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首页> 外文期刊>Journal of neurosurgery. >Vascular components of cerebrospinal fluid compensation.
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Vascular components of cerebrospinal fluid compensation.

机译:脑脊液的血管成分补偿。

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OBJECT: The aim of the study was to assess how cerebrospinal fluid (CSF) pressure-volume compensation depends on cerebrovascular tone. METHODS: In 26 New Zealand White rabbits, intracranial pressure (ICP), arterial blood pressure, and basilar artery blood flow velocity were measured continuously. Saline was infused into the cranial subarachnoid space to assess CSF compensatory parameters: the resistance to CSF outflow, the elastance coefficient, and the amplitude of the ICP pulsatile waveform. Infusions were repeated on two different levels of CO2 concentration in the arterial blood (PaCO2), at normotension and hypotension, and after the death of the animal. An increase in PaCO2 from a mean of 27 to 48 mm Hg was accompanied by an 18% increase in the resistance to CSF outflow (p<0.005) and a 64% increase (p<0.05) in the elastance coefficient. A decrease in arterial blood pressure from a mean of 100 to 51 mm Hg caused a 25% decrease in CSF outflow resistance (p<0.01) but did not affect the elastance coefficient. Postmortem, a 23% decrease in the CSF outflow resistance was associated with a 102% decrease in the elastance coefficient. CONCLUSIONS: Cerebrovascular parameters have a limited but significant impact on CSF infusion studies. The vascular component of ICP may be identified as a significant factor contributing to this phenomenon. During infusion studies, physiological parameters influencing vascular conditions should be maintained as stable as possible.
机译:目的:本研究的目的是评估脑脊液(CSF)压力-体积补偿如何取决于脑血管张力。方法:连续测量26只新西兰白兔的颅内压(ICP),动脉血压和基底动脉血流速度。将盐水注入颅底蛛网膜下腔,以评估CSF补偿参数:对CSF外流的抵抗力,弹性系数和ICP脉动波形的幅度。在正常血压和低血压时以及在动物死亡后,以两种不同水平的动脉血中二氧化碳浓度(PaCO2)重复输注。 PaCO2从平均27毫米汞柱增加到48毫米汞柱,同时对CSF流出的抵抗力增加18%(p <0.005),弹性系数增加64%(p <0.05)。动脉血压从平均100毫米汞柱降至51毫米汞柱,导致CSF流出阻力降低25%(p <0.01),但不影响弹性系数。验尸后,CSF流出阻力降低23%,弹性系数降低102%。结论:脑血管参数对脑脊液输注研究影响有限,但影响显着。 ICP的血管成分可能被认为是导致此现象的重要因素。在输液研究期间,影响血管状况的生理参数应保持尽可能稳定。

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