Title :
Peristaltic hemodynamics of a new pediatric circulatory assist system for Fontan circulation using shape memory alloy fibers
Author :
Yamada, Akimasa ; Shiraishi, Yasuyuki ; Miura, Hidekazu ; Yambe, Tomoyuki ; Omran, M.H. ; Shiga, Toshikazu ; Tsuboko, Y. ; Homma, D. ; Yamagishi, M.
Author_Institution :
Grad. Sch. of Biomed. Eng., Tohoku Univ., Sendai, Japan
Abstract :
Fontan procedure is one of the common surgical treatments of congenital heart diseases. Patients with Fontan circulation have single ventricle in the systemic circulation with the total cavopulmonary connection. We have been developing a pulmonary circulatory assist device using shape memory alloy fibers for Fontan circulation with total cavopulmonary connection. It consisted of the shape memory alloy fibers, the diameter of which are 100 μm. The fibers could wrap the ePTFE conduit for Fontan TCPC connection from the outside. We designed the sequential motion control system for sophisticated pulmonary hemodynamics by the pulsatile flow generation. In order to achieve pulsatile flow assistance in pulmonary arterial system, we fabricated a mechanical structure by sequential contraction of shape memory alloy fibers. Then, we developed a sequential contraction controller for the assist system, which could reproduce the wall contractile velocity at 6.0 to 20.0 cm/sec. We examined hemodynamic characteristic of its function using a mock circulatory system, which consisted of two overflow tanks representing venous and pulmonary arterial pressures in Fontan circulation. As a result, the pulmonary circulation assist device with sequential contraction could achieve effective promotion of the pulsatility in pulmonary arterial flow.
Keywords :
alloys; biomedical materials; haemodynamics; intelligent materials; medical disorders; paediatrics; pulsatile flow; shape memory effects; Fontan TCPC connection; Fontan circulation; Fontan procedure; SMA fibre sequential contraction; congenital heart disease; ePTFE conduit; hemodynamic characteristics; mechanical structure; mock circulatory system; pediatric circulatory assist system; peristaltic hemodynamics; pulmonary arterial flow; pulmonary arterial system; pulmonary circulatory assist device; pulsatile flow assistance; pulsatile flow generation; pulsatility promotion; sequential contraction controller; sequential motion control system; shape memory alloy fibers; size 100 mum; sophisticated pulmonary hemodynamics; surgical treatments; systemic circulation; total cavopulmonary connection; velocity 6.0 cm/s to 20 cm/s; ventricle; wall contractile velocity; Circulatory system; Educational institutions; Heart; Hemodynamics; Optical fiber devices; Shape memory alloys; Surgery;
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2013 35th Annual International Conference of the IEEE
Conference_Location :
Osaka
DOI :
10.1109/EMBC.2013.6609592