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Very-long-range disynaptic V1 connections through layer 6 pyramidal neurons revealed by transneuronal tracing with rabies virus

机译:狂犬病病毒经神经元示踪显示通过第6层锥体神经元的超远距离突触V1连接

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Neurons in primary visual cortex (V1) integrate across the representation of the visual field through networks of long-range projecting pyramidal neurons. These projections, which originate from within V1 and through feedback from higher visual areas, are likely to play a key role in such visual processes as low contrast facilitation and extraclassical surround suppression. The extent of the visual field representation covered by feedback is generally much larger than that covered through monosynaptic horizontal connections within V1, and, although it may be possible that multisynaptic horizontal connections across V1 could also lead to more widespread spatial integration, nothing is known regarding such circuits. In this study, we used injections of the CVS-11 strain of rabies virus to examine disynaptic long-range horizontal connections within macaque monkey V1. Injections were made around the representation of 5° eccentricity in the lower visual field. Along the opercular surface of V1, we found that the majority of connected neurons extended up to 8 mm in most layers, consistent with twice the typically reported distances of monosynaptic connections. In addition, mainly in layer 6, a steady presence of connected neurons within V1 was observed up to 16 mm away. A relatively high percentage of these connected neurons had large-diameter somata characteristic of Meynert cells, which are known to project as far as 8 mm individually. Several neurons, predominantly in layer 6, were also found deep within the calcarine sulcus, reaching as far as 20° of eccentricity, based on estimates, and extending well into the upper visual field representation. Thus, our anatomical results provide evidence for a wide-ranging disynaptic circuit within V1, mediated largely through layer 6, that accounts for integration across a large region of the visual field.
机译:初级视觉皮层(V1)中的神经元通过远程投射的锥体神经元网络整合到整个视野中。这些投影源自V1并通过较高视觉区域的反馈,可能在诸如低对比度促进和超经典环绕抑制等视觉过程中发挥关键作用。反馈所覆盖的视野表示范围通常比V1中的单突触水平连接所覆盖的范围大得多,并且尽管跨V1的多突触水平连接也可能导致更广泛的空间整合,但是关于这样的电路。在这项研究中,我们使用狂犬病病毒CVS-11株的注射来检查猕猴V1内的突触远程水平连接。在下部视野中围绕5°偏心距的表示进行注射。沿着V1的操作表面,我们发现大多数连接的神经元在大多数层中延伸到8毫米,这是单突触连接的典型报道距离的两倍。此外,主要在第6层中,在距离16 mm处观察到V1内稳定存在连接神经元。这些连接的神经元中有相对较高的百分比具有Meynert细胞的大直径躯体特征,已知它们各自投射至8 mm。根据估计,还发现了一些神经元,主要位于第6层,位于钙盐沟的深处,达到了20°的偏心距,并很好地延伸到了上部视野。因此,我们的解剖学结果为V1内广泛的突触回路提供了证据,该突触回路主要通过第6层介导,这说明了视野的较大区域的整合。

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