首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Multiscale pattern analysis of orientation-selective activity in the primary visual cortex.
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Multiscale pattern analysis of orientation-selective activity in the primary visual cortex.

机译:初级视觉皮层中定向选择性活动的多尺度模式分析。

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Although orientation columns are less than a millimeter in width, recent neuroimaging studies indicate that viewed orientations can be decoded from cortical activity patterns sampled at relatively coarse resolutions of several millimeters. One proposal is that these differential signals arise from random spatial irregularities in the columnar map. However, direct support for this hypothesis has yet to be obtained. Here, we used high-field, high-resolution functional magnetic resonance imaging (fMRI) and multivariate pattern analysis to determine the spatial scales at which orientation-selective information can be found in the primary visual cortex (V1) of cats and humans. We applied a multiscale pattern analysis approach in which fine- and coarse-scale signals were first removed by ideal spatial lowpass and highpass filters, and the residual activity patterns then analyzed by linear classifiers. Cat visual cortex, imaged at 0.3125 mm resolution, showed a strong orientation signal at the scale of individual columns. Nonetheless, reliable orientation bias could still be found at spatial scales of several millimeters. In the human visual cortex, imaged at 1 mm resolution, a majority of orientation information was found on scales of millimeters, with small contributions from global spatial biases exceeding approximately 1 cm. Our high-resolution imaging results demonstrate a reliable millimeters-scale orientation signal, likely emerging from irregular spatial arrangements of orientation columns and their supporting vasculature. fMRI pattern analysis methods are thus likely to be sensitive to signals originating from other irregular columnar structures elsewhere in the brain.
机译:尽管定向柱的宽度小于一毫米,但最近的神经影像学研究表明,可以从以几毫米的相对较粗分辨率采样的皮层活动模式中解码观察到的方向。一种建议是,这些差分信号是由柱状图中的随机空间不规则引起的。但是,尚未获得对该假设的直接支持。在这里,我们使用了高场,高分辨率的功能磁共振成像(fMRI)和多元模式分析来确定可在猫和人的主要视觉皮层(V1)中找到方向选择信息的空间尺度。我们应用了多尺度模式分析方法,其中首先通过理想的空间低通和高通滤波器去除了精细和粗略信号,然后通过线性分类器分析了剩余活动模式。以0.3125 mm分辨率成像的Cat视觉皮层在单个列的刻度上显示了很强的定向信号。尽管如此,仍然可以在几毫米的空间尺度上找到可靠的取向偏差。在以1毫米分辨率成像的人类视觉皮层中,大多数定向信息都以毫米为单位,而总体空间偏差超过约1厘米的贡献很小。我们的高分辨率成像结果证明了可靠的毫米级方向信号,很可能是由于方向柱及其支撑脉管系统的不规则空间排列而产生的。因此,fMRI模式分析方法可能对源自大脑其他部位的其他不规则柱状结构的信号敏感。

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