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脑血管压力传递的系统分析:一项针对头部受伤患者的观察性研究。

Systems analysis of cerebrovascular pressure transmission: an observational study in head-injured patients.

作者信息

Piper I R, Miller J D, Dearden N M, Leggate J R, Robertson I

机构信息

Department of Clinical Neurosciences, University of Edinburgh, Scotland.

出版信息

J Neurosurg. 1990 Dec;73(6):871-80. doi: 10.3171/jns.1990.73.6.0871.

Abstract

In an observational study in head-injured patients, cerebrovascular pressure transmission was investigated using a systems analysis approach whereby the blood pressure (BP) waveform was used as a measure of an input stimulus to the cerebrovascular bed (CVB) and the intracranial pressure (ICP) waveform as the response to that stimulus. The transfer function is a measure of how much pressure is transmitted through the CVB at a given frequency and is calculated using Fourier analysis of the pressure waveforms. The transfer function allows quantification of the pressure transmission performance of the CVB, thus providing a basis for comparison between normal and abnormal function. Fifteen hundred samples of ICP and BP waveforms were collected from 30 head-injured patients via microcomputer. Off-line spectral analysis of the waveform database revealed four main classes of transfer function: those with an overall flat transfer function (curve type 1); those with an elevated low-frequency response (curve type 2); those with an elevated high-frequency response (curve type 3); and those exhibiting both an elevated low- and high-frequency response (curve type 4). Curve types 2 and 4 were most often associated with raised ICP (greater than 20 mm Hg), whereas curve types 1 and 3 were most often affiliated with ICP less than 15 mm Hg. Studies of this type may provide insight into the pathophysiology of the CVB and ultimately aid in the prediction and treatment of raised ICP.

摘要

在一项针对头部受伤患者的观察性研究中,采用系统分析方法研究脑血管压力传递,即将血压(BP)波形用作脑血管床(CVB)输入刺激的度量,将颅内压(ICP)波形用作对该刺激的响应。传递函数衡量的是在给定频率下通过CVB传递的压力大小,它通过对压力波形进行傅里叶分析来计算。传递函数能够量化CVB的压力传递性能,从而为比较正常和异常功能提供依据。通过微型计算机从30名头部受伤患者身上采集了1500个ICP和BP波形样本。对波形数据库进行离线频谱分析,发现了四种主要类型的传递函数:具有整体平坦传递函数的(曲线类型1);低频响应升高的(曲线类型2);高频响应升高的(曲线类型3);以及低频和高频响应均升高的(曲线类型4)。曲线类型2和4最常与ICP升高(大于20 mmHg)相关,而曲线类型1和3最常与ICP低于15 mmHg相关。这类研究可能有助于深入了解CVB的病理生理学,并最终有助于预测和治疗ICP升高。

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