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Spatial properties of koniocellular cells in the lateral geniculate nucleus of the marmoset Callithrix jacchus

机译:mo小Call鱼(Callithrix jacchus)外侧膝状核中核细胞的空间特性。

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摘要

class="enumerated" style="list-style-type:decimal">The receptive field dimensions, contrast sensitivity and linearity of spatial summation of koniocellular (KC), parvocellular (PC) and magnocellular (MC) cells in the lateral geniculate nucleus (LGN) of 11 adult marmosets were measured using achromatic sinusoidal gratings.The receptive field centre diameter of cells in each (PC, KC and MC) class increases with distance from the fovea. There is substantial overlap in centre size between the three cell classes at any eccentricity, but the PC cells have, on average, the smallest centres and the KC cells have the largest. Some PC and KC cells did not respond at all to the grating stimulus.The contrast sensitivity of the receptive field centre mechanism in KC cells decreases in proportion to the centre area. A similar trend was seen for the surround mechanism. These characteristics are common to PC and MC cells, suggesting that they originate at an early stage of visual processing in the retina.The KC cells showed, in general, lower peak evoked discharge rates than PC or MC cells. The spontaneous discharge rate of KC cells was lower than that of PC cells and similar to that of MC cells.The majority of cells in all divisions of the LGN show linear spatial summation. A few cells did show non-linear spatial summation; these cells were predominantly located in the MC and ventral KC layers.The ventral KC layers below and between the MC layers contain cells with larger and more transiently responding receptive fields than cells in the more dorsal KC layers.We conclude that many of the contrast-dependent spatial properties of cells in the marmoset LGN are common to PC, MC and KC cells. The main difference between KC cells and the other two classes is that there is more variability in their response properties, and they are less responsive to high spatial frequencies.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 使用消色正弦光栅测量了11个成年mos猴的外侧膝状核(LGN)中的巨细胞(KC),小细胞(PC)和巨细胞(MC)细胞的感受野尺寸,对比敏感度和空间总和的线性度。 每个(PC,KC和MC)类别中细胞的感受野中心直径随距中央凹的距离而增加。在任何偏心率下,三种电池类型之间的中心尺寸都有很大的重叠,但平均而言,PC电池的中心最小,而KC电池的中心最大。一些PC和KC细胞完全不响应光栅刺激。 KC细胞的感受野中心中心机制的对比度灵敏度与中心区域成比例地降低。环绕机构也看到了类似的趋势。这些特征是PC和MC细胞所共有的,这表明它们起源于视网膜视觉处理的早期阶段。 KC细胞通常显示的峰值诱发放电率低于PC或MC细胞。 KC细胞的自发放电速率低于PC细胞,与MC细胞相似。 LGN所有分区中的大多数细胞具有线性空间总和。一些单元确实显示了非线性空间求和;这些细胞主要位于MC和腹侧KC层中。 MC层下方和之间的腹侧KC层比背侧KC层中的细胞具有更大且更具瞬态响应感受态的细胞。 / li> 我们得出的结论是,the猴LGN中细胞的许多依赖于对比度的空间特性对于PC,MC和KC细胞是共有的。 KC细胞与其他两类细胞之间的主要区别在于,它们的反应特性具有更大的可变性,而对高空间频率的反应则较少。

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