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脑血管压力传递分析作为颅内压升高病理生理学的指导

Cerebrovascular pressure transmission analysis as a guide to the pathophysiology of raised intracranial pressure.

作者信息

Lewis S B

机构信息

Department of Neurosurgery, Sir Charles Gairdner Hospital, Nedlands, Australia.

出版信息

Clin Exp Pharmacol Physiol. 1998 Nov;25(11):947-50. doi: 10.1111/j.1440-1681.1998.tb02350.x.

DOI:10.1111/j.1440-1681.1998.tb02350.x
PMID:9807670
Abstract
  1. Raised intracranial pressure (ICP) is a major factor associated with morbidity and mortality in patients with severe head injury. Identifying the mechanisms responsible for raised ICP may be difficult and, as a result, treatment prescribed may be non-specific and often ineffective. 2. Research aimed at obtaining more information from measurement of ICP was initially focused on measurements of compliance. This was achieved by introducing fluid volume into the craniospinal compartment and measuring the response. Although shown to be clinically useful, associated technical problems have precluded the routine use of these measurements. 3. Cerebrovascular pressure transmission (CVPT) analysis has been suggested as an alternative method of deriving more information from the ICP wave-form. Pressure transmission across the cerebrovascular bed is assessed by a systems analysis approach whereby blood pressure and ICP wave-form pairs are resolved by fast Fourier transform analysis into component harmonic frequencies, each with a specific amplitude and phase. These are expressed as a ratio or 'transfer function' for each harmonic peak. 4. Laboratory models have identified specific CVPT patterns associated with various causes of raised ICP. These studies have been extended to clinical practice and have been used to define patterns of CVPT in head-injured patients, which may be used to identify mechanisms responsible for raised ICP, thus assisting in directing treatment strategy. Clinical usefulness of this technique in patient management is currently under investigation.
摘要
  1. 颅内压升高(ICP)是重型颅脑损伤患者发病和死亡的主要相关因素。确定导致颅内压升高的机制可能很困难,因此,所采用的治疗方法可能缺乏针对性且往往无效。2. 旨在通过颅内压测量获取更多信息的研究最初聚焦于顺应性测量。这是通过向颅脊髓腔引入液体量并测量其反应来实现的。尽管已证明其具有临床实用性,但相关技术问题使其无法常规使用这些测量方法。3. 脑血管压力传递(CVPT)分析已被提议作为从颅内压波形中获取更多信息的替代方法。通过系统分析方法评估脑血管床的压力传递,即通过快速傅里叶变换分析将血压和颅内压波形对分解为各个谐波频率成分,每个成分都有特定的幅度和相位。这些以每个谐波峰值的比率或“传递函数”表示。4. 实验室模型已确定了与各种颅内压升高原因相关的特定CVPT模式。这些研究已扩展到临床实践,并已用于定义颅脑损伤患者的CVPT模式,这些模式可用于识别导致颅内压升高的机制,从而有助于指导治疗策略。目前正在研究该技术在患者管理中的临床实用性。

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