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首页> 外文期刊>Journal of Neurophysiology >Chronic electrical stimulation of afferents from one eye changes ocular dominance of visual cortical neurons in kittens.
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Chronic electrical stimulation of afferents from one eye changes ocular dominance of visual cortical neurons in kittens.

机译:一只眼睛对传入神经的慢性电刺激改变了小猫视觉皮层神经元的眼部优势。

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摘要

Binocular visual responsiveness of neurons in visual cortex of the cat can be changed by monocular visual deprivation in the critical period of postnatal development. It is hypothesized that afferents from each eye compete with one another for synaptic connections with cortical neurons so that less active afferents from the deprived eye fail to maintain the connections. This hypothesis predicts that an increase in inputs from one eye instead of decrease due to deprivation should also change binocular responsiveness of cortical neurons. However, the hypothesis has not successfully been tested with experimental activation of afferents from one eye. In the present study, we activated one of the optic nerves by chronic electrical stimulation of theta-burst type in behaving kittens for 2 days. After such a monocular activation, visual cortical neurons showed a significant ocular dominance shift in favor of the electrically activated eye, although neurons in the activated and nonactivated layers of the dorsal lateral geniculate nucleus had no biased visual responses. Also, we found no detectable difference between activated and nonactivated eye responses of cortical neurons in other response properties such as orientation selectivity. These results support the hypothesis that the balance between activities of both afferents is critical for formation or consolidation of each eye-specific pathway.
机译:在产后发育的关键时期,猫的视觉皮层中神经元的双眼视觉反应能力可以通过单眼视觉剥夺来改变。假设每只眼睛的传入神经相互竞争与皮层神经元的突触连接,以致缺乏活动的弱视传入神经无法维持这种连接。该假设预测,一只眼睛的输入增加而不是由于剥夺引起的输入减少,也会改变皮层神经元的双眼反应能力。但是,该假设尚未通过实验激活一只眼睛的传入传入来成功验证。在本研究中,我们通过行为小猫连续2天的theta-burst型慢性电刺激来激活其中的视神经之一。在这种单眼激活后,尽管背侧膝状核的激活层和未激活层中的神经元都没有偏见的视觉反应,但视觉皮层神经元显示出明显的眼优势转移,有利于电激活眼。此外,我们发现在其他响应特性(例如方向选择性)中,皮质神经元的激活和未激活眼睛响应之间没有可检测到的差异。这些结果支持这样的假说,即两个传入活动之间的平衡对于形成或巩固每个眼睛特异性途径至关重要。

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