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高容量(1.5 毫升/公斤)骶管阻滞后婴儿大脑平均血流速度和氧合降低。

Reduction of cerebral mean blood flow velocity and oxygenation after high-volume (1.5 ml kg⁻¹) caudal block in infants.

机构信息

Department of Paediatric Anaesthesia, Intensive Care & ECMO and

Department of Paediatric Anaesthesia, Intensive Care & ECMO and.

出版信息

Br J Anaesth. 2014 Oct;113(4):688-94. doi: 10.1093/bja/aeu161. Epub 2014 Jun 27.

Abstract

BACKGROUND

We have recently described a bi-directional bulk flow of cerebrospinal fluid (CSF) (coined 'the CSF rebound mechanism') after the use of high-volume caudal block in infants, which may explain the secondary longitudinal spread of the block. If important the initial cephalad transfer of CSF should be of such a magnitude that it would cause a transient reduction in cerebral blood flow (CBF) and cerebral oxygenation. The primary aim of this observational study was to delineate the magnitude of the reduction of CBF velocity (CBFV) associated with high-volume caudal block in infants.

METHODS

Ultrasound Doppler measurements of CBFV in the middle cerebral artery and also haemodynamic parameters and cerebral regional oxygenation (C(R)SO2) were followed during 5 min after the initial caudal injection (1.5 ml kg(-1), ropivacaine 0.2%) in 12 infants <3 months of age.

RESULTS

The caudal injection was associated with immediate and major reductions in CBFV indicating a concomitant reduction in CBF. A significant reduction of cerebral regional oxygenation C(R)SO2 was also observed. Systemic haemodynamic parameters were unchanged during the observation period.

CONCLUSION

High-volume caudal block causes a biphasic change in CBFV and was also found to affect cerebral oxygenation. Our findings lend further support to 'the CSF rebound mechanism' for secondary spread of high-volume caudal block.

摘要

背景

我们最近描述了在婴儿中使用大剂量骶管阻滞后脑脊液(CSF)的双向体循环(称为“CSF 反弹机制”),这可能解释了阻滞的继发性纵向扩散。如果重要的话,CSF 的初始向头侧转移应该具有如此大的幅度,以至于会导致短暂的脑血流(CBF)和脑氧合减少。这项观察性研究的主要目的是描述与婴儿大剂量骶管阻滞相关的 CBF 速度(CBFV)减少的幅度。

方法

在 12 名<3 个月大的婴儿中,在初始骶管注射(1.5ml/kg,0.2%罗哌卡因)后 5 分钟内,通过超声多普勒测量大脑中动脉的 CBFV 以及血液动力学参数和脑区域性氧合(C(R)SO2)。

结果

骶管注射立即引起 CBFV 明显减少,表明 CBF 同时减少。也观察到脑区域性氧合 C(R)SO2 的显著降低。在观察期间,全身血液动力学参数保持不变。

结论

大剂量骶管阻滞引起 CBFV 的双相变化,并且还发现会影响脑氧合。我们的发现进一步支持“CSF 反弹机制”来解释大剂量骶管阻滞的继发性扩散。

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