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成年猫在重复视觉刺激下皮质感受野的时空可塑性

Spatio-temporal plasticity of cortical receptive fields in response to repetitive visual stimulation in the adult cat.

作者信息

Eyding D, Schweigart G, Eysel U T

机构信息

Department of Neurophysiology MA 4/149, Ruhr-University Bochum, 44780 Bochum, Germany.

出版信息

Neuroscience. 2002;112(1):195-215. doi: 10.1016/s0306-4522(02)00039-8.

Abstract

Many psychophysical experiments on perceptual learning in humans show increases of performance that are most probably based on functions of early visual cortical areas. Long-term plasticity of the primary visual cortex has so far been shown in vivo with the use of visual stimuli paired with electrical or pharmacological stimulation at the cellular level. Here, we report that plasticity in the adult visual cortex can be achieved by repetitive visual stimulation. First, spatial receptive field profiles of single units (n=38) in area 17 or 18 of the anesthetized cat were determined with optimally oriented flashing light bars. Then a conditioning protocol was applied to induce associative synaptic plasticity. The receptive field center and an unresponsive region just outside the excitatory receptive field were synchronously stimulated ('costimulation', repetition rate 1 Hz; for 10-75 min). After costimulation the receptive field and its adjacent regions were mapped again. We observed specific increases of the receptive field size, changes of the receptive field subfield structure as well as shifts in response latency. In 37% of the cells the receptive field size increased specifically towards the stimulated side but not towards the non-stimulated opposite side of the receptive field. In addition, changes in the relative strength and size of the on and off subfield regions were observed. These specific alterations were dependent on the level of neuronal activity during costimulation. During recovery, the new responses dropped down to 120% of the preconditioning value on average within 103 min; however, the decay times significantly depended on the response magnitude after costimulation. In the temporal domain, the latency of new responses appeared to be strongly influenced by the latency of the response during costimulation.Twenty-nine percent of the units displayed no receptive field enlargement, most likely because the activity during costimulation was significantly lower than in the cases with enlarged receptive fields. An unspecific receptive field enlargement towards both the stimulated and non-stimulated side was observed in 34% of the tested cells. In contrast to the cells with specifically enlarged receptive fields, the unspecific increase of receptive field size was always accompanied by a strong increase of the general activity level. We conclude that the receptive field changes presumably took place by strengthening of synaptic inputs at the recorded cells in a Hebbian way as previously shown in the visual cortex in vitro and in vivo. The observed receptive field changes may be related to preattentive perceptual learning and could represent a basis of the 'filling in' of cortical scotomas obtained with specific training procedures in human patients suffering from visual cortex lesions.

摘要

许多关于人类感知学习的心理物理学实验表明,表现的提高很可能基于早期视觉皮层区域的功能。到目前为止,在体内已经通过在细胞水平上使用与电刺激或药理刺激配对的视觉刺激,证明了初级视觉皮层的长期可塑性。在这里,我们报告成年视觉皮层的可塑性可以通过重复视觉刺激来实现。首先,用最佳定向的闪光条确定麻醉猫的17区或18区单个神经元(n = 38)的空间感受野轮廓。然后应用一种条件程序来诱导联想性突触可塑性。感受野中心和兴奋性感受野之外的一个无反应区域被同步刺激(“共刺激”,重复率1赫兹;持续10 - 75分钟)。共刺激后,再次绘制感受野及其相邻区域。我们观察到感受野大小的特定增加、感受野子区域结构的变化以及反应潜伏期的改变。在37%的细胞中,感受野大小特别朝着受刺激的一侧增加,而不是朝着感受野未受刺激的对侧增加。此外,还观察到开和关子区域的相对强度和大小的变化。这些特定的改变取决于共刺激期间神经元活动的水平。在恢复过程中,新反应在103分钟内平均下降到预处理值的120%;然而,衰减时间显著取决于共刺激后的反应幅度。在时间域中,新反应的潜伏期似乎受到共刺激期间反应潜伏期的强烈影响。29%的神经元没有显示感受野扩大,很可能是因为共刺激期间的活动明显低于感受野扩大的情况。在34%的测试细胞中观察到感受野朝着受刺激和未受刺激的两侧非特异性扩大。与感受野特异性扩大的细胞相反,感受野大小的非特异性增加总是伴随着总体活动水平的强烈增加。我们得出结论,感受野变化可能是通过以赫布方式增强记录细胞处的突触输入而发生的,正如先前在体外和体内视觉皮层中所显示的那样。观察到的感受野变化可能与前注意感知学习有关,并且可能代表患有视觉皮层损伤的人类患者通过特定训练程序获得的皮层暗点“填补”的基础。

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