DocumentCode :
1617643
Title :
Preliminary Study on the functional reproduction of an Artificial Myocardium using Covalent Shape Memory Alloy Fibre Based on Control Engineering
Author :
Shiraishi, Yasuyuki ; Yambe, Tomoyuki ; Sekine, Kazumitsu ; Saijo, Yoshifumi ; Konno, Satoshi ; Nitta, Shin-ichi ; Wang, Qingtian ; Liu, Hongjian ; Higa, Masaru ; Ogawa, Daisuke ; Tanaka, Akira ; Yoshizawa, Makoto ; Kakubari, Yasuyuki ; Miura, Hidekazu ;
Author_Institution :
Inst. of Dev., Aging & Cancer, Tohoku Univ., Sendai
fYear :
2006
Firstpage :
1734
Lastpage :
1737
Abstract :
The authors have been developing an artificial myocardium using a sophisticated covalent shape memory alloy fibre, which is capable of assisting natural cardiac contraction from the outside of the ventricular wall. We applied engineering method based on robotics control and constructed the artificial myocardial assist system which might be able to regulate derangement and regenerative tensile force on the surface of heart. In this study, a design to surround the total heart has been established in order to refrain from the stress concentration by the mechanical assistance, and the hemodynamic performance of the artificial myocardial assist system were examined in a mock circulatory system as well as on animal experiments using goats. Basic characteristics of the shape memory alloy fibre unit were examined and the displacement control could be achieved under the condition of the different external temperature by feedback using the PID control. And also the increase of the external work of the goats left ventricular pressure-volume relationship were obtained by the assistance using an artificial myocardium with parallel-linked configuration, and therefore it was indicated that the effective ventricular mechanical support could be performed by the device
Keywords :
artificial organs; cardiovascular system; displacement control; haemodynamics; medical control systems; three-term control; PID control; artificial myocardial assist system; control engineering; covalent shape memory alloy fibre; displacement control; functional reproduction; hemodynamic performance; mechanical assistance; mock circulatory system; natural cardiac contraction; parallel-linked configuration; robotics control; stress concentration; ventricular mechanical support system; ventricular wall; Control engineering; Control systems; Displacement control; Force control; Heart; Myocardium; Regeneration engineering; Robot control; Shape memory alloys; Tensile stress; Artificial myocardium; hemodynamic assistance; pressure-volume relation; shape memory alloy fibre;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
SICE-ICASE, 2006. International Joint Conference
Conference_Location :
Busan
Print_ISBN :
89-950038-4-7
Electronic_ISBN :
89-950038-5-5
Type :
conf
DOI :
10.1109/SICE.2006.315627
Filename :
4108962
Link To Document :
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