Shirvalkar Prasad, Seth Malika, Schiff Nicholas D, Herrera Daniel G
Department of Psychiatry, Weill Medical College of Cornell University, 1300 York Avenue, New York, NY 10021, USA.
Proc Natl Acad Sci U S A. 2006 Nov 7;103(45):17007-12. doi: 10.1073/pnas.0604811103. Epub 2006 Oct 25.
Central thalamic electrical stimulation has been proposed as a method for remediation of acquired cognitive disability. Long-standing experimental and clinical observations indicate a key role for neurons within the central thalamus in maintaining the alert waking state and facilitating attended behaviors. Here, we show that continuous high frequency (100 Hz) electrical stimulation of the central thalamus generates widespread cortical activation of c-fos across all cortical layers and a selective pattern of regulation of zif268 within the supragranular, granular, and infragranular cortical laminae. Significant elevation of both immediate early genes also is seen in the dentate gyrus of the hippocampus. Use of the same stimulation parameters is shown to facilitate untrained goal-directed seeking behavior and object recognition memory in rodents. An overall increase of exploratory motor behaviors and grooming activity also is observed, consistent with a global increase in arousal. Taken together, these studies indicate that electrical stimulation of the central thalamus may enhance cognitive performance through neocortical and hippocampal neuronal activation and specific regulation of gene expression.
丘脑中央电刺激已被提议作为一种治疗后天性认知障碍的方法。长期的实验和临床观察表明,丘脑中央的神经元在维持警觉清醒状态和促进注意力集中行为方面起着关键作用。在此,我们表明,持续高频(100Hz)的丘脑中央电刺激会在所有皮质层产生广泛的c-fos皮质激活,并在颗粒上层、颗粒层和颗粒下层皮质板层内产生zif268的选择性调节模式。在海马齿状回中也观察到这两种即刻早期基因的显著升高。研究表明,使用相同的刺激参数可促进啮齿动物未经训练的目标导向性探索行为和物体识别记忆。还观察到探索性运动行为和梳理活动总体增加,这与觉醒的整体增加一致。综上所述,这些研究表明,丘脑中央电刺激可能通过新皮质和海马神经元激活以及基因表达的特定调节来提高认知能力。