Hemolysis test of disposable type vibrating flow pump

被引:3
作者
Kobayashi, S [1 ]
Nitta, S [1 ]
Yambe, T [1 ]
Sonobe, T [1 ]
Naganuma, S [1 ]
Hashimoto, H [1 ]
机构
[1] TOHOKU UNIV,INST FLUID SCI,SENDAI,MIYAGI 980,JAPAN
关键词
vibrating flow pump; oscillated blood flow; hemolysis test; electromagnetic actuator;
D O I
10.1111/j.1525-1594.1997.tb03724.x
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The vibrating flow pump (VFP) can generate high frequency oscillated blood flow. Because of the high frequency driving with short stroke volume, the pump system can be small. The disposable type VFP (D-VFP) was developed for use for extracorporeal circulation. The electromagnetic actuator was detached from the vibrating tube, which was newly designed to be a disposable tube with a jellyfish valve. Hemolysis tests of the D-VFP, VFP, centrifugal pump, and roller pump were performed in a mock circulation study using goat blood. Plasma free hemoglobin was measured every 15 min under the same conditions. The plasma free hemoglobin of the D-VFP was 16 mg/dl although that of the VFP was 160 mg/dl at 30 min. The plasma free hemoglobin of the centrifugal pump and roller pump at 30 min were 3 mg/dl and 9 mg/dl, respectively. The hemolysis performance of the D-VFP may be studied further as a result of this study. Two important factors affecting hemolysis development may be the materials of which the vibrating tube is made and heat transmission from the actuator. The D-VFP has a smooth acrylic surface for blood contact compared with the metal surface of old type VFP. The electromagnetic actuator of the VFP surrounded the vibrating tube, so heat from the actuator could be easily transmitted to the blood. Because the D-VFP has a disposable vibrating tube that is detached from the actuator, heat is not readily transmitted to the blood. A mock circulation study of heat transmission was performed using the D-VFP and VFP. Results of the heat transmission study showed that the fluid temperature of the D-VFP was not increased and stayed at room temperature although that of the VFP increased approximately 1 degrees C above room temperature. The D-VFP may be a good style for the development of the VFP for use for extracorporeal circulation.
引用
收藏
页码:691 / 693
页数:3
相关论文
共 22 条
[1]   Computational flow visualization in vibrating flow pump type artificial heart by unstructured grid [J].
Kato, T ;
Kawano, S ;
Nakahashi, K ;
Yambe, T ;
Nitta, S ;
Hashimoto, H .
ARTIFICIAL ORGANS, 2003, 27 (01) :41-48
[2]   FRACTAL DIMENSION ANALYSIS OF THE OSCILLATED BLOOD-FLOW WITH A VIBRATING FLOW PUMP [J].
YAMBE, T ;
SONOBE, T ;
NAGANUMA, S ;
KOBAYASHI, S ;
NANKA, S ;
AKIHO, H ;
KAKINUMA, Y ;
MITSUOKA, M ;
CHIBA, S ;
OHSAWA, N ;
HAGA, Y ;
IDUTSU, K ;
NITTA, S ;
FUKUJU, T ;
MIURA, M ;
UCHIDA, N ;
SATO, N ;
TABAYASHI, K ;
TANAKA, A ;
YOSHIZUMI, N ;
ABE, K ;
TAKAYASU, M ;
TAKAYASU, H ;
YOSHIZAWA, M ;
MAEKAWA, T ;
HASHIMOTO, H .
ARTIFICIAL ORGANS, 1995, 19 (07) :729-733
[3]   Chaotic dynamics in circulation with Tohoku University vibrating flow pump [J].
Nitta, S ;
Yambe, T ;
Kobayashi, SI ;
Hashimoto, H ;
Yoshizawa, M ;
Mastuki, H ;
Tabayashi, K ;
Takeda, H .
ARTIFICIAL ORGANS, 1999, 23 (01) :119-123
[4]   Development of vibrating flow pump for left ventricular assist circulation [J].
Kobayashi, S ;
Nitta, S ;
Yambe, T ;
Sonobe, T ;
Nannka, S ;
Shizuka, K ;
Fkuju, T ;
Hashimoto, H .
INTERNATIONAL JOURNAL OF ARTIFICIAL ORGANS, 1998, 21 (04) :225-228
[5]   Total vascular resistance and blood flow frequency during left ventricular assistance using a vibrating flow pump [J].
Kobayashi, S ;
Owada, N ;
Yambe, T ;
Nitta, S ;
Fukuju, T ;
Hongoh, T ;
Hashimoto, H .
ARTIFICIAL ORGANS, 1999, 23 (08) :732-735
[6]   TOTALLY IMPLANTABLE VENTRICULAR ASSIST SYSTEM USING A VIBRATING FLOW PUMP [J].
NITTA, S ;
YAMBE, T ;
SONOBE, T ;
NAGANUMA, S ;
KAKINUMA, Y ;
KOBAYASHI, S ;
TANAKA, M ;
MATSUKI, H ;
ABE, K ;
YOSHIZAWA, M ;
KASAI, T ;
HASHIMOTO, H .
ARTIFICIAL ORGANS, 1995, 19 (07) :676-679
[7]   Left heart bypass using the oscillated blood flow with totally implantable vibrating flow pump [J].
Yambe, T ;
Owada, N ;
Kobayashi, S ;
Sonobe, T ;
Naganuma, S ;
Nanka, S ;
Hashimoto, H ;
Yoshizawa, M ;
Tabayashi, K ;
Takayasu, H ;
Takeda, H ;
Nitta, S .
ARTIFICIAL ORGANS, 1998, 22 (05) :426-429
[8]   Recent progress on the vibrating flow pump as a totally implantable ventricular assist device [J].
Yambe, T ;
Kobayashi, S ;
Yoshizawa, T ;
Tanaka, T ;
Matsuki, T ;
Sato, F ;
Tabayashi, K ;
Nitta, S .
ARTIFICIAL ORGANS, 2001, 25 (09) :688-691
[9]   Systematical experiment for optimal design of vibrating flow pump with jelly-fish valve [J].
Satoyuki Kawano ;
Saki Miyagawa ;
Atsushi Shirai .
Journal of Bionic Engineering, 2016, 13 :166-179
[10]   Systematical Experiment for Optimal Design of Vibrating Flow Pump with Jelly-fish Valve [J].
Kawano, Satoyuki ;
Miyagawa, Saki ;
Shirai, Atsushi .
JOURNAL OF BIONIC ENGINEERING, 2016, 13 (01) :166-179