首页> 外文期刊>The Journal of Physiology >A comparison of koniocellular, magnocellular and parvocellular receptive field properties in the lateral geniculate nucleus of the owl monkey (Aotus trivirgatus).
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A comparison of koniocellular, magnocellular and parvocellular receptive field properties in the lateral geniculate nucleus of the owl monkey (Aotus trivirgatus).

机译:猫头鹰猴(Aotus trivirgatus)的外侧膝状核中的运动细胞,大细胞和小细胞的感受野特性的比较。

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1. By analogy to previous work on lateral geniculate nucleus (LGN) magnocellular (M) and parvocellular (P) cells our goal was to construct a physiological profile of koniocellular (K) cells that might be linked to particular visual perceptual attributes. 2. Extracellular recordings were used to study LGN cells, or their axons, in silenced primary visual cortex (V1), in nine anaesthetized owl monkeys injected with a neuromuscular blocker. Receptive field centre-surround organization was examined using flashing spots. Spatial and temporal tuning and contrast responses were examined using drifting sine-wave gratings; counterphase sine-wave gratings were used to examine linearity of spatial summation. 3. Receptive fields of 133 LGN cells and 10 LGN afferent axons were analysed at eccentricities ranging from 2.8 to 31.3 deg. Thirty-four per cent of K cells and only 9 % of P and 6 % of M cells responded poorly to drifting gratings. K, P and M cells showed increases in centre size with eccentricity, but K cells showed more scatter. All cells, except one M cell, showed linearity in spatial summation. 4. At matched eccentricities, K cells exhibited lower spatial and intermediate temporal resolution compared with P and M cells. K contrast thresholds and gains were more similar to those of M than P cells. M cells showed lower spatial and higher temporal resolution and contrast gains than P cells. 5. K cells in different K LGN layers differed in spatial, temporal and contrast characteristics, with K3 cells having higher spatial resolution and lower temporal resolution than K1/K2 cells. 6. Taken together with previous results these findings suggest that the K cells consist of several classes, some of which could contribute to conventional aspects of spatial and temporal resolution.
机译:1.通过类似于先前关于外侧膝状核(LGN)的巨细胞(M)和细小细胞(P)细胞的工作,我们的目标是构建可与特定视觉感知属性相关联的单核细胞(K)细胞的生理特性。 2.细胞外的录音被用于研究九只麻醉过的猫头鹰神经猴在注射了神经肌肉阻滞剂的沉默的初级视觉皮层(V1)中的LGN细胞或其轴突。使用闪点检查了接收现场中心周围组织。使用漂移正弦波光栅检查时空调谐和对比度响应。反相正弦波光栅用于检查空间求和的线性。 3.在2.8至31.3度的偏心率下分析了133个LGN细胞和10个LGN传入轴突的感受野。 K单元中有34%,P单元中只有9%,M单元中只有6%,对漂移光栅的响应较差。 K,P和M细胞的中心尺寸随偏心率的增加而增加,但K细胞的散射性更大。除一个M单元外,所有单元在空间求和中均显示线性。 4.在匹配的偏心率下,与P和M细胞相比,K细胞表现出较低的空间和中间时间分辨率。 K对比度阈值和增益与M阈值和增益更像,而不是P细胞。与P细胞相比,M细胞显示出更低的空间分辨率和更高的时间分辨率以及对比度增强。 5.不同的K LGN层中的K细胞的空间,时间和对比度特征不同,K3细胞比K1 / K2细胞具有更高的空间分辨率和更低的时间分辨率。 6.与以前的结果一起,这些发现表明K细胞由几类组成,其中一些可能有助于空间和时间分辨率的常规方面。

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