field of medical engineering on a national and international scale, not only because of its functionality, but also because of the use of patented solutions and self-development and execution of control systems and algorithms. Our product will be used medically to replace the lost limb and will be directed to people who have had an amputation of the upper limbs- hand amputations, epidermal amputations and epidermal amputations. (English) / rank | |||||||||||||||
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Property / summary: The project is part of the National Intelligent Specialisation in Health Society, i.e. KIS 1 – Technology of Medical Engineering, including medical biotechnology, in the field of artificial organs (V Artificial Organs). The subject of the project is the development of innovative medical devices in the form of hand prosthesis controlled by biological signals related to muscle vibration and sound signals generated during their contraction. The prosthesis research will be carried out on the basis of the principles of bionic engineering – kinematic processes of the palm structure, will be mapped into the design prosthesis. The prosthesis will be based on the modular mechanical structure of the fingers (five independently controlled fingers allowing you to perform complex gripping movements, allowing precise gripping of objects of different sizes and different shapes) and moving wrist. In addition, the elbow joint module will be developed as part of the project, allowing the use of the prosthetic prosthesis to persons who have had a peritoneal amputation. For the processing of signals obtained from muscles remaining on the stump or from other areas of the body of a disabled person, a modern microcontroller will be used to ensure high speed of operation on the signal and with a wide set of advanced peripheral devices, which makes it possible to significantly miniaturise the measuring system and control system used in the drive device. The proposed solution will be an innovation in the field of medical engineering on a national and international scale, not only because of its functionality, but also because of the use of patented solutions and self-development and execution of control systems and algorithms. Our product will be used medically to replace the lost limb and will be directed to people who have had an amputation of the upper limbs- hand amputations, epidermal amputations and epidermal amputations. (English) / qualifier | |||||||||||||||
point in time: 14 October 2020
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Revision as of 10:13, 14 October 2020
Project in Poland financed by DG Regio
Language | Label | Description | Also known as |
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English | A new generation of bionic prostheses based on the controlled design of the modular fingers, the wrist and the elbow of the elbow for people with different levels of upper limb amputation. |
Project in Poland financed by DG Regio |
Statements
4,048,518.4 zloty
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5,671,271.0 zloty
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71.39 percent
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1 September 2016
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29 February 2020
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BIOENGINEERING.PL SPÓŁKA Z OGRANICZONĄ ODPOWIEDZIALNOŚCIĄ
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Projekt wpisuje się w Krajową Inteligentną Specjalizację w dziedzinie Zdrowe Społeczeństwo tj. KIS 1 - Technologie Inżynierii medycznej, w tym biotechnologie medyczne, w zakresie sztucznych narządów (V Sztuczne narządy). Przedmiotem projektu jest opracowanie innowacyjnych wyrobów medycznych w postaci protezy ręki sterowanej przy pomocy sygnałów biologicznych związanych z drganiem mięśni oraz sygnałami dźwiękowymi powstającymi podczas ich skurczu. Badania nad protezą będą przeprowadzane w oparciu o zasady inżynierii bionicznej - procesy kinematyczne struktury dłoni, zostaną odwzorowane w projektowanej protezie. Proteza będzie opierała się na modularnej. mechaniczne sterowanej budowie palców (pięć niezależnie sterowanych palcami umożliwiających wykonywanie złożonych ruchów chwytnych, pozwalającymi na precyzyjne chwytanie przedmiotów o różnych rozmiarach oraz o zróżnicowanych kształtach) i ruchomym nadgarstku. Ponadto w ramach projektu zostanie opracowany moduł stawu łokciowego, pozwalający na użytkowanie protezy osobom po amputacji nadłokciowej. Do przetwarzania sygnałów pozyskiwanych z mięśni pozostałych na kikucie lub z innych obszarów ciała osoby niepełnosprawnej, wykorzystany zostanie nowoczesnych mikrokontroler, gwarantujący wysoką szybkość wykonywania operacji na sygnale oraz posiadający szeroki zestaw zaawansowanych urządzeń peryferyjnych, dzięki czemu możliwe stanie się znaczne zminiaturyzowanie układu pomiarowego oraz układu sterowania zastosowanymi w urządzeniu napędami. Proponowane rozwiązanie będzie stanowiło innowację w dziedzinie inżynierii medycznej na skalę krajową i międzynarodową, nie tylko ze względu na funkcjonalność, ale także z uwagi na zastosowanie opatentowanych rozwiązań i samodzielne opracowanie i wykonanie układów i algorytmów sterowania. Nasz produkt będzie miał zastosowanie medyczne, w celu zastąpienia utraconej kończyny i będzie skierowany do osób po amputacji kończyn górnych- amputacje dłoni, amputacje przedłokciowe i nadłokciowe. (Polish)
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The project is part of the National Intelligent Specialisation in Health Society, i.e. KIS 1 – Technology of Medical Engineering, including medical biotechnology, in the field of artificial organs (V Artificial Organs). The subject of the project is the development of innovative medical devices in the form of hand prosthesis controlled by biological signals related to muscle vibration and sound signals generated during their contraction. The prosthesis research will be carried out on the basis of the principles of bionic engineering – kinematic processes of the palm structure, will be mapped into the design prosthesis. The prosthesis will be based on the modular mechanical structure of the fingers (five independently controlled fingers allowing you to perform complex gripping movements, allowing precise gripping of objects of different sizes and different shapes) and moving wrist. In addition, the elbow joint module will be developed as part of the project, allowing the use of the prosthetic prosthesis to persons who have had a peritoneal amputation. For the processing of signals obtained from muscles remaining on the stump or from other areas of the body of a disabled person, a modern microcontroller will be used to ensure high speed of operation on the signal and with a wide set of advanced peripheral devices, which makes it possible to significantly miniaturise the measuring system and control system used in the drive device. The proposed solution will be an innovation in the field of medical engineering on a national and international scale, not only because of its functionality, but also because of the use of patented solutions and self-development and execution of control systems and algorithms. Our product will be used medically to replace the lost limb and will be directed to people who have had an amputation of the upper limbs- hand amputations, epidermal amputations and epidermal amputations. (English)
14 October 2020
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Identifiers
POIR.01.01.01-00-0063/16
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