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成年猫视觉皮层长期功能可塑性的证据。

Evidence for long-term functional plasticity in the visual cortex of adult cats.

作者信息

Singer W, Tretter F, Yinon U

出版信息

J Physiol. 1982 Mar;324:239-48. doi: 10.1113/jphysiol.1982.sp014109.

DOI:10.1113/jphysiol.1982.sp014109
PMID:7097599
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1250702/
Abstract
  1. Vision was investigated with behavioural and electrophysiological techniques in three groups of cats: (a) two normally raised kittens in which one eye was rotated at an age of 3 months, (b) three adult cats in which one eye had been rotated and the other closed 6 months prior to recording, (c) two adult cats in which first one eye had been rotated and the other closed and subsequently, after one year, the rotated eye had been closed and the normal eye re-opened. The latter two cats were investigated 6 and 12 months after reverse suture, respectively. All adult cats were at least 2 years old when operated on for the first time.2. Behavioural analysis revealed that the kittens of the first group no longer used the rotated eye for fixation, visuo-motor behaviour being impaired when tested through this eye. Binocularity was found to be disrupted to nearly the same extent as in kittens made strabismic at the beginning of the critical period. In addition, ocular dominance was shifted towards the normal eye.3. The adult cats in the second group developed a virtually complete neglect of the visual modality subsequent to a period of severely disturbed visuo-motor behaviour.4. These behavioural abnormalities were associated with clear alterations in the functional state of striate cortex. Only 47% of the recorded cells could be driven with light, the majority of these reactive neurones yielding only sluggish responses to optimally aligned stimuli. The ocular dominance distribution showed a significant reduction of binocular cells but gave no indication of a shift in ocular dominance towards either of the two eyes. Moreover, contrast sensitivity as assessed with pattern-evoked potentials was significantly reduced.5. The remaining two animals that were reverse sutured after the visual neglect had developed showed complete behavioural recovery when tested through the re-opened normal eye. However, this recovery was not instantaneous and occurred only after the cats had been forced to use their visual sense.6. Behavioural recovery was paralleled by an increase of cortical reactivity to normal levels and by a marked increase in binocularity. This gain increase of excitatory transmission was, however, selective for neurones dominated by the normal eye, leading to a bias in ocular dominance towards this eye.7. The observed modifications in the functional state of striate cortex indicate that reversible changes in the gain of excitatory transmission can still occur beyond the end of the classical critical period. These long-lasting changes in synaptic efficiency appear to follow the rules postulated by Hebb for adaptive synaptic connexions.
摘要
  1. 采用行为学和电生理学技术,对三组猫的视觉进行了研究:(a) 两只正常饲养的小猫,其中一只眼睛在3个月大时发生旋转;(b) 三只成年猫,在记录前6个月,其中一只眼睛发生旋转,另一只眼睛闭合;(c) 两只成年猫,首先一只眼睛发生旋转,另一只眼睛闭合,随后,在一年后,旋转的眼睛闭合,正常的眼睛重新睁开。后两只猫分别在反向缝合后6个月和12个月进行了研究。所有成年猫在首次手术时至少2岁。

  2. 行为分析表明,第一组小猫不再使用旋转的眼睛进行注视,通过这只眼睛测试时,视觉运动行为受损。发现双眼视觉受到的干扰程度与在关键期开始时发生斜视的小猫几乎相同。此外,眼优势向正常眼睛转移。

  3. 第二组成年猫在经历一段严重受干扰的视觉运动行为后,几乎完全忽视了视觉模式。

  4. 这些行为异常与纹状皮质功能状态的明显改变有关。记录的细胞中只有47% 能被光驱动,这些反应性神经元中的大多数对最佳对齐的刺激仅产生迟缓的反应。眼优势分布显示双眼细胞显著减少,但没有迹象表明眼优势向两只眼睛中的任何一只转移。此外,用模式诱发电位评估的对比敏感度显著降低。

  5. 在视觉忽视形成后进行反向缝合的另外两只动物,通过重新睁开的正常眼睛测试时,显示出完全的行为恢复。然而,这种恢复不是即时的,只有在猫被迫使用它们的视觉后才会发生。

  6. 行为恢复与皮质反应性增加到正常水平以及双眼视觉显著增加并行。然而,这种兴奋性传递增益的增加对由正常眼睛主导的神经元具有选择性,导致眼优势偏向这只眼睛。

  7. 在纹状皮质功能状态中观察到的变化表明,在经典关键期结束后,兴奋性传递增益的可逆变化仍然可以发生。这些突触效率的长期变化似乎遵循赫布提出的确立适应性突触连接的规则。

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本文引用的文献

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Changes in the circuitry of the kitten visual cortex are gated by postsynaptic activity.小猫视觉皮层神经回路的变化受突触后活动的控制。
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Central gating of developmental plasticity in kitten visual cortex.小猫视觉皮层发育可塑性的中枢门控
J Physiol. 1982 Mar;324:221-37. doi: 10.1113/jphysiol.1982.sp014108.
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Binocular interaction in striate cortex of kittens reared with artificial squint.人工斜视饲养的小猫视皮层中的双眼相互作用
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