Measurement for implantable rotary blood pumps

被引:28
作者
Bertram, CD [1 ]
机构
[1] Univ New S Wales, Grad Sch Biomed Engn, Sydney, NSW 2052, Australia
关键词
blood pumps; cardiology;
D O I
10.1088/0967-3334/26/4/R01
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Rotary blood pumps offer a cost-effective way to assist the failing heart. Relative to their pulsatile cousins, they can consist of remarkably few moving parts, with attendant advantages in reliability. These advantages are realized in full only if the entire assist system is kept maximally simple. Control of the pump must therefore be based on a minimum number of measurement devices. This paper reviews the measurements that are made in the wide range of implantable rotary blood pump designs that are in development for ventricular assist. In a number of these, fluid-mechanical variables are estimated indirectly from measurements of motor speed and current or power. The introduction explains the goals of rotary blood pump control by comparison to the innate properties of the natural heart. Then motor and fluid-mechanical variables that may be transduced are discussed. Methods of indirect estimation of pressure drop and flow-rate are dealt with, followed by ways of detecting unusual states such as inflow obstruction. It is found that detection of these alone can be the basis of an adequate control strategy. Some groups have estimated variables pertaining to the heart that is being assisted, and there has also been work on monitoring the ongoing health of the assist system itself. The review concludes with a brief look at the wider measurement context for the intensive-care facility that proposes to use such devices to provide circulatory support.
引用
收藏
页码:R99 / R117
页数:19
相关论文
共 70 条
[1]   Physiological control of a total artificial heart: conductance- and arterial pressure-based control [J].
Abe, Y ;
Chinzei, T ;
Mabuchi, K ;
Snyder, AJ ;
Isoyama, T ;
Imanishi, K ;
Yonezawa, T ;
Matsuura, H ;
Kouno, A ;
Ono, T ;
Atsumi, K ;
Fujimasa, I ;
Imachi, K .
JOURNAL OF APPLIED PHYSIOLOGY, 1998, 84 (03) :868-876
[2]  
ABE Y, 1998, HEART REPLACEMENT AR, V6
[3]   Rotary blood pump flow spontaneously increases during exercise under constant pump speed: Results of a chronic study [J].
Akimoto, T ;
Yamazaki, K ;
Litwak, P ;
Litwak, KN ;
Tagusari, O ;
Mori, T ;
Antaki, JF ;
Kameneva, MV ;
Watach, MJ ;
Umezu, M ;
Tomioka, J ;
Kormos, RL ;
Koyanagi, H ;
Griffith, BP .
ARTIFICIAL ORGANS, 1999, 23 (08) :797-801
[4]   Continuously maintaining positive flow avoids endocardial suction of a rotary blood pump with left ventricular bypass [J].
Akimoto, T ;
Yamazaki, K ;
Litwak, P ;
Litwak, KN ;
Tagusari, O ;
Mori, T ;
Antaki, JF ;
Kameneva, MV ;
Watach, MJ ;
Umezu, M ;
Tomioka, J ;
Kormos, RL ;
Koyanagi, H ;
Griffith, BP .
ARTIFICIAL ORGANS, 2000, 24 (08) :606-610
[5]   Control of the artificial heart [J].
Allen, GS ;
Murray, KD ;
Olsen, DB .
ASAIO JOURNAL, 1996, 42 (06) :932-937
[6]  
Amin Devin Vikram, 1997, Biomedical Instrumentation and Technology, V31, P483
[7]   Induction of ventricular collapse by an axial flow blood pump [J].
Amin, DV ;
Antaki, JF ;
Litwak, P ;
Thomas, D ;
Wu, ZJJ ;
Watach, M .
ASAIO JOURNAL, 1998, 44 (05) :M685-M690
[8]  
Araki K, 1998, ASAIO J, V44, pM708, DOI 10.1097/00002480-199809000-00082
[9]  
ARNDT A, 2001, 9 C INT SOC ROT BLOO
[10]  
ARNDT A, 2003, 11 C INT SOC ROT BLO