神经科学
立体脑电图
心理学
梭状回
刺激
新皮层
脑电图
额中回
功能磁共振成像
癫痫外科
作者
Flavius-Ionut Bratu,Irina Oane,Andrei Barborica,Cristian Donos,Constantin Pistol,Andrei Daneasa,Camelia Lentoiu,Ioana Mindruta
出处
期刊:Cortex
[Elsevier BV]
日期:2021-12-01
卷期号:145: 285-294
被引量:1
标识
DOI:10.1016/j.cortex.2021.08.018
摘要
Periventricular nodular heterotopias (PVNH) are areas of neurons abnormally located in the white matter that might be involved in physiological cortical functions. Autoscopic hallucinations are changes in self-consciousness determined by a mismatch in integration of multiple sensory inputs. Our goal is to highlight the brain network involved in generation of autoscopic hallucination elicited by electrical stimulation of a PVNH in a drug resistant epilepsy patient. Our patient was explored using stereo-electroencephalography with electrodes covering the right posterior temporal PVNH and the adjacent cortex. Direct electrical high frequency stimulation of the PVNH elicited autoscopic hallucinations mainly involving the face and upper trunk. We then used multiple modalities to determine brain connectivity: single pulse electrical stimulation of the PVNH and stimulation-evoked potentials were used to highlight resting state effective connectivity. High-frequency stimulation using alternating polarity pulses enabled us to identify the network involved, time-locked to the clinical effect and to map symptom-related effective connectivity. Functional connectivity using a non-linear regression method was used to determine dependencies between different cortical regions following the stimulation. Finally, structural connectivity was highlighted using deterministic fiber tracking. Multi-modal connectivity analysis identified a network involving the PVNH, occipital and temporal neocortex, fusiform gyrus and parietal cortex.
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