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[颅内压——容积压力与驱动压力]

[Intracranial pressure--volumetric pressure and driving pressure].

作者信息

Ikeyama A, Maeda S, Nagai H

出版信息

No To Shinkei. 1976 Feb;28(2):157-63.

PMID:1036040
Abstract

In order to understand the pathogenesis of increased intracranial pressure, the concept of the driving pressure (DP) from the intracranial vascular system was proposed. The DP consists of the transmission of atrial pressure (ADP) and venous pressure (vp). It is well known that when the animals died, the intracranial pressure decreased to the atmospheric pressure. This means that the DP is important in maintaining the static pressure of the cerebrospinal fluid. The theoretical equation of the intracranial pressure was expressed as follows.ICP=ADP+VP (1) ADP is expressed as (2). ADP=eta (BP-VP) (2) The pressure transmission rat (eta) was calculated as the ratio of the CSF pressure to the systemic arterial blood pressure in the experimental and clinical cases. In the normal CSF pressure, eta was very small (2.0 X 10(-2)), while in the severe intracranial hypertension, eta approached to 1. The concept of the driving pressure was useful to analyze the static intracranial pressure and the pulse pressure.

摘要

为了理解颅内压升高的发病机制,提出了来自颅内血管系统的驱动压力(DP)的概念。DP 由心房压力(ADP)和静脉压力(vp)的传递组成。众所周知,动物死亡时,颅内压降至大气压。这意味着 DP 在维持脑脊液的静压方面很重要。颅内压的理论方程如下所示。ICP = ADP + VP (1) ADP 表示为 (2)。ADP = η (BP - VP) (2) 压力传递率(η)在实验和临床病例中计算为脑脊液压力与全身动脉血压的比值。在正常脑脊液压力下,η 非常小(2.0×10(-2)),而在严重颅内高压时,η 接近 1。驱动压力的概念有助于分析静态颅内压和脉压。

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