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周期性活动的昼夜节律变化与接受反应性神经刺激治疗的内侧颞叶癫痫患者的癫痫发作减少相关。

Circadian changes in aperiodic activity are correlated with seizure reduction in patients with mesial temporal lobe epilepsy treated with responsive neurostimulation.

机构信息

Department of Biomedical Engineering, University of Utah, Salt Lake City, Utah, USA.

Scientific Computing & Imaging Institute, University of Utah, Salt Lake City, Utah, USA.

出版信息

Epilepsia. 2024 May;65(5):1360-1373. doi: 10.1111/epi.17938. Epub 2024 Mar 22.

Abstract

OBJECTIVES

Responsive neurostimulation (RNS) is an established therapy for drug-resistant epilepsy that delivers direct electrical brain stimulation in response to detected epileptiform activity. However, despite an overall reduction in seizure frequency, clinical outcomes are variable, and few patients become seizure-free. The aim of this retrospective study was to evaluate aperiodic electrophysiological activity, associated with excitation/inhibition balance, as a novel electrographic biomarker of seizure reduction to aid early prognostication of the clinical response to RNS.

METHODS

We identified patients with intractable mesial temporal lobe epilepsy who were implanted with the RNS System between 2015 and 2021 at the University of Utah. We parameterized the neural power spectra from intracranial RNS System recordings during the first 3 months following implantation into aperiodic and periodic components. We then correlated circadian changes in aperiodic and periodic parameters of baseline neural recordings with seizure reduction at the most recent follow-up.

RESULTS

Seizure reduction was correlated significantly with a patient's average change in the day/night aperiodic exponent (r = .50, p = .016, n = 23 patients) and oscillatory alpha power (r = .45, p = .042, n = 23 patients) across patients for baseline neural recordings. The aperiodic exponent reached its maximum during nighttime hours (12 a.m. to 6 a.m.) for most responders (i.e., patients with at least a 50% reduction in seizures).

SIGNIFICANCE

These findings suggest that circadian modulation of baseline broadband activity is a biomarker of response to RNS early during therapy. This marker has the potential to identify patients who are likely to respond to mesial temporal RNS. Furthermore, we propose that less day/night modulation of the aperiodic exponent may be related to dysfunction in excitation/inhibition balance and its interconnected role in epilepsy, sleep, and memory.

摘要

目的

反应性神经刺激(RNS)是一种已被证实的治疗耐药性癫痫的方法,它通过检测到的癫痫样活动来提供直接的电脑刺激。然而,尽管总体上癫痫发作频率有所降低,但临床结果却各不相同,很少有患者能够完全无癫痫发作。本回顾性研究的目的是评估与兴奋/抑制平衡相关的非周期性电生理活动,作为一种新的电描记术生物标志物,以帮助预测 RNS 治疗的临床反应。

方法

我们确定了在犹他大学于 2015 年至 2021 年间接受 RNS 系统植入的难治性内侧颞叶癫痫患者。我们将颅内 RNS 系统记录的神经功率谱在植入后的头 3 个月内参数化为周期性和非周期性成分。然后,我们将基线神经记录的昼夜节律中非周期性和周期性参数的变化与最近一次随访时的癫痫发作减少进行了相关性分析。

结果

癫痫发作减少与患者在基线神经记录中昼夜节律中非周期性指数(r = 0.50,p = 0.016,n = 23 名患者)和振荡 alpha 功率(r = 0.45,p = 0.042,n = 23 名患者)的平均变化显著相关。对于大多数反应者(即癫痫发作减少至少 50%的患者),非周期性指数在夜间(12 点至 6 点)达到最大值。

意义

这些发现表明,基线宽带活动的昼夜节律调制是非 RNS 治疗早期反应的生物标志物。该标志物有可能识别出可能对内侧颞叶 RNS 有反应的患者。此外,我们提出,非周期性指数的昼夜变化较小可能与兴奋/抑制平衡的功能障碍及其在癫痫、睡眠和记忆中的相互作用有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d28/11138949/def8bf0255e4/nihms-1969983-f0001.jpg

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