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相对熵是一种易于使用的致痫区有创脑电图生物标志物。

Relative entropy is an easy-to-use invasive electroencephalographic biomarker of the epileptogenic zone.

作者信息

Travnicek Vojtech, Klimes Petr, Cimbalnik Jan, Halamek Josef, Jurak Pavel, Brinkmann Benjamin, Balzekas Irena, Abdallah Chifaou, Dubeau François, Frauscher Birgit, Worrell Greg, Brazdil Milan

机构信息

Institute of Scientific Instruments, Czech Academy of Sciences, Brno, Czech Republic.

International Clinical Research Center, St. Anne's University Hospital, Brno, Czech Republic.

出版信息

Epilepsia. 2023 Apr;64(4):962-972. doi: 10.1111/epi.17539. Epub 2023 Mar 2.

Abstract

OBJECTIVE

High-frequency oscillations are considered among the most promising interictal biomarkers of the epileptogenic zone in patients suffering from pharmacoresistant focal epilepsy. However, there is no clear definition of pathological high-frequency oscillations, and the existing detectors vary in methodology, performance, and computational costs. This study proposes relative entropy as an easy-to-use novel interictal biomarker of the epileptic tissue.

METHODS

We evaluated relative entropy and high-frequency oscillation biomarkers on intracranial electroencephalographic data from 39 patients with seizure-free postoperative outcome (Engel Ia) from three institutions. We tested their capability to localize the epileptogenic zone, defined as resected contacts located in the seizure onset zone. The performance was compared using areas under the receiver operating curves (AUROCs) and precision-recall curves. Then we tested whether a universal threshold can be used to delineate the epileptogenic zone across patients from different institutions.

RESULTS

Relative entropy in the ripple band (80-250 Hz) achieved an average AUROC of .85. The normalized high-frequency oscillation rate in the ripple band showed an identical AUROC of .85. In contrast to high-frequency oscillations, relative entropy did not require any patient-level normalization and was easy and fast to calculate due to its clear and straightforward definition. One threshold could be set across different patients and institutions, because relative entropy is independent of signal amplitude and sampling frequency.

SIGNIFICANCE

Although both relative entropy and high-frequency oscillations have a similar performance, relative entropy has significant advantages such as straightforward definition, computational speed, and universal interpatient threshold, making it an easy-to-use promising biomarker of the epileptogenic zone.

摘要

目的

高频振荡被认为是药物难治性局灶性癫痫患者癫痫发作起始区最有前景的发作间期生物标志物之一。然而,病理性高频振荡尚无明确的定义,现有的检测方法在方法、性能和计算成本方面存在差异。本研究提出相对熵作为一种易于使用的新型癫痫组织发作间期生物标志物。

方法

我们对来自三个机构的39例术后无癫痫发作结果(恩格尔Ia级)患者的颅内脑电图数据评估了相对熵和高频振荡生物标志物。我们测试了它们定位癫痫发作起始区的能力,癫痫发作起始区定义为位于癫痫发作起始区域的切除触点。使用受试者工作特征曲线下面积(AUROC)和精确召回率曲线比较性能。然后我们测试了是否可以使用通用阈值来描绘来自不同机构患者的癫痫发作起始区。

结果

涟漪波段(80 - 250Hz)的相对熵平均AUROC为0.85。涟漪波段的归一化高频振荡率显示出相同的AUROC为0.85。与高频振荡不同,相对熵不需要任何患者水平的归一化,并且由于其清晰直接的定义,计算简单快速。可以为不同患者和机构设置一个阈值,因为相对熵与信号幅度和采样频率无关。

意义

虽然相对熵和高频振荡都具有相似的性能,但相对熵具有显著优势,如定义直接、计算速度快和患者间通用阈值,使其成为一种易于使用的有前景的癫痫发作起始区生物标志物。

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