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用于心肺运动试验推车中气体交换验证的两种代谢模拟器的比较。

Comparison of Two Metabolic Simulators Used for Gas Exchange Verification in Cardiopulmonary Exercise Test Carts.

作者信息

Souren Tjeu, Rose Edward, Groepenhoff Herman

机构信息

Independent Consultant, Utrecht, Netherlands.

Independent Consultant, Novi, MI, United States.

出版信息

Front Physiol. 2021 Jun 3;12:667386. doi: 10.3389/fphys.2021.667386. eCollection 2021.

Abstract

INTRODUCTION

Metabolic simulators (MS) produce simulated human breaths for the purpose of verification of cardiopulmonary exercise test (CPET) equipment. MS should produce consistent identical breaths with known CO and O gas concentrations over a range of breath rates and tidal volumes. Reliability of a CPET metabolic cart depends on ongoing quality control and maintenance of the device, including intermittent verification with a MS. We compared two MS devices against two standard CPET systems.

METHODS

The Vacumed 17056 (Vacumetrics, Ventura, CA) and Relitech (Relitech Systems BV, Nijkerk, The Netherlands) were used with two standard metabolic carts (Vyntus CPX and Vyntus ONE, both Vyaire Medical, Mettawa, IL, United States). Tidal volume (VT) was set at 2 and 3 L and breathing frequency ranged from 20 to 80 breaths per minute for each MS. At each set point, we measured three sets of 40 breaths. Primary outcome parameters collected were VT, oxygen consumption ( O), carbon dioxide production ( CO), and respiratory exchange ratio (RER).

RESULTS

VT, RER, O, and CO results as obtained from both MS were all within the limits of acceptability, at both tidal volume settings, and all ventilatory rates. No significant trends were identified for either MS device. The Relitech MS produced tidal volumes that were closer to the target VT for both CPET carts at both VT and all rates, but the results of both MS were within acceptable ranges.

CONCLUSION

Verification of CPET equipment using either the VM or RT metabolic simulator, producing highly accurate and predictable simulated breaths of known composition, enabling CPET laboratory managers to rely on subject test data obtained during cardiopulmonary exercise testing.

摘要

引言

代谢模拟器(MS)产生模拟的人体呼吸,用于验证心肺运动试验(CPET)设备。MS应在一系列呼吸频率和潮气量范围内产生具有已知一氧化碳(CO)和氧气(O)气体浓度的一致相同呼吸。CPET代谢推车的可靠性取决于设备的持续质量控制和维护,包括使用MS进行间歇性验证。我们将两种MS设备与两种标准CPET系统进行了比较。

方法

使用Vacumed 17056(Vacumetrics,加利福尼亚州文图拉)和Relitech(Relitech Systems BV,荷兰尼杰尔克)与两种标准代谢推车(Vyntus CPX和Vyntus ONE,均为美国伊利诺伊州梅塔瓦的Vyaire Medical公司产品)。每种MS的潮气量(VT)设置为2升和3升,呼吸频率范围为每分钟20至80次呼吸。在每个设定点,我们测量了三组,每组40次呼吸。收集的主要结果参数为VT、耗氧量(O)、二氧化碳产生量(CO)和呼吸交换率(RER)。

结果

在两种潮气量设置和所有通气率下,两种MS获得的VT、RER、O和CO结果均在可接受范围内。两种MS设备均未发现显著趋势。Relitech MS产生的潮气量在两种VT和所有速率下,对于两种CPET推车都更接近目标VT,但两种MS的结果都在可接受范围内。

结论

使用VM或RT代谢模拟器验证CPET设备,可产生成分已知、高度准确且可预测的模拟呼吸,使CPET实验室管理人员能够信赖心肺运动试验期间获得的受试者测试数据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12e8/8209337/555467b80658/fphys-12-667386-g001.jpg

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