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呼气末二氧化碳分压对脑灌注中姿势限制的短暂影响。

Transient influence of end-tidal carbon dioxide tension on the postural restraint in cerebral perfusion.

作者信息

Immink Rogier V, Truijen Jasper, Secher Niels H, Van Lieshout Johannes J

机构信息

Department Anesthesiology, Laboratory for Clinical Cardiovascular Physiology, University of Amsterdam, 1100 DE Amsterdam, The Netherlands.

出版信息

J Appl Physiol (1985). 2009 Sep;107(3):816-23. doi: 10.1152/japplphysiol.91198.2008. Epub 2009 Jul 2.

Abstract

In the upright position, cerebral blood flow is reduced, maybe because arterial carbon dioxide partial pressure (Pa(CO(2))) decreases. We evaluated the time-dependent influence of a reduction in Pa(CO(2)), as indicated by the end-tidal Pco(2) tension (Pet(CO(2))), on cerebral perfusion during head-up tilt. Mean arterial pressure, cardiac output, middle cerebral artery mean flow velocity (MCA V(mean)), and dynamic cerebral autoregulation at supine rest and 70 degrees head-up tilt were determined during free breathing and with Pet(CO(2)) clamped to the supine level. The postural changes in central hemodynamic variables were equivalent, and the cerebrovascular autoregulatory capacity was not significantly affected by tilt or by clamping Pet(CO(2)). In the first minute of tilt, the decline in MCA V(mean) (10 +/- 4 vs. 3 +/- 4 cm/s; mean +/- SE; P < 0.05) and Pet(CO(2)) (6.8 +/- 4.3 vs. 1.7 +/- 1.6 Torr; P < 0.05) was larger during spontaneous breathing than during isocapnic tilt. However, after 2 min in the head-up position, the reduction in MCA V(mean) was similar (7 +/- 5 vs. 6 +/- 3 cm/s), although the spontaneous decline in Pet(CO(2)) was maintained (P < 0.05 vs. isocapnic tilt). These results suggest that the potential contribution of Pa(CO(2)) to the postural reduction in MCA V(mean) is transient, leaving the mechanisms for the sustained restrain in MCA V(mean) to be identified.

摘要

在直立位时,脑血流量会减少,这可能是因为动脉血二氧化碳分压(Pa(CO₂))降低。我们评估了呼气末二氧化碳分压(Pet(CO₂))所反映的Pa(CO₂)降低对头部抬高倾斜期间脑灌注的时间依赖性影响。在自由呼吸以及将Pet(CO₂)钳制在仰卧位水平时,测定了仰卧位休息和头部抬高70度时的平均动脉压、心输出量、大脑中动脉平均血流速度(MCA V(mean))以及动态脑自动调节功能。中心血流动力学变量的姿势变化是相同的,并且脑血管自动调节能力并未受到倾斜或钳制Pet(CO₂)的显著影响。在倾斜的第一分钟,自主呼吸时MCA V(mean)的下降幅度(10±4 vs. 3±4 cm/s;平均值±标准误;P<0.05)和Pet(CO₂)的下降幅度(6.8±4.3 vs. 1.7±1.6 Torr;P<0.05)比等碳酸倾斜时更大。然而,在头部抬高位置2分钟后,MCA V(mean)的降低幅度相似(7±5 vs. 6±3 cm/s),尽管Pet(CO₂)的自主下降仍持续存在(与等碳酸倾斜相比,P<0.05)。这些结果表明,Pa(CO₂)对MCA V(mean)姿势性降低的潜在贡献是短暂的,MCA V(mean)持续受限的机制有待确定。

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