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Cerebral metabolism and effects of pulsatile flow during retrograde cerebral perfusion.

作者信息

Nojima T, Mori A, Watarida S, Onoe M

机构信息

Second Department of Surgery, Shiga University of Medical Science, Japan.

出版信息

J Cardiovasc Surg (Torino). 1993 Dec;34(6):483-92.

PMID:8300712
Abstract

We evaluated cerebral metabolism during retrograde cerebral perfusion (RCP) and circulatory arrest under profound hypothermia, and also investigated the effect of pulsatile flow on RCP. Eighteen adult mongrel dogs were placed on cardiopulmonary bypass and were cooled to a nasopharyngeal temperature of 20 degrees C. At this temperature, hypothermic circulatory arrest (HCA; n = 6), non-pulsatile RCP (NP-RCP; n = 6), and pulsatile RCP (P-RCP; n = 6) were performed for 60 minutes. Retrograde cerebral perfusion was performed via the bilateral internal maxillary veins, and retrograde flow rate was regulated to maintain a mean perfusion pressure of 20 mmHg in the external jugular vein. During RCP, the temperature was maintained in a narrow range, oxygen consumption and carbon dioxide excretion could be observed, the excess lactate was maintained at a negative value, and cerebral tissue ATP concentration was significantly higher than in the HCA group. The cerebral tissue water content was significantly lower in the P-RCP group than in the NP-RCP group. These findings suggest that hypothermia of the central nervous system, the supply of oxygen, the excretion of metabolites, aerobic metabolism, and the cerebral ATP level were maintained by RCP. In conclusion, RCP may possibly provide adequate metabolic support for the brain during total circulatory arrest, and pulsatile flow appears to reduce cerebral edema when compared with non-pulsatile flow in dogs.

摘要

相似文献

1
Cerebral metabolism and effects of pulsatile flow during retrograde cerebral perfusion.
J Cardiovasc Surg (Torino). 1993 Dec;34(6):483-92.
2
[Experimental studies of pulsatile retrograde cerebral perfusion].
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3
Optimal perfusion pressure for experimental retrograde cerebral perfusion.实验性逆行性脑灌注的最佳灌注压力。
J Card Surg. 1994 Sep;9(5):548-59. doi: 10.1111/j.1540-8191.1994.tb00888.x.
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[Experimental study of optimal perfusion pressure during retrograde cerebral perfusion].[逆行性脑灌注期间最佳灌注压力的实验研究]
Nihon Kyobu Geka Gakkai Zasshi. 1994 Sep;42(9):1307-14.
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Retrograde cerebral perfusion using pulsatile flow under conditions of profound hypothermia.在深度低温条件下使用搏动血流进行逆行性脑灌注。
Ann Thorac Surg. 1993 Dec;56(6):1497-8. doi: 10.1016/0003-4975(93)90739-5.
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Is maintenance of cerebral hypothermia the principal mechanism by which retrograde cerebral perfusion provides better brain protection than hypothermic circulatory arrest? A study in a porcine model.脑低温的维持是否是逆行脑灌注比低温循环停止提供更好脑保护的主要机制?一项在猪模型中的研究。
J Card Surg. 2004 Jan-Feb;19(1):28-35. doi: 10.1111/j.0886-0440.2004.04006.x.
7
[Experimental studies on retrograde cerebral perfusion: efficacy of clamping of the venous blood flow through IVC cannula].[逆行性脑灌注的实验研究:通过下腔静脉插管阻断静脉血流的效果]
Kyobu Geka. 1993 Jul;46(8 Suppl):690-4.
8
Comparative experimental study between retrograde cerebral perfusion and circulatory arrest.
J Thorac Cardiovasc Surg. 1994 May;107(5):1228-36.
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[The protective effect and problem of retrograde cerebral perfusion].[逆行性脑灌注的保护作用及问题]
Nihon Kyobu Geka Gakkai Zasshi. 1994 Jun;42(6):865-73.
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The effect of pulsatile perfusion on cerebral blood flow during profound hypothermia with total circulatory arrest.
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