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首页> 外文期刊>Journal of vision >Modeling centera??surround configurations in population receptive fields using fMRI
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Modeling centera??surround configurations in population receptive fields using fMRI

机译:使用fMRI对人口接受领域中的centera?surround配置进行建模

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Antagonistic centera??surround configurations are a central organizational principle of our visual system. In visual cortex, stimulation outside the classical receptive field can decrease neural activity and also decrease functional Magnetic Resonance Imaging (fMRI) signal amplitudes. Decreased fMRI amplitudes below baselinea??0% contrasta??are often referred to as a??negativea?? responses. Using neural model-based fMRI data analyses, we can estimate the region of visual space to which each cortical location responds, i.e., the population receptive field (pRF). Current models of the pRF do not account for a centera??surround organization or negative fMRI responses. Here, we extend the pRF model by adding surround suppression. Where the conventional model uses a circular symmetric Gaussian function to describe the pRF, the new model uses a circular symmetric difference-of-Gaussians (DoG) function. The DoG model allows the pRF analysis to capture fMRI signals below baseline and surround suppression. Comparing the fits of the models, an increased variance explained is found for the DoG model. This improvement was predominantly present in V1/2/3 and decreased in later visual areas. The improvement of the fits was particularly striking in the parts of the fMRI signal below baseline. Estimates for the surround size of the pRF show an increase with eccentricity and over visual areas V1/2/3. For the suppression index, which is based on the ratio between the volumes of both Gaussians, we show a decrease over visual areas V1 and V2. Using non-invasive fMRI techniques, this method gives the possibility to examine assumptions about centera??surround receptive fields in human subjects.
机译:对抗性centera?surround配置是我们视觉系统的中心组织原则。在视觉皮层中,经典感受野以外的刺激可能会降低神经活动,并且还会降低功能性磁共振成像(fMRI)信号幅度。 fMRI幅值降低到基线以下?? 0%对比度??通常被称为??阴性?回应。使用基于神经模型的fMRI数据分析,我们可以估计每个皮层位置所响应的视觉空间区域,即人口感受野(pRF)。 pRF的当前模型不能解决中心周围组织或fMRI阴性反应的问题。在这里,我们通过添加环绕抑制来扩展pRF模型。在传统模型使用圆对称高斯函数来描述pRF的情况下,新模型使用圆对称高斯差(DoG)函数。 DoG模型允许pRF分析捕获低于基线和环绕抑制的fMRI信号。比较模型的拟合度,发现DoG模型的解释方差增加。这种改进主要存在于V1 / 2/3中,而在以后的视觉区域中却有所降低。在基线以下的fMRI信号部分,拟合的改善尤为明显。对pRF的环绕尺寸的估计显示,随着偏心率的增加以及在视觉区域V1 / 2/3上的增大。对于基于两个高斯体积之间的比率的抑制指数,我们显示了可视区域V1和V2的减小。使用非侵入性功能磁共振成像技术,这种方法使检查有关人类受试者中枢周围感受野的假设成为可能。

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