Khawaja Farhan A, Tsui James M G, Pack Christopher C
Montreal Neurological Institute, McGill University, Montreal, Quebec, Canada.
J Neurosci. 2009 Oct 28;29(43):13702-9. doi: 10.1523/JNEUROSCI.2844-09.2009.
The dorsal pathway of the primate visual cortex is involved in the processing of motion signals that are useful for perception and behavior. Along this pathway, motion information is first measured by the primary visual cortex (V1), which sends specialized projections to extrastriate regions such as the middle temporal area (MT). Previous work with plaid stimuli has shown that most V1 neurons respond to the individual components of moving stimuli, whereas some MT neurons are capable of estimating the global motion of the pattern. In this work, we show that the majority of neurons in the medial superior temporal area (MST), which receives input from MT, have this pattern-selective property. Interestingly, the local field potentials (LFPs) measured simultaneously with the spikes often exhibit properties similar to that of the presumptive feedforward input to each area: in the high-gamma frequency band, the LFPs in MST are as component selective as the spiking outputs of MT, and MT LFPs have plaid responses that are similar to the spiking outputs of V1. In the lower LFP frequency bands (beta and low gamma), component selectivity is very common, and pattern selectivity is almost entirely absent in both MT and MST. Together, these results suggest a surprisingly strong link between the sensory tuning of cortical LFPs and afferent inputs, with important implications for the interpretation of imaging studies and for models of cortical function.
灵长类动物视觉皮层的背侧通路参与对感知和行为有用的运动信号的处理。沿着这条通路,运动信息首先由初级视觉皮层(V1)测量,V1将专门的投射发送到诸如颞中区(MT)等纹外区域。先前对格子刺激的研究表明,大多数V1神经元对移动刺激的各个成分有反应,而一些MT神经元能够估计图案的整体运动。在这项研究中,我们表明,接收来自MT输入的内侧颞上区(MST)中的大多数神经元具有这种图案选择性特性。有趣的是,与尖峰同时测量的局部场电位(LFP)通常表现出与每个区域假定的前馈输入相似的特性:在高伽马频段,MST中的LFP与MT的尖峰输出一样具有成分选择性,并且MT的LFP具有与V1的尖峰输出相似的格子反应。在较低的LFP频段(β和低伽马),成分选择性非常普遍,而MT和MST中几乎完全没有图案选择性。这些结果共同表明,皮层LFP的感觉调谐与传入输入之间存在惊人的紧密联系,这对成像研究的解释和皮层功能模型具有重要意义。