首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex.
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Relationship between intrinsic connections and functional architecture revealed by optical imaging and in vivo targeted biocytin injections in primate striate cortex.

机译:光学成像和灵长类动物纹皮层体内靶向生物胞素注射揭示的内在联系与功能结构之间的关系。

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摘要

In primate primary visual cortex, neurons sharing similar response properties are clustered together forming functional domains that appear as a mosaic of patches or bands, often traversing the entire cortical depth from the pia to the white matter. Similarly, each cortical site connects laterally through an extensive network of intrinsic projections that are organized in multiple clusters (patches) and reach distances of up to a few millimeters. The relationship between the functional domains and these laterally connected patches has remained a controversial issue despite intensive research efforts. To investigate this relationship, we obtained high-resolution functional maps of the cortical architecture by in vivo optical imaging. Subsequently, extracellular injections of the sensitive anterograde tracer biocytin were targeted into selected functional domains. Within the ocular dominance system, we found that long-range intrinsic connections tended to link the monocular regions of same-eye ocular dominance columns. Furthermore, we discovered that binocular domains formed a separate set of connections in area V1; binocular regions were selectively connected among themselves but were not connected to strictly monocular regions, suggesting that they constitute a distinct columnar system. In the other subsystem subserving orientation preference, patches of intrinsic connections tended to link domains sharing similar orientation preferences. Analyses of the precision of these connections indicated that in both functional subsystems, < 15% of the connections were between domains having orthogonal response properties. However, their selectivity was limited; approximately 30% +/- 10% of the interconnected patches contained neurons exhibiting orientation tuning that differed from those found at the injection sites by at least 45 degrees. At short range (up to 400 microns from the injection site), this casual trend seemed markedly accentuated; the local, synaptic-rich axonal and dendritic arbors crossed freely through columns of diverse functional properties. These complex sets of connections can endow cortical neurons with a rich diversity of response properties and broad tuning.
机译:在灵长类动物的初级视觉皮层中,具有相似响应特性的神经元聚集在一起,形成功能域,这些功能域以斑块或条带的镶嵌形式出现,通常遍历整个皮层深度,从小脑到白质。同样,每个皮质部位通过广泛的内在投影网络横向连接,这些内在投影网络组织成多个群集(斑块),并且距离可达几毫米。尽管进行了大量的研究,但功能域与这些横向连接的斑块之间的关系仍然是一个有争议的问题。为了研究这种关系,我们通过体内光学成像获得了皮质结构的高分辨率功能图。随后,将胞外注射敏感的顺式示踪剂生物胞素靶向选定的功能域。在眼优势系统中,我们发现远程内在联系倾向于链接同一眼眼优势列的单眼区域。此外,我们发现双目域在区域V1中形成了独立的连接集;双眼区域在它们之间是选择性连接的,但不与严格的单眼区域连接,这表明它们构成了独特的柱状系统。在另一个支持方向偏好的子系统中,内部连接的补丁倾向于链接共享相似方向偏好的域。这些连接的精度分析表明,在两个功能子系统中,<15%的连接位于具有正交响应属性的域之间。但是,它们的选择性有限。大约30%+/- 10%的相互连接的贴片包含神经元,这些神经元的方向调整与注射部位的方向调整至少相差45度。在短距离(距注射部位最大400微米)处,这种随便的趋势似乎明显加剧。局部,富含突触的轴突和树突状乔木通过各种功能特性的圆柱自由穿过。这些复杂的连接集可以赋予皮质神经元丰富的响应特性和广泛的调整范围。

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