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Optimal Flow and Pressure Management in Machine Perfusion Systems for Organ Preservation

机译:用于器官保存的机器灌注系统中的最佳流量和压力管理

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摘要

Intra-organ flow is the most critical parameter in machine-perfused organ preservation systems (MPS). Ultrasonic flow sensors (UFS) are commonly employed in MPS. However, UFS are sensitive to changes in fluid composition and temperature and require recalibration. Novel Coriolis-type mass flow sensors (CFS) may be more suitable for MPS because the measurement technique is not amenable to these factors. The effect of viscosity, colloids, temperature, pressure, and preservation solution on flow measurement accuracy of UFS and CFS was therefore investigated. A CFS-based MPS was built and validated for setpoint stability using porcine kidneys and the ability to reproduce different pressure and flow waveforms. The UFS exhibited a temperature- and preservation solution-dependent overestimation of flow rate compared to the CFS. The CFS deviated minimally from the actual flow rate and did not require recalibration. The CFS-based MPS conformed to the preprogrammed temperature, flow, pressure, and vascular resistance settings during 6-h kidney preservation. The system was also able to accurately reproduce different pressure and flow waveforms. Conclusively, CFS-based MPS are more suitable for organ preservation than UFS-based MPS. Our CFS-based MPS provides a versatile yet robust experimental platform for testing and validating different types of clinical and experimental MPS.
机译:器官内流动是机器灌注器官保存系统(MPS)中最关键的参数。超声波流量传感器(UFS)通常用于MPS。但是,UFS对流体成分和温度的变化很敏感,因此需要重新校准。新型科里奥利型质量流量传感器(CFS)可能更适合MPS,因为测量技术不适合这些因素。因此,研究了粘度,胶体,温度,压力和保存溶液对UFS和CFS流量测量精度的影响。建立了基于CFS的MPS,并使用猪肾验证了其设定值稳定性,并能够再现不同的压力和流量波形。与CFS相比,UFS对温度和保存溶液的流速有过高的估计。 CFS与实际流速之间的偏差很小,不需要重新校准。基于CFS的MPS在肾脏保存6小时期间符合预先设定的温度,流量,压力和血管阻力设置。该系统还能够准确地再现不同的压力和流量波形。最终,基于CFS的MPS比基于UFS的MPS更适合器官保存。我们基于CFS的MPS提供了一个通用而强大的实验平台,用于测试和验证不同类型的临床和实验MPS。

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