Bair W, Zohary E, Newsome W T
Howard Hughes Medical Institute (HHMI), Center for Neural Science, New York University, New York, New York 10003, USA.
J Neurosci. 2001 Mar 1;21(5):1676-97. doi: 10.1523/JNEUROSCI.21-05-01676.2001.
We studied the simultaneous activity of pairs of neurons recorded with a single electrode in visual cortical area MT while monkeys performed a direction discrimination task. Previously, we reported the strength of interneuronal correlation of spike count on the time scale of the behavioral epoch (2 sec) and noted its potential impact on signal pooling (Zohary et al., 1994). We have now examined correlation at longer and shorter time scales and found that pair-wise cross-correlation was predominantly short term (10-100 msec). Narrow, central peaks in the spike train cross-correlograms were largely responsible for correlated spike counts on the time scale of the behavioral epoch. Longer-term (many seconds to minutes) changes in the responsiveness of single neurons were observed in auto-correlations; however, these slow changes in time were on average uncorrelated between neurons. Knowledge of the limited time scale of correlation allowed the derivation of a more efficient metric for spike count correlation based on spike timing information, and it also revealed a potential relative advantage of larger neuronal pools for shorter integration times. Finally, correlation did not depend on the presence of the visual stimulus or the behavioral choice of the animal. It varied little with stimulus condition but was stronger between neurons with similar direction tuning curves. Taken together, our results strengthen the view that common input, common stimulus selectivity, and common noise are tightly linked in functioning cortical circuits.
我们研究了猴子在执行方向辨别任务时,用单电极记录的视觉皮层MT区中神经元对的同步活动。此前,我们报告了行为时段(2秒)时间尺度上神经元放电计数的神经元间相关性强度,并指出了其对信号汇总的潜在影响(佐哈里等人,1994年)。我们现在检查了更长和更短时间尺度上的相关性,发现成对交叉相关性主要是短期的(10 - 100毫秒)。尖峰序列互相关图中的狭窄中心峰值在很大程度上决定了行为时段时间尺度上的相关放电计数。在自相关中观察到单个神经元反应性的长期(数秒到数分钟)变化;然而,这些时间上的缓慢变化在神经元之间平均是不相关的。对有限相关时间尺度的了解使得能够基于尖峰时间信息推导出一种更有效的放电计数相关度量,并且它还揭示了较大神经元池在较短整合时间方面的潜在相对优势。最后,相关性并不取决于视觉刺激的存在或动物的行为选择。它随刺激条件变化很小,但在具有相似方向调谐曲线的神经元之间更强。综上所述,我们的结果强化了这样一种观点,即共同输入、共同刺激选择性和共同噪声在功能正常的皮层回路中紧密相连。