Aida Davila, Adam Kohn
Dominick P. Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, New York 10461.
Dominick P. Purpura Department of Neuroscience, Albert Einstein College of Medicine, Bronx, New York 10461
J Neurosci. 2025 Apr 2;45(14):e2257232025. doi: 10.1523/JNEUROSCI.2257-23.2025.
Adaptation affects neuronal responsivity and selectivity throughout the visual hierarchy. However, because most prior studies have tailored stimuli to a single brain area of interest, we have a poor understanding of how exposure to a particular image alters responsivity and tuning at different stages of visual processing. Here we assess how adaptation with naturalistic textures alters neuronal responsivity and selectivity in primary visual cortex (V1) and area V2 of macaque monkeys. Neurons in both areas respond to textures, but V2 neurons are sensitive to higher-order image statistics which do not strongly modulate V1 responsivity. We tested the specificity of adaptation in each area with textures and spectrally matched "noise" stimuli. Adaptation reduced responsivity in both V1 and V2, but only in V2 was the reduction dependent on the presence of higher-order texture statistics. Despite this specificity, the texture information provided by single neurons and populations was reduced after adaptation, in both V1 and V2. Our results suggest that adaptation effects for a given feature are induced at the stage of processing that tuning for that feature first arises and that stimulus-specific adaptation effects need not result in improved sensory encoding.
适应性会影响整个视觉层级中的神经元反应性和选择性。然而,由于大多数先前的研究都将刺激量身定制于单个感兴趣的脑区,所以我们对于接触特定图像如何在视觉处理的不同阶段改变反应性和调谐了解甚少。在这里,我们评估了用自然主义纹理进行适应性处理如何改变猕猴初级视觉皮层(V1)和V2区的神经元反应性和选择性。两个区域的神经元都对纹理有反应,但V2区的神经元对高阶图像统计信息敏感,而这些信息对V1区的反应性没有强烈的调制作用。我们用纹理和光谱匹配的“噪声”刺激测试了每个区域适应性的特异性。适应性降低了V1和V2区的反应性,但只有在V2区,这种降低才依赖于高阶纹理统计信息的存在。尽管有这种特异性,但在V1和V2区,适应后单个神经元和神经元群体提供的纹理信息都减少了。我们的结果表明,对于给定特征的适应性效应是在该特征调谐首次出现的处理阶段诱发的,而且特定于刺激的适应性效应不一定会导致感觉编码的改善。