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虹鳟鱼离体灌注头部。I. 气体交换、酸碱平衡和血液动力学。

Isolated perfused head of rainbow trout. I. Gas transfer, acid-base balance, and hemodynamics.

作者信息

Perry S F, Booth C E, McDonald D G

出版信息

Am J Physiol. 1985 Aug;249(2 Pt 2):R246-54. doi: 10.1152/ajpregu.1985.249.2.R246.

Abstract

Branchial gas transfer, acid-base balance, and hemodynamics were critically evaluated and compared in Ringer-perfused and blood-perfused heads of rainbow trout. Blood perfusion stimulated O2 uptake and CO2 excretion across the gills to values more representative of intact fish. The stimulatory effect of blood on gas transfer was due to increased O2 carrying capacity (O2 uptake) and the presence of erythrocytic carbonic anhydrase (CO2 excretion). Adding carbonic anhydrase to Ringer enhanced CO2 excretion in a manner similar to blood. During Ringer perfusion, arteriovenous pH gradients were abnormal (arterial pH less than venous pH). Perfusion with blood or addition of carbonic anhydrase to Ringer reversed the pH gradients to typical in vivo levels. Branchial vascular resistance to flow was abnormally high in both Ringer- and blood-perfused preparations, primarily as a result of low dorsal aortic pressure. Input pressure increased during blood perfusion and was similar to ventral aortic pressure in vivo. Perfusion with Ringer may have caused irreversible deterioration of gill function as indicated by decreased arterial Po2 and O2 extraction effectiveness after a rapid switch from Ringer to blood perfusion. The results are discussed with reference to the suitability of perfused trout head preparations for studying gill gas transfer, acid-base balance, and hemodynamics. Comparisons are made between the perfused head preparation and intact fish as well as with other types of perfused gill preparations.

摘要

在虹鳟鱼经林格液灌注和血液灌注的头部,对鳃气体交换、酸碱平衡和血流动力学进行了严格评估和比较。血液灌注刺激了鳃对氧气的摄取和二氧化碳的排出,使其达到更能代表完整鱼类的水平。血液对气体交换的刺激作用归因于氧气携带能力的增加(氧气摄取)和红细胞碳酸酐酶的存在(二氧化碳排出)。向林格液中添加碳酸酐酶可增强二氧化碳的排出,其方式与血液相似。在林格液灌注期间,动静脉pH梯度异常(动脉pH低于静脉pH)。用血液灌注或向林格液中添加碳酸酐酶可将pH梯度逆转至典型的体内水平。在林格液灌注和血液灌注的标本中,鳃血管对血流的阻力均异常高,主要是由于背主动脉压力较低。血液灌注期间输入压力增加,且与体内腹主动脉压力相似。从林格液快速切换至血液灌注后,动脉血氧分压和氧气提取效率降低,这表明林格液灌注可能导致鳃功能发生不可逆的恶化。结合灌注鳟鱼头部标本用于研究鳃气体交换、酸碱平衡和血流动力学的适用性对结果进行了讨论。对灌注头部标本与完整鱼类以及其他类型的灌注鳃标本进行了比较。

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