Hinkle David A, Connor Charles E
Department of Neurosciences, The Johns Hopkins University School of Medicine, Baltimore, MD 21218, USA.
J Neurophysiol. 2005 Oct;94(4):2726-37. doi: 10.1152/jn.00341.2005. Epub 2005 Jun 29.
We performed a quantitative characterization of binocular disparity-tuning functions in the ventral (object-processing) pathway of the macaque visual cortex. We measured responses of 452 area V4 neurons to stimuli with disparities ranging from -1.0 to +1.0 degrees. Asymmetric Gaussian functions fit the raw data best (median R = 0.90), capturing both the modal components (local peaks in the -1.0 to +1.0 degrees range) and the monotonic components (linear or sigmoidal dependency on disparity) of the tuning patterns. Values derived from the asymmetric Gaussian fits were used to characterize neurons on a modal x monotonic tuning domain. Points along the modal tuning axis correspond to classic tuned excitatory and inhibitory patterns; points along the monotonic axis correspond to classic near and far patterns. The distribution on this domain was continuous, with the majority of neurons exhibiting a mixed modal/monotonic tuning pattern. The distribution in the modal dimension was shifted toward excitatory patterns, consistent with previous results in other areas. The distribution in the monotonic dimension was shifted toward tuning for crossed disparities (corresponding to stimuli nearer than the fixation plane). This could reflect a perceptual emphasis on objects or object parts closer to the observer. We also found that disparity-tuning strength was positively correlated with orientation-tuning strength and color-tuning strength, and negatively correlated with receptive field eccentricity.
我们对猕猴视觉皮层腹侧(物体处理)通路中的双眼视差调谐函数进行了定量表征。我们测量了452个V4区神经元对视差范围从-1.0度到+1.0度的刺激的反应。非对称高斯函数最能拟合原始数据(中位数R = 0.90),捕捉到了调谐模式的模态成分(-1.0度到+1.0度范围内的局部峰值)和单调成分(对视差的线性或S形依赖)。从非对称高斯拟合中得出的值用于在模态x单调调谐域上对神经元进行表征。沿着模态调谐轴的点对应于经典的调谐兴奋和抑制模式;沿着单调轴的点对应于经典的近和远模式。该域上的分布是连续的,大多数神经元表现出混合的模态/单调调谐模式。模态维度上的分布向兴奋模式偏移,这与其他区域的先前结果一致。单调维度上的分布向交叉视差调谐偏移(对应于比注视平面更近的刺激)。这可能反映了对更靠近观察者的物体或物体部分的感知强调。我们还发现,视差调谐强度与方向调谐强度和颜色调谐强度呈正相关,与感受野偏心率呈负相关。