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Negative effects of interictal spikes on theta rhythm in human temporal lobe epilepsy

机译:耳尖突波对人颞叶癫痫发作θ节律的负面影响

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摘要

Interictal spike is a biomarker of epilepsy that can occur frequently between seizures. Its potential effects on brain oscillations, especially on theta rhythm (4–8 Hz) that is related to a variety of cognitive processes, remain controversial. Using local field potentials recorded from patients with temporal lobe epilepsy (TLE), we investigated here the impact of spikes on theta rhythm immediately after spikes and during the prolonged periods (lasting 4–36 s) between adjacent spikes. Local field potentials (LFPs) were recorded in different epileptogenic areas including the anterior hippocampus (aH) and the entorhinal cortex (EC) as well as in the extended propagation pathway. We found that interictal spikes had a significant inhibitory effect on theta rhythm. Power of theta rhythm was reduced immediately after spikes, and the inhibitory effect on theta rhythm might sustain during the prolonged between-spike periods. The inhibitory effect was more severe when the epileptogenic areas involved both the aH and EC compared to that involved only a single structure. These observations suggest that interictal spikes have a significant negative impact on theta rhythm and may thus play a role in theta-related cognition changes in patients with TLE.
机译:发作间期是癫痫发作的生物标志,可能在发作之间频繁发生。它对脑部振荡的潜在影响,尤其是对与各种认知过程有关的θ节律(4-8 Hz)的潜在影响仍然存在争议。利用颞叶癫痫患者记录的局部场电位,我们在此研究了峰值后立即以及相邻峰值之间的延长时间段(持续4–36 s),峰值对θ节律的影响。在包括前海马(aH)和内嗅皮层(EC)在内的不同癫痫发生区域以及扩展的传播途径中都记录了局部场电势(LFP)。我们发现发作间期峰值对θ节律有明显的抑制作用。峰值后,theta节奏的力量会立即降低,并且在长时间的峰值间间隔期间,可能会持续保持对theta节奏的抑制作用。当涉及aH和EC的癫痫发生区域比仅涉及单个结构的抑制作用区域更严重。这些观察结果表明,耳尖突波对θ节律有重大的负面影响,因此可能在TLE患者的θ相关认知变化中起作用。

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