Effects of biventricular shunt on pump characteristics in a maglev total artificial heart.

IF 16.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Accounts of Chemical Research Pub Date : 2023-12-01 Epub Date: 2023-10-31 DOI:10.1177/03913988231209010
Shuya Shida, Kenichi Tsushima, Masahiro Osa, Daniel L Timms, Toru Masuzawa
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Abstract

Severe left ventricular failure can progress to right ventricular failure, necessitating alternatives to heart transplantation, such as total artificial heart (TAH) treatment. Conventional TAHs encounter challenges associated with miniaturization and hemocompatibility owing to their reliance on mechanical valves and bearings. A magnetically levitated TAH (IB-Heart) was developed, utilizing a magnetic bearing. The IB-Heart features a distinctive biventricular shunt channel situated between the flow paths of the left and right centrifugal blood pumps, simplifying and miniaturizing its control system. However, the impact of these shunt channels remains underexplored. This study aimed to investigate the effects of shunt flow on pump characteristics and assess the IB-Heart's potential to regulate flow balance between systemic and pulmonary circulation. At a rotational speed of 2000 rpm and flow rate range of 0-10 L/min, shunt flow exhibited a minor impact, with a 1.4 mmHg (1.3%) effect on pump characteristics. Shunt flow variation of about 0.13 L/min correlated with a 10 mmHg pressure difference between the pumps' afterload and preload conditions. This variance was linked to changes in the inlet flow rates of the left and right pumps, signifying the ventricular shunt structure's capacity to mirror the function of an atrial shunt in alleviating pulmonary congestion. The IB-Heart's ventricular shunt structure enables passive regulation of left-right flow balance. The findings establish a fundamental technical groundwork for the development of IB-Hearts and TAHs with similar shunt structures. The innovative coupling of centrifugal pumps and the resultant effects on flow dynamics contribute to the advancement of TAH technology.

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磁悬浮全人工心脏双心室分流对泵特性的影响。
严重的左心室衰竭可能发展为右心室衰竭,需要心脏移植的替代方案,如全人工心脏(TAH)治疗。传统的TAH由于依赖于机械瓣膜和轴承而遇到与小型化和血液相容性相关的挑战。利用磁性轴承开发了磁悬浮TAH(IB Heart)。IB Heart具有独特的双心室分流通道,位于左右离心式血泵的流动路径之间,简化了其控制系统并使其小型化。然而,这些分流通道的影响仍然没有得到充分的探索。本研究旨在研究分流对泵特性的影响,并评估IB心脏调节体循环和肺循环之间流量平衡的潜力。转速为2000 转速和0-10的流速范围 L/min,分流表现出较小的影响 mmHg(1.3%)对泵特性的影响。分流变化约0.13 L/min与10 泵的后负荷和预负荷条件之间的压差为mmHg。这种变化与左泵和右泵入口流速的变化有关,这表明心室分流结构有能力反映心房分流在缓解肺充血方面的功能。IB心脏的心室分流结构能够被动调节左右血流平衡。这些发现为开发具有类似分流结构的IB心脏和TAH奠定了基本的技术基础。离心泵的创新耦合及其对流动动力学的影响有助于TAH技术的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Accounts of Chemical Research
Accounts of Chemical Research 化学-化学综合
CiteScore
31.40
自引率
1.10%
发文量
312
审稿时长
2 months
期刊介绍: Accounts of Chemical Research presents short, concise and critical articles offering easy-to-read overviews of basic research and applications in all areas of chemistry and biochemistry. These short reviews focus on research from the author’s own laboratory and are designed to teach the reader about a research project. In addition, Accounts of Chemical Research publishes commentaries that give an informed opinion on a current research problem. Special Issues online are devoted to a single topic of unusual activity and significance. Accounts of Chemical Research replaces the traditional article abstract with an article "Conspectus." These entries synopsize the research affording the reader a closer look at the content and significance of an article. Through this provision of a more detailed description of the article contents, the Conspectus enhances the article's discoverability by search engines and the exposure for the research.
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