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首页> 外文期刊>NeuroImage >Mechanisms underlying decoding at 7 T: ocular dominance columns, broad structures, and macroscopic blood vessels in V1 convey information on the stimulated eye.
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Mechanisms underlying decoding at 7 T: ocular dominance columns, broad structures, and macroscopic blood vessels in V1 convey information on the stimulated eye.

机译:在7 T处解码的基本机制:V1中的眼部优势柱,宽广的结构和宏观血管在受刺激的眼睛上传达信息。

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Recent studies have demonstrated that multivariate machine learning algorithms applied to human functional MRI data can decode information segregated in cortical columns, despite the voxel size being large relative to the width of columns. The mechanism by which low spatial resolution imaging decodes information represented in a fine-scale organization is not clear. To investigate mechanisms underlying decoding signals we employed high-resolution gradient-echo BOLD functional MRI of visual area V1. We show that in addition to the fine-scale ocular dominance columns, coarse-scale structures extending over several millimeters also convey discriminative power for decoding the stimulated eye. Discriminative power is conveyed by both macroscopic blood vessels and gray matter regions. We hypothesize that gray-matter regions which drain into specific vessels may preferentially contain ocular-dominance columns biased towards one eye; the bias of a specific region thereby causing a functionally selective ocular-dominance response in the associated vessel. Our findings indicate that coarse-scale structures and macroscopic blood vessels contribute to decoding of the stimulated eye based on low-resolution multivariate data.
机译:最近的研究表明,尽管体素的大小相对于列的宽度较大,但应用于人类功能性MRI数据的多元机器学习算法仍可以解码隔离在皮质列中的信息。低空间分辨率成像解码精细组织中表示的信息的机制尚不清楚。为了研究解码信号的潜在机制,我们采用了视觉区域V1的高分辨率梯度回波BOLD功能MRI。我们显示,除了细微的视觉优势列之外,延伸超过几毫米的粗略结构还传递了判别力,以解码受刺激的眼睛。辨别力由宏观血管和灰质区域传达。我们假设,排入特定血管的灰质区域可能优先包含偏向一只眼睛的眼主导列;特定区域的偏见,从而在相关血管中引起功能选择性的眼优势反应。我们的发现表明,基于低分辨率多元数据,粗尺度结构和宏观血管有助于刺激眼睛的解码。

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