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大脑各腔室顺应性相对变化的监测。

The monitoring of relative changes in compartmental compliances of brain.

作者信息

Kim Dong-Joo, Kasprowicz Magdalena, Carrera Emmanuel, Castellani Gianluca, Zweifel Christian, Lavinio Andrea, Smielewski Peter, Sutcliffe Michael P F, Pickard John D, Czosnyka Marek

机构信息

Academic Neurosurgical Unit, Addenbrooke's Hospital, University of Cambridge, Cambridge, UK. Department of Engineering, University of Cambridge, Cambridge, UK.

出版信息

Physiol Meas. 2009 Jul;30(7):647-59. doi: 10.1088/0967-3334/30/7/009. Epub 2009 Jun 5.

Abstract

The study aimed to develop a computational method for assessing relative changes in compartmental compliances within the brain: the arterial bed and the cerebrospinal space. The method utilizes the relationship between pulsatile components in the arterial blood volume, arterial blood pressure (ABP) and intracranial pressure (ICP). It was verified by using clinical recordings of intracranial pressure plateau waves, when massive vasodilatation accompanying plateau waves produces changes in brain compliances of the arterial bed (C(a)) and compliance of the cerebrospinal space (C(i)). Ten patients admitted after head injury with a median Glasgow Coma Score of 6 were studied retrospectively. ABP was directly monitored from the radial artery. Changes in the cerebral arterial blood volume were assessed using Transcranial Doppler (TCD) ultrasonography by digital integration of inflow blood velocity. During plateau waves, ICP increased (P = 0.001), CPP decreased (P = 0.001), ABP remained constant (P = 0.532), blood flow velocity decreased (P = 0.001). Calculated compliance of the arterial bed C(a) increased significantly (P = 0.001); compliance of the CSF space C(i) decreased (P = 0.001). We concluded that the method allows for continuous monitoring of relative changes in brain compartmental compliances. Plateau waves affect the balance between vascular and CSF compartments, which is reflected by the inverse change of compliance of the cerebral arterial bed and global compliance of the CSF space.

摘要

该研究旨在开发一种计算方法,用于评估大脑内各腔室顺应性的相对变化:动脉床和脑脊液空间。该方法利用动脉血容量、动脉血压(ABP)和颅内压(ICP)中的脉动成分之间的关系。通过使用颅内压平台波的临床记录进行验证,当伴随平台波的大量血管扩张导致动脉床脑顺应性(C(a))和脑脊液空间顺应性(C(i))发生变化时。对10例头部受伤后入院、格拉斯哥昏迷评分中位数为6分的患者进行了回顾性研究。通过桡动脉直接监测ABP。使用经颅多普勒(TCD)超声通过对流入血流速度进行数字积分来评估脑动脉血容量的变化。在平台波期间,ICP升高(P = 0.001),CPP降低(P = 0.001),ABP保持不变(P = 0.532),血流速度降低(P = 0.001)。计算得出的动脉床顺应性C(a)显著增加(P = 0.001);脑脊液空间顺应性C(i)降低(P = 0.001)。我们得出结论,该方法能够持续监测脑腔室顺应性的相对变化。平台波影响血管和脑脊液腔室之间的平衡,这通过脑动脉床顺应性和脑脊液空间整体顺应性的反向变化得以体现。

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