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不同氧交换模型的比较。

Comparison of different oxygen exchange models.

作者信息

Van der Ploeg C P, Dankelman J, Stassen H G, Spaan J A

机构信息

Laboratory for Measurement and Contrey, Faculty of Mechanical Engineering and Marine Technology, Delft University of Technology, The Netherlands.

出版信息

Med Biol Eng Comput. 1995 Sep;33(5):661-8. doi: 10.1007/BF02510783.

Abstract

A functional distribution of coronary volume can be estimated from the response of arterio-venous O2 content difference (AVO2) to a flow step. However, the results depend on the assumed O2 exchange model. The previously used model consisted of a single mixed compartment with O2 exchange (reference model). The purpose of this study is to provide an estimate of the errors made in the volume estimations by not taking into account factors as flow heterogeneity, different mixing sites or Krogh-like O2 exchange. The approach is indirect: the response of the AVO2 to a flow step has been calculated with alternative O2 exchange models in which factors mentioned are incorporated. These transients are fitted with the reference model. The resulting estimated volumes are different from the volumes assumed in the alternative models. Large differences are obtained with some of the alternative models, e.g. the model with Krogh characteristics. However, these models seem unrealistic because capillary pO2 is higher than venous pO2. Only small differences in volume are obtained with the more realistic models. Therefore, these results indicate that the coronary volumes are approximated well by the estimations obtained with the reference model. These volume estimations were 9.9 and 3.8 ml 100 g-1 for the O2 exchange vessels and the distal venous volume, respectively.

摘要

冠状动脉容积的功能分布可根据动静脉氧含量差(AVO2)对流量阶跃的反应来估算。然而,结果取决于所假定的氧交换模型。先前使用的模型由一个具有氧交换功能的单一混合腔室组成(参考模型)。本研究的目的是估计在未考虑血流异质性、不同混合部位或类克罗格氧交换等因素的情况下,容积估计中所产生的误差。该方法是间接的:利用纳入了上述因素的替代氧交换模型计算AVO2对流量阶跃的反应。将这些瞬态响应与参考模型进行拟合。所得的估计容积与替代模型中假定的容积不同。某些替代模型,如具有克罗格特征的模型,会产生较大差异。然而,这些模型似乎不切实际,因为毛细血管的氧分压高于静脉氧分压。使用更现实的模型仅得到了较小的容积差异。因此,这些结果表明,参考模型所得的估计值能很好地近似冠状动脉容积。对于氧交换血管和远端静脉容积,这些容积估计值分别为9.9和3.8 ml 100 g-1。

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