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一个用于理解颅内压与硬脑膜窦压力之间关系的简化颅腔模型。

A simplified cranial cavity model to understand the relationship between intracranial pressure and dural sinus pressure.

作者信息

Lee K B, Kim M H, Yoon J-T, Song Y, Kwon B, Hwang S M, Choi J H, Lee D H

机构信息

Department of Radiologic Technology, Chungbuk Health & Science University, Cheongju 28150, Republic of Korea.

Department of Radiology, Research Institute of Radiology, Asan Medical Center, University of Ulsan College of Medicine, Seoul 05505, Republic of Korea.

出版信息

Interv Neuroradiol. 2024 Feb;30(1):57-63. doi: 10.1177/15910199221107440. Epub 2022 Jun 9.

Abstract

Although accurate intracranial pressure (ICP) monitoring is essential for the diagnosis and treatment of severe brain diseases, current methods are performed invasively. Therefore, a safe and less invasive ICP measurement is required. The purpose of our study was to develop a simplified cranial cavity model for a better understanding of the relationship between the ICP and the pressure measurement within the dural venous sinus (DVS) to support the validity of using sinus pressure as the surrogate of the ICP. The in-house cranial cavity model had three components: the brain part, the DVS part, and the subarachnoid space (SAS) part. Pressure in other parts was measured when the pressure in the SAS part and, separately, brain part was increased from 0 (baseline) to 50 mmHg at intervals of 10 mmHg. When the pressure in the SAS part was increased from 10 to 50 mmHg at 10 mmHg interval, pressures of both the brain and DVS parts increased without significant difference (all > 0.05). However, pressures in both the SAS and DVS parts differed while the pressure in the brain part was increased. The pressures in both parts showed about 70% of the increase in the brain part. Nevertheless, the pressures in the SAS and DVS parts were not significantly different ( > 0.05). A simplified in-house cranial cavity model was developed consisting of three compartments to represent the actual intracranial spaces. The pressure measurement within the DVS was feasible to use as a surrogate for the ICP measurement.

摘要

尽管准确的颅内压(ICP)监测对于严重脑部疾病的诊断和治疗至关重要,但目前的方法都是侵入性的。因此,需要一种安全且侵入性较小的ICP测量方法。我们研究的目的是开发一个简化的颅腔模型,以更好地理解ICP与硬脑膜静脉窦(DVS)内压力测量之间的关系,从而支持将窦压力用作ICP替代指标的有效性。内部颅腔模型有三个组成部分:脑部分、DVS部分和蛛网膜下腔(SAS)部分。当SAS部分和脑部分的压力分别从0(基线)以10 mmHg的间隔增加到50 mmHg时,测量其他部分的压力。当SAS部分的压力以10 mmHg的间隔从10增加到50 mmHg时,脑和DVS部分的压力均增加,且无显著差异(均>0.05)。然而,当脑部分的压力增加时,SAS和DVS部分的压力有所不同。两部分的压力均显示出脑部分增加量的约70%。尽管如此,SAS和DVS部分的压力无显著差异(>0.05)。开发了一个由三个隔室组成的简化内部颅腔模型,以代表实际的颅内空间。DVS内的压力测量可用作ICP测量的替代指标。

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