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本文引用的文献

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Inserting a Neuropixels probe into awake monkey cortex: two probes, two methods.在清醒猴子皮层中插入 Neuropixels 探针:两种探针,两种方法。
J Neurosci Methods. 2024 Feb;402:110016. doi: 10.1016/j.jneumeth.2023.110016. Epub 2023 Nov 22.
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Dissociation in neuronal encoding of object versus surface motion in the primate brain.灵长类动物大脑中对物体运动与表面运动的神经元编码的分离。
Curr Biol. 2023 Feb 27;33(4):711-719.e5. doi: 10.1016/j.cub.2023.01.016. Epub 2023 Feb 3.
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Accounting for Biases in the Estimation of Neuronal Signal Correlation.估计神经元信号相关性中的偏差。
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Elife. 2021 May 17;10:e63798. doi: 10.7554/eLife.63798.
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Neuropixels 2.0: A miniaturized high-density probe for stable, long-term brain recordings.Neuropixels 2.0:一种小型化高密度探头,用于稳定、长期的大脑记录。
Science. 2021 Apr 16;372(6539). doi: 10.1126/science.abf4588.
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Curvature-processing domains in primate V4.灵长类动物 V4 的曲率处理区域。
Elife. 2020 Nov 19;9:e57502. doi: 10.7554/eLife.57502.
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Curvature domains in V4 of macaque monkey.猴 V4 中的弯曲域。
Elife. 2020 Nov 19;9:e57261. doi: 10.7554/eLife.57261.
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Early Emergence of Solid Shape Coding in Natural and Deep Network Vision.自然与深度网络视觉中的实体形状编码的早期出现。
Curr Biol. 2021 Jan 11;31(1):51-65.e5. doi: 10.1016/j.cub.2020.09.076. Epub 2020 Oct 22.
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Visual Functions of Primate Area V4.灵长类动物 V4 区的视觉功能
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Retino-Cortical Mapping Ratio Predicts Columnar and Salt-and-Pepper Organization in Mammalian Visual Cortex.视网膜-皮质映射比预测哺乳动物视觉皮层中的柱状和椒盐状组织。
Cell Rep. 2020 Mar 10;30(10):3270-3279.e3. doi: 10.1016/j.celrep.2020.02.038.

高密度记录揭示了猕猴V4区中用于形状和纹理编码的稀疏簇(而非柱状结构)。

High-Density Recording Reveals Sparse Clusters (But Not Columns) for Shape and Texture Encoding in Macaque V4.

作者信息

Namima Tomoyuki, Kempkes Erin, Zamarashkina Polina, Owen Natalia, Pasupathy Anitha

机构信息

Department of Biological Structure and Washington National Primate Research Center, University of Washington, Seattle, Washington 98195.

Graduate School of Frontier Biosciences, Osaka University, Suita 565-0871, Japan.

出版信息

J Neurosci. 2025 Jan 29;45(5):e1893232024. doi: 10.1523/JNEUROSCI.1893-23.2024.

DOI:10.1523/JNEUROSCI.1893-23.2024
PMID:39562041
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11780345/
Abstract

Macaque area V4 includes neurons that exhibit exquisite selectivity for visual form and surface texture, but their functional organization across laminae is unknown. We used high-density Neuropixels probes in two awake monkeys (one female and one male) to characterize the shape and texture tuning of dozens of neurons simultaneously across layers. We found sporadic clusters of neurons that exhibit similar tuning for shape and texture: ∼20% exhibited similar tuning with their neighbors. Importantly, these clusters were confined to a few layers, seldom "columnar" in structure. This was the case even when neurons were strongly driven and exhibited robust contrast invariance for shape and texture tuning. We conclude that functional organization in area V4 is not columnar for shape and texture stimulus features and in general organization may be at a coarser stimulus category scale (e.g., selectivity for stimuli with vs without 3D cues) and a coarser spatial scale (assessed by optical imaging), rather than at a fine scale in terms of similarity in single-neuron tuning for specific features. We speculate that this may be a direct consequence of the great diversity of inputs integrated by V4 neurons to build variegated tuning manifolds in a high-dimensional space.

摘要

猕猴的V4区包含对视觉形状和表面纹理表现出极高选择性的神经元,但其跨层的功能组织尚不清楚。我们在两只清醒的猴子(一只雌性和一只雄性)身上使用了高密度神经像素探针,以同时表征数十个神经元跨层的形状和纹理调谐。我们发现了零星的神经元簇,它们对形状和纹理表现出相似的调谐:约20%的神经元与其邻居表现出相似的调谐。重要的是,这些簇局限于少数几层,结构上很少呈“柱状”。即使神经元受到强烈驱动,并且在形状和纹理调谐方面表现出强大的对比度不变性,情况也是如此。我们得出结论,V4区在形状和纹理刺激特征方面的功能组织不是柱状的,总体组织可能处于更粗略的刺激类别尺度(例如,对有或没有3D线索的刺激的选择性)和更粗略的空间尺度(通过光学成像评估),而不是在单个神经元对特定特征的调谐相似性方面的精细尺度。我们推测,这可能是V4神经元整合的输入具有极大多样性的直接结果,这些输入在高维空间中构建了多样化的调谐流形。