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在磁场环境下进行气体交换测量:新系统的验证。

Gas exchange measurements within a magnetic environment: validation of a new system.

机构信息

Movement To Health, Montpellier-1 University, Euromov, 700 av du Pic Saint-Loup, 34090 Montpellier, France.

出版信息

Respir Physiol Neurobiol. 2012 Jun 15;182(1):37-46. doi: 10.1016/j.resp.2012.02.005. Epub 2012 Feb 17.

Abstract

Although simultaneous measurements of pulmonary oxygen uptake (VO2) and Phosphorus-31 magnetic resonance spectroscopy ((31)P MRS) is attractive to investigate muscular metabolism during exercise, the superconducting magnet requires the design of specific gas exchange analyser (GEA). Thus, this study aimed to assess the validity of a commercial GEA system (ZAN600) compatible with (31)P MRS measurements. Using nonmagnetic pneumotachograph and prolonged sampling line (from 2m, control condition, to 6.5m) did not alter the proper synchronisation between flow and gas concentration signals. Also, end-expiratory fraction of O2 (FETO2) and CO(2) (FETCO2), and finally the values of steady-state ventilation (V(E)), carbon dioxide production (VCO2) and VO2 kinetics during moderate knee-extension exercise were not significantly different between 2m and 6.5m conditions and between 6.5m condition inside and outside the magnet. These results showed that a prolonged sampling line used inside the superconducting magnet did not affect the accuracy of VO2 measurements of a commercial GEA system; the latter appears suitable for simultaneous measurements of VO2 and (31)P MRS.

摘要

尽管同时测量肺氧摄取量(VO2)和磷-31 磁共振波谱((31)P MRS)很有吸引力,可以在运动期间研究肌肉代谢,但超导磁体需要设计特定的气体交换分析仪(GEA)。因此,本研究旨在评估与(31)P MRS 测量兼容的商业 GEA 系统(ZAN600)的有效性。使用非磁性气动计和延长的采样线(从 2m,对照条件,到 6.5m)不会改变流量和气体浓度信号之间的适当同步。此外,在中度膝关节伸展运动期间,终末呼气氧气分数(FETO2)和二氧化碳分数(FETCO2),以及稳定状态通气(VE)、二氧化碳产生(VCO2)和 VO2 动力学的最终值在 2m 和 6.5m 条件之间以及在磁体内和磁体外的 6.5m 条件之间没有显著差异。这些结果表明,在超导磁体内使用的延长采样线不会影响商业 GEA 系统 VO2 测量的准确性;后者似乎适合同时测量 VO2 和(31)P MRS。

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