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Characterizing object- and position-dependent response profiles to uni- and bilateral stimulus configurations in human higher visual cortex: a 7T fMRI study

机译:对象和位置依赖性响应概况表征到人类更高的视觉皮层中的单侧和双侧刺激配置:7T FMRI研究

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Abstract Visual scenes are initially processed via segregated neural pathways dedicated to either of the two visual hemifields. Although higher-order visual areas are generally believed to utilize invariant object representations (abstracted away from features such as stimulus position), recent findings suggest they retain more spatial information than previously thought. Here, we assessed the nature of such higher-order object representations in human cortex using high-resolution fMRI at 7T, supported by corroborative 3T data. We show that multi-voxel activation patterns in both the contra- and ipsilateral hemisphere can be exploited to successfully classify the object category of unilaterally presented stimuli. Moreover, robustly identified rank order-based response profiles demonstrated a strong contralateral bias which frequently outweighed object category preferences. Finally, we contrasted different combinatorial operations to predict the responses during bilateral stimulation conditions based on responses to their constituent unilateral elements. Results favored a max operation predominantly reflecting the contralateral stimuli. The current findings extend previous work by showing that configuration-dependent modulations in higher-order visual cortex responses as observed in single unit activity have a counterpart in human neural population coding. They furthermore corroborate the emerging view that position coding is a fundamental functional characteristic of ventral visual stream processing. Highlights ? Ipsilateral cortical activation patterns allow visual object category decoding. ? Contralateral bias frequently outweighs object category preferences. ? Representational overlap varies consistently across uni/bilateral stimulation. ? A ‘MAX’-operation predicts bi- from unilateral stimulation responses.
机译:抽象的视觉场景通过专用于所述两个视觉hemifields的偏析神经通路初始处理。虽然高阶视觉区域一般被认为是利用不变的对象表示(从抽象功能远如刺激的位置),最近的发现表明他们保留比以前认为的更多的空间信息。在这里,我们使用高分辨率功能磁共振成像在7T,通过确凿的3T数据支持这样的评价更高阶对象表示的性质在人类大脑皮层。我们表明,在禁忌和同侧半球都多素激活模式可以被用来成功地进行分类单方面提出刺激的对象类别。此外,基于为了稳健地确定秩响应谱证实其经常胜过对象类别的偏好强烈对侧偏压。最后,我们对比不同的组合操作来预测期间,基于对它们的组成元素单边双边回应刺激条件的响应。结果支持一个最大操作主要反射对侧刺激。目前的研究结果通过显示在单个单元活动观察到在高阶视觉皮层响应配置相关的调制在人类神经群体编码对方延伸以前的工作。他们还证实了新兴认为位置编码是腹侧视觉流处理的基本功能特性。强调 ?同侧皮层激活模式允许视觉对象类目解码。还是对侧偏经常胜过对象类别的偏好。还是代表性重叠跨越单向/双向刺激持续变化。还是A“MAX'操作单方面刺激的反应预测双。

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