Pesaran Bijan, Pezaris John S, Sahani Maneesh, Mitra Partha P, Andersen Richard A
Division of Physics, Mathematics & Astronomy, California Institute of Technology, Pasadena, California 91125, USA.
Nat Neurosci. 2002 Aug;5(8):805-11. doi: 10.1038/nn890.
Many cortical structures have elevated firing rates during working memory, but it is not known how the activity is maintained. To investigate whether reverberating activity is important, we studied the temporal structure of local field potential (LFP) activity and spiking from area LIP in two awake macaques during a memory-saccade task. Using spectral analysis, we found spatially tuned elevated power in the gamma band (25-90 Hz) in LFP and spiking activity during the memory period. Spiking and LFP activity were also coherent in the gamma band but not at lower frequencies. Finally, we decoded LFP activity on a single-trial basis and found that LFP activity in parietal cortex discriminated between preferred and anti-preferred direction with approximately the same accuracy as the spike rate and predicted the time of a planned movement with better accuracy than the spike rate. This finding could accelerate the development of a cortical neural prosthesis.
许多皮质结构在工作记忆期间具有升高的放电率,但尚不清楚这种活动是如何维持的。为了研究回响活动是否重要,我们在一项记忆扫视任务中,对两只清醒猕猴的局部场电位(LFP)活动的时间结构以及来自LIP区的动作电位发放进行了研究。通过频谱分析,我们发现在记忆期内,LFP和动作电位发放活动中,γ频段((25 - 90)赫兹)存在空间调谐的功率升高。动作电位发放和LFP活动在γ频段也具有相关性,但在较低频率下则没有。最后,我们在单试次基础上对LFP活动进行解码,发现顶叶皮质中的LFP活动在区分偏好方向和反偏好方向时,其准确率与动作电位发放率大致相同,并且在预测计划运动的时间方面,其准确率比动作电位发放率更高。这一发现可能会加速皮质神经假体的开发。