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Acoustic system for the estimation of the temporary blood chamber volume of the POLVAD heart supporting prosthesis

机译:用于估计POLVAD心脏假体临时血腔容积的声学系统

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Background The paper presents a newly researched acoustic system for blood volume measurements for the developed family of Polish ventricular assist devices. The pneumatic heart-supporting devices are still the preferred solution in some cases, and monitoring of their operation, especially the temporary blood volume, is yet to be solved. Methods The prototype of the POLVAD-EXT prosthesis developed by the Foundation of Cardiac Surgery Development, Zabrze, Poland, is equipped with the newly researched acoustic blood volume measurement system based on the principle of Helmholtz’s acoustic resonance. The results of static volume measurements acquired using the acoustic sensor were verified by measuring the volume of the liquid filling the prosthesis. Dynamic measurements were conducted on the hybrid model of the human cardiovascular system at the Foundation, with the Transonic T410 (11PLX transducer - 5% uncertainty) ultrasound flow rate sensor, used as the reference. Results The statistical analysis of a series of static tests have proved that the sensor solution provides blood volume measurement results with uncertainties (understood as a standard mean deviation) of less than 10%. Dynamic tests show a high correlation between the results of the acoustic system and those obtained by flow rate measurements using an ultrasound transit time type sensor. Conclusions The results show that noninvasive, online temporary blood volume measurements in the POLVAD-EXT prosthesis, making use of the newly developed acoustic system, provides accurate static and dynamic measurements results. Conducted research provides the preliminary view on the possibility of reducing the additional sensor chamber volume in future.
机译:背景技术本文介绍了一种新研发的声学系统,用于已开发的波兰心室辅助设备系列的血容量测量。在某些情况下,气动心脏支撑装置仍是首选的解决方案,对其操作(尤其是临时血容量)的监视尚待解决。方法由波兰Zabrze的心脏外科手术发展基金会开发的POLVAD-EXT假体的原型配备了最新研发的基于Helmholtz声共振原理的声血量测量系统。通过测量填充假体的液体的体积,可以验证使用声学传感器获得的静态体积测量结果。在基金会的人类心血管系统混合模型上进行动态测量,并以Transonic T410(11PLX换能器-不确定性为5%)超声流量传感器作为参考。结果一系列静态测试的统计分析证明,该传感器解决方案提供的血容量测量结果的不确定度(理解为标准平均偏差)小于10%。动态测试显示,声学系统的结果与使用超声传播时间类型传感器通过流量测量获得的结果之间具有高度相关性。结论结果表明,利用新开发的声学系统,POLVAD-EXT假体中的非侵入性在线临时血容量测量可提供准确的静态和动态测量结果。进行的研究为将来减少额外传感器腔室体积的可能性提供了初步的看法。

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