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Interictal epileptiform discharges induce hippocampal-cortical coupling in temporal lobe epilepsy

机译:发作间期癫痫样放电诱发颞叶癫痫中海马皮质耦合

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摘要

Interactions between the hippocampus and cortex are critical for memory. Interictal epileptiform discharges (IEDs) identify epileptic brain regions and can impair memory, but how they interact with physiological patterns of network activity is mostly undefined. We show in a rat model of temporal lobe epilepsy that spontaneous hippocampal IEDs correlate with impaired memory consolidation and are precisely coordinated with spindle oscillations in the prefrontal cortex during NREM sleep. This coordination surpasses the normal physiological ripple-spindle coupling and is accompanied by decreased ripple occurrence. IEDs also induce spindles during REM sleep and wakefulness, behavioral states that do not naturally express these oscillations, by generating a cortical ‘DOWN’ state. We confirm a similar correlation of temporofrontal IEDs with spindles over anatomically restricted cortical regions in a pilot clinical examination of four subjects with focal epilepsy. These findings imply that IEDs may impair memory via misappropriation of physiological mechanisms for hippocampal-cortical coupling, suggesting a target to treat memory impairment in epilepsy.
机译:海马和皮质之间的相互作用对于记忆至关重要。发作间期癫痫样放电(IED)可以识别癫痫性脑区并可能损害记忆,但是它们如何与网络活动的生理模式相互作用通常尚不确定。我们在颞叶癫痫的大鼠模型中显示,自发海马IED与受损的记忆巩固相关,并且与NREM睡眠期间前额叶皮层中的纺锤体振荡精确协调。这种协调作用超过了正常的生理波纹-主轴耦合,并伴随着波纹的减少。在快速眼动睡眠和清醒过程中,IED还通过产生皮质的“ DOWN”状态来诱发纺锤体,这些行为状态不能自然地表达这些振动。我们在四个局灶性癫痫患者的临床试验中证实了颞额叶IED与纺锤体在解剖学上受限的皮质区域具有相似的相关性。这些发现暗示,IEDs可能通过滥用海马-皮层耦合的生理机制来损害记忆,从而提出了治疗癫痫病记忆障碍的靶点。

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