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交通性或非交通性脑积水均不存在跨脑室外膜压力梯度。

There is no transmantle pressure gradient in communicating or noncommunicating hydrocephalus.

作者信息

Stephensen Hannes, Tisell Magnus, Wikkelsö Carsten

机构信息

Hydrocephalus Research Unit, Institute of Clinical Neuroscience, Sahlgrenska University Hospital, Göteborg University, Göteborg, Sweden.

出版信息

Neurosurgery. 2002 Apr;50(4):763-71; discussion 771-3. doi: 10.1097/00006123-200204000-00016.

Abstract

OBJECTIVE

To examine whether a transmantle pressure gradient exists in adult patients with communicating and noncommunicating hydrocephalus.

METHODS

Ten patients participated in the study. The mean patient age was 57 +/- 18 years (range, 20-80 yr); seven patients had communicating hydrocephalus, and three had noncommunicating hydrocephalus. Microsensors were used to measure the intracranial pressure (ICP), for 17 to 24 hours during sleeping and waking periods, in the right lateral ventricle (ICP(IV)) and in the subarachnoid space (ICP(SAS)) over the right cerebral convexity simultaneously. Patient activities and body positions were documented. The hydrostatic pressure difference between the two sensors was calculated from cranial x-rays for four basic body positions and compared with the actual body positions of the patients and the measured difference between the two sensors. For three 10-minute periods, the exact transmantle pressure gradient was calculated for each patient as ICP(IV) - ICP(SAS), adjusted for the hydrostatic pressure difference.

RESULTS

The measured pressure difference between the two sensors was always within the limits of the maximal possible hydrostatic pressure difference, and it correlated well with the expected difference for the various body positions: mean correlation coefficient, 0.79 +/- 0.10 (range, 0.65-0.92). The exact mean transmantle pressure was -0.01 +/- 0.24 mmHg (range, -0.4 to 0.4 mmHg). ICP waves caused by cardiac pulse, respiration, and B waves were identical in both spaces.

CONCLUSION

This study demonstrates no factual support for existence of a transmantle pressure gradient in nonacute communicating or noncommunicating hydrocephalus.

摘要

目的

探讨交通性和非交通性脑积水成年患者是否存在跨脑压梯度。

方法

10例患者参与本研究。患者平均年龄为57±18岁(范围20 - 80岁);7例为交通性脑积水,3例为非交通性脑积水。使用微传感器在患者睡眠和清醒期间,同时测量右侧脑室(ICP(IV))和右侧大脑凸面蛛网膜下腔(ICP(SAS))的颅内压(ICP),持续17至24小时。记录患者的活动和体位。根据头颅X线片计算四个基本体位下两个传感器之间的静水压差,并与患者的实际体位以及两个传感器之间的测量差值进行比较。在三个10分钟时间段内,针对每位患者计算精确的跨脑压梯度,即ICP(IV) - ICP(SAS),并根据静水压差进行调整。

结果

两个传感器之间的测量压差始终在最大可能静水压差范围内,且与不同体位的预期差值相关性良好:平均相关系数为0.79±0.10(范围0.65 - 0.92)。精确的平均跨脑压为 -0.01±0.24 mmHg(范围 -0.4至0.4 mmHg)。心脏搏动、呼吸和B波引起的ICP波在两个部位相同。

结论

本研究表明,在非急性交通性或非交通性脑积水中,不存在跨脑压梯度的实际证据。

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