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一种通过电阻抗断层成像监测脑灌注来检测颅内压变化的新方法。

A novel method for detecting intracranial pressure changes by monitoring cerebral perfusion via electrical impedance tomography.

作者信息

Zhu Ming-Xu, Li Jun-Yao, Cai Zhan-Xiu, Wang Yu, Wang Wei-Ce, Guo Yi-Tong, Gao Guo-Bin, Guo Qing-Dong, Shi Xue-Tao, Li Wei-Chen

机构信息

Department of Biomedical Engineering, Air Force Medical University, Xi'an, China.

Shaanxi Provincial Key Laboratory of Bioelectromagnetic Detection and Intelligent Perception, Department of Biomedical Engineering, Air Force Medical University, Xi'an, China.

出版信息

Fluids Barriers CNS. 2025 Jan 23;22(1):10. doi: 10.1186/s12987-025-00619-y.

Abstract

BACKGROUND

Acute and critical neurological diseases are often accompanied with elevated intracranial pressure (ICP), leading to insufficient cerebral perfusion, which may cause severe secondary lesion. Existing ICP monitoring techniques often fail to effectively meet the demand for real-time noninvasive ICP monitoring and warning. This study aimed to explore the use of electrical impedance tomography (EIT) to provide real-time early warning of elevated ICP by observing cerebral perfusion.

METHODS

An intracranial hypertension model was prepared by injecting autologous un-anticoagulated blood into the brain parenchyma of twelve Landrace swine. Invasive ICP monitoring was used as a control method, and a high-precision EIT system was used to acquire and analyze the changing patterns of cerebral perfusion EIT image parameters with respect to ICP. Four EIT parameters related to cerebral perfusion were extracted from the images, and their potential application in detecting ICP elevation was analyzed.

RESULTS

When ICP increased, all EIT perfusion parameters decreased significantly (P < 0.05). When the subjects were in a state of intracranial hypertension (ICP > 22 mmHg), the correlation between EIT perfusion parameters and ICP was more significant (P < 0.01), with correlation coefficients ranging from -0.72 to -0.83. We tested the objects when they were in baseline ICP and in ICP of 15-40 mmHg. Under both circumstances, ROC curve analysis showed that the comprehensive model of perfusion parameters based on the random forest algorithm had a sensitivity and specificity of more than 90% and an area under the curve (AUC) of more than 0.9 for detecting ICP increments of both 5 and 10 mmHg.

CONCLUSION

This study demonstrates the feasibility of using perfusion EIT to detect ICP increases in real time, which may provide a new method for real-time non-invasive monitoring of patients with increased ICP.

摘要

背景

急性和重症神经系统疾病常伴有颅内压(ICP)升高,导致脑灌注不足,进而可能引发严重的继发性损害。现有的颅内压监测技术往往无法有效满足实时无创颅内压监测和预警的需求。本研究旨在通过观察脑灌注情况,探索利用电阻抗断层成像(EIT)技术对颅内压升高进行实时预警。

方法

通过向12头长白猪的脑实质内注射自体未抗凝血液制备颅内高压模型。采用有创颅内压监测作为对照方法,使用高精度EIT系统获取并分析脑灌注EIT图像参数随颅内压的变化模式。从图像中提取4个与脑灌注相关的EIT参数,并分析其在检测颅内压升高方面的潜在应用价值。

结果

当颅内压升高时,所有EIT灌注参数均显著下降(P < 0.05)。当受试者处于颅内高压状态(ICP > 22 mmHg)时,EIT灌注参数与颅内压之间的相关性更为显著(P < 0.01),相关系数范围为 -0.72至 -0.83。我们在受试者处于基础颅内压以及颅内压为15 - 40 mmHg时对其进行测试。在这两种情况下,ROC曲线分析表明,基于随机森林算法的灌注参数综合模型对于检测5 mmHg和10 mmHg的颅内压升高,其灵敏度和特异性均超过90%,曲线下面积(AUC)超过0.9。

结论

本研究证明了利用灌注EIT实时检测颅内压升高的可行性,这可能为颅内压升高患者的实时无创监测提供一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6fa5/11761725/b0b2d527e3ca/12987_2025_619_Fig1_HTML.jpg

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