Vanni Simo, Rosenström Tom
Brain Research Unit, Low Temperature Laboratory and Advanced Magnetic Imaging Centre, Aalto University School of Science and Technology, Espoo, Finland.
J Comput Neurosci. 2011 Feb;30(1):109-24. doi: 10.1007/s10827-010-0239-2. Epub 2010 Apr 27.
The classical receptive field in the primary visual cortex have been successfully explained by sparse activation of relatively independent units, whose tuning properties reflect the statistical dependencies in the natural environment. Robust surround modulation, emerging from stimulation beyond the classical receptive field, has been associated with increase of lifetime sparseness in the V1, but the system-wide modulation of response strength have currently no theoretical explanation. We measured fMRI responses from human visual cortex and quantified the contextual modulation with a decorrelation coefficient (d), derived from a subtractive normalization model. All active cortical areas demonstrated local non-linear summation of responses, which were in line with hypothesis of global decorrelation of voxels responses. In addition, we found sensitivity to surrounding stimulus structure across the ventral stream, and large-scale sensitivity to the number of simultaneous objects. Response sparseness across voxel population increased consistently with larger stimuli. These data suggest that contextual modulation for a stimulus event reflect optimization of the code and perhaps increase in energy efficiency throughout the ventral stream hierarchy. Our model provides a novel prediction that average suppression of response amplitude for simultaneous stimuli across the cortical network is a monotonic function of similarity of response strengths in the network when the stimuli are presented alone.
初级视觉皮层中的经典感受野已通过相对独立单元的稀疏激活得到成功解释,这些单元的调谐特性反映了自然环境中的统计依赖性。源自经典感受野之外刺激的强大周边调制,与V1中寿命稀疏度的增加有关,但目前响应强度的全系统调制尚无理论解释。我们测量了人类视觉皮层的功能磁共振成像(fMRI)反应,并使用从减法归一化模型得出的去相关系数(d)对上下文调制进行了量化。所有活跃的皮层区域都表现出反应的局部非线性总和,这与体素反应全局去相关的假设一致。此外,我们发现腹侧流对周围刺激结构敏感,并且对同时出现的物体数量具有大规模敏感性。随着刺激增大,体素群体的反应稀疏度持续增加。这些数据表明,对刺激事件的上下文调制反映了编码的优化,并且可能提高了整个腹侧流层次结构中的能量效率。我们的模型提供了一个新的预测,即当单独呈现刺激时,整个皮层网络中同时刺激的反应幅度平均抑制是网络中反应强度相似性的单调函数。