小猫眼旋转手术后皮质细胞的取向差异和可塑性。

U Yinon
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引用次数: 0

摘要

我们研究了手术诱导的单眼旋转对正常小猫(N = 420个细胞)和单眼剥夺小猫(N = 296个细胞)在早期(1-1.5个月)或晚期(3个月)视觉区17细胞的影响。早期手术组单眼剥夺小猫皮质神经元感受野形状异常,这反映在驱动穿过旋转眼时,缺失定向(46.9%)和方向特异性(47.7%)的细胞比例较高。此外,这些小猫的许多细胞(46%)在视觉上不活跃。上述细胞组的比例在双眼视力的手术小猫和所有晚期手术小猫中都不太明显,表明旋转本身的特定影响。在早期手术的双眼视力小猫中,旋转导致对侧半球的双眼细胞占35.9%,同侧半球的双眼细胞占40.0%。单眼剥夺早期手术小猫的结果分别为42.8%和21.5%。因此,旋转有效地限制了剥夺仅对侧半球的影响。在手术旋转矫正后,细胞的分布与它们的感受野取向一致,这表明取向特异性受到了相当大的干扰,这反映在双眼细胞的大范围角度差异上。虽然在三只小猫(28个细胞)中发现了向零线的趋势,但在四只小猫(28个细胞)中我们无法证明,这表明手术诱导的眼间差异没有得到补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Orientation disparity and plasticity of cortical cells in kittens following surgical rotation of the eye.

We have studied the effect of surgically induced monocular rotation of the eye on cells in visual area 17 of normal kittens (N = 420 cells) and of kittens monocularly deprived (N = 296 cells) at early (1-1.5 months) or late (3 months) ages. The receptive fields of cortical neurons in monocularly deprived kittens of the early operated group were abnormal in shape, a condition which is reflected by the high proportions of cells missing orientation (46.9%) and direction (47.7%) specificity when driven through the rotated eye. In addition, many cells (46%) were visually inactive in these kittens. The proportions of the above cell groups were less pronounced in the operated kittens with binocular vision and in all late operated kittens, indicating a specific effect of the rotation itself. In the early operated kittens with binocular vision, the rotation resulted in 35.9% binocular cells in the hemisphere contralateral and 40.0% in the hemisphere ipsilateral to the rotated eye. The results for the monocularly deprived early operated kittens were 42.8% and 21.5% respectively. Thus, the rotation was effective in limiting the influence of the deprivation to only the contralateral hemisphere. The distribution of the cells in accordance with their receptive field orientations following correction for the surgical rotation shows a considerable disturbance to orientation specificity, as reflected by the wide range of angular disparities found for the binocular cells. While for three kittens (28 cells) a tendency toward the zero line was found, for four kittens (28 cells) we could not prove, it indicating that a compensation for the interocular difference surgically induced is not seen.

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