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通过同时进行的氢质子和磷-31核磁共振波谱法测定颅内压升高对脑磷酸肌酸和乳酸的影响。

Effects of increased ICP on brain phosphocreatine and lactate determined by simultaneous 1H and 31P NMR spectroscopy.

作者信息

Sutton L N, McLaughlin A C, Kemp W, Schnall M D, Cho B K, Langfitt T W, Chance B

出版信息

J Neurosurg. 1987 Sep;67(3):381-6. doi: 10.3171/jns.1987.67.3.0381.

Abstract

In order to study the metabolic events surrounding ischemia induced by the graded increase of cerebrospinal fluid (CSF) pressure, the technique of simultaneous phosphorus-31- and hydrogen-1-enhanced nuclear magnetic resonance spectroscopy was applied to five cats as intracranial pressure (ICP) was gradually raised by the instillation of mock CSF. Threshold lactate rose at an average cerebral perfusion pressure (CPP) of 49 torr, and, in general, preceded a threshold decrease in phosphocreatine, which was observed at an average CPP of 29 torr. There was considerable variation among cats in the CPP at which failure of brain energy metabolism occurred, however, suggesting differences in the autoregulatory curves. It is concluded that, with elevated ICP, there is no universally "safe" CPP at which brain energy metabolism may be assumed to be uncompromised.

摘要

为了研究脑脊液(CSF)压力分级升高所诱发的缺血周围的代谢事件,当通过注入模拟脑脊液使颅内压(ICP)逐渐升高时,对五只猫应用了同时进行磷-31和氢-1增强核磁共振波谱技术。乳酸阈值在平均脑灌注压(CPP)为49托时升高,并且一般在磷酸肌酸阈值降低之前出现,磷酸肌酸阈值降低在平均CPP为29托时观察到。然而,不同猫之间发生脑能量代谢衰竭时的CPP存在相当大的差异,这表明自动调节曲线存在差异。得出的结论是,随着ICP升高,不存在普遍“安全”的CPP,在该CPP下可认为脑能量代谢未受损害。

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