癫痫患者呼吸相关脑搏动间期同步性增高

Janne Kananen, Matti Järvelä, V. Korhonen, Timo Tuovinen, N. Huotari, L. Raitamaa, H. Helakari, T. Väyrynen, V. Raatikainen, M. Nedergaard, H. Ansakorpi, J. Jacobs, P. LeVan, V. Kiviniemi
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引用次数: 4

摘要

呼吸性脑搏动最近被证明可以驱动癫痫患者的脑电生理活动。此外,功能性神经影像学显示,与健康个体相比,癫痫患者的呼吸性脑脉动变异性和幅度增加。为了确定呼吸驱动是否在癫痫中改变,我们比较了健康对照组和患者的呼吸性脑脉冲同步性。对40例局灶性癫痫患者、20例drug-naïve患者和102例健康对照进行全脑快速功能磁共振成像。脑脊液相关的呼吸脉动被用来生成个体全脑呼吸同步图,并在组间进行比较。最后,我们分析了癫痫呼吸同步性缺陷的发作频率效应和诊断准确性。与已证实的第四脑室脉动相关的呼吸性脑脉动在患者额叶区、脑室周围区和颞中区具有明显的同步性,而癫痫发作频率与同步性呈正相关。呼吸脑同步性在区分对照组和用药患者方面具有较好的诊断准确性(ROCAUC = 0.75)。局灶性癫痫患者呼吸性脑同步性升高提示脑脊液脉动的生理作用改变,可能与涉及间歇期脑生理的区域脑水动力学有关。
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Increased interictal synchronicity of respiratory related brain pulsations in epilepsy
Respiratory brain pulsations have recently been shown to drive electrophysiological brain activity in patients with epilepsy. Furthermore, functional neuroimaging indicates that respiratory brain pulsations have increased variability and amplitude in patients with epilepsy compared to healthy individuals. To determine whether the respiratory drive is altered in epilepsy, we compared respiratory brain pulsation synchronicity between healthy controls and patients. Whole brain fast functional magnetic resonance imaging was performed on 40 medicated patients with focal epilepsy, 20 drug-naïve patients and 102 healthy controls. Cerebrospinal fluid associated respiratory pulsations were used to generate individual whole brain respiratory synchronization maps, which were compared between groups. Finally, we analyzed the seizure frequency effect and diagnostic accuracy of the respiratory synchronization defect in epilepsy. Respiratory brain pulsations related to the verified fourth ventricle pulsations were significantly more synchronous in patients in frontal, periventricular and mid-temporal regions, while the seizure frequency correlated positively with synchronicity. The respiratory brain synchronicity had a good diagnostic accuracy (ROCAUC = 0.75) in discriminating controls from medicated patients. The elevated respiratory brain synchronicity in focal epilepsy suggests altered physiological effect of cerebrospinal fluid pulsations possibly linked to regional brain water dynamics involved with interictal brain physiology.
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