首页> 美国卫生研究院文献>The Journal of Physiology >Directional asymmetries in the length-response profiles of cells in the feline dorsal lateral geniculate nucleus.
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Directional asymmetries in the length-response profiles of cells in the feline dorsal lateral geniculate nucleus.

机译:在猫的背外侧膝状细胞核的细胞的长度响应轮廓中的方向不对称。

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摘要

1. The visual cortex provides a major synaptic input to the dorsal lateral geniculate nucleus (dLGN). Cortical layer VI cells giving rise to this projection are strongly influenced by stimulus orientation, length and direction of motion. In the dLGN, a significant component of the strong length tuning exhibited by most cells follows from the corticofugal influence. We have now checked whether there are directional biases in geniculate cell responses, and whether such biases are influenced by stimulus length. 2. The responses of A-laminae dLGN cells were assessed by single-unit extracellular recording. Length preference was examined by plotting multihistogram length-tuning curves to moving bars of light of various length. 3. Over half of the cells tested (100/183) exhibited directional bias and in many cases, this bias was highly dependent on bar length, resulting in radically different length response profiles for the two directions of motion. These asymmetries are similar to those documented for cortical hypercomplex cells, but do not equate to any known facet of the centre-surround organization of dLGN cell receptive fields. 4. We suspected the directional biases followed from the influence of the corticofugal projection. To test this, we recorded from preparations where areas 17 and 18 of the visual cortex had been removed. Surprisingly, a similar proportion of cells exhibited directional biases after removal of the corticofugal input, suggesting that the biases are generated subcortically. 5. The widespread presence of systematic biases in the response profiles of dLGN cells further underlines the possibility that geniculate mechanisms may make a far greater contribution to visual processing than hitherto suspected.
机译:1.视觉皮层为背外侧膝状核(dLGN)提供主要的突触输入。皮质层VI细胞产生这种投影受到刺激方向,长度和运动方向的强烈影响。在dLGN中,大多数皮质细胞表现出的强长度调节的重要组成部分来自皮质的影响。现在,我们检查了膝状膝关节细胞反应中是否存在方向性偏倚,以及这种偏倚是否受到刺激长度的影响。 2.通过单单位细胞外记录评估A-laminae dLGN细胞的反应。通过将多直方图长度调整曲线绘制到各种长度的移动光条上来检查长度偏好。 3.超过一半的测试单元(100/183)表现出方向性偏差,并且在许多情况下,该偏差高度依赖于棒的长度,从而导致两个运动方向的长度响应曲线完全不同。这些不对称性与皮质超复杂细胞所记录的不对称性相似,但不等同于dLGN细胞感受野的中心周围组织的任何已知方面。 4.我们怀疑方向性的偏倚是由于皮质小脑投射的影响所致。为了测试这一点,我们记录了去除了视觉皮层区域17和18的制剂。出人意料的是,在去除皮质的输卵管输入后,相似比例的细胞表现出方向性的偏向,表明偏向是皮下产生的。 5. dLGN细胞反应谱中普遍存在系统性偏倚,这进一步表明,膝状肌形成机制对视觉加工的贡献可能比迄今所怀疑的大得多。

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