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首页> 外文期刊>The Journal of Physiology >Hyperpolarisation rectification in cat lateral geniculate neurons modulated by intact corticothalamic projections.
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Hyperpolarisation rectification in cat lateral geniculate neurons modulated by intact corticothalamic projections.

机译:猫侧膝状神经元的超极化整流受完整的皮质丘脑投射调节。

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The intrinsic properties of thalamic neurons are influenced by synaptic activities in ascending pathways and corticofugal projections, as well as by the actions of neurotransmitters released by generalised modulatory systems. We focused on the effects of corticothalamic projections on the hyperpolarisation-activated cation current Ih. Intracellular recordings of thalamocortical neurons in the dorsal lateral geniculate (dLG) nucleus were performed in cats under ketamine-xylazine anaesthesia. At variance with the conventional way of recording intracellularly from thalamic neurons after partial or total ablation of the grey and white matter overlying the dLG, we preserved intact corticothalamic neuronal loops. Stimulating electrodes inserted into the optic tract and light-emitting-diodes as photic stimulation were used to identify the dLG neurons. The expression of the depolarising sag due to Ih depended on the state of cortical networks. Thalamic dLG Ih, induced by hyperpolarising current steps, was detected during the periods of cortical disfacilitation that occur during the cortical slow (< 1 Hz) oscillation, whereas Ih was absent during the active (depolarised) periods. The possibility that the excitatory corticothalamic projections could preclude the generation of the Ih was tested by applying a concentrated K+ solution (3 M) to the primary visual cortex. The same dLG neurons that did not display Ih before application of K+ were able to produce hyperpolarisation-activated depolarising sags during K+-induced cortical depression. Our data suggest that the thalamic clock-like delta oscillation, which results from an interplay between Ih and the low-threshold calcium current (IT), as described in preparations without cerebral cortex, is prevented in dLG neurons when corticothalamic loops are intact.
机译:丘脑神经元的内在特性受到上升途径和皮质突触投射中突触活动的影响,以及广义调节系统释放的神经递质的作用。我们集中研究了皮质丘脑投射对超极化激活阳离子电流Ih的影响。在氯胺酮-甲苯噻嗪麻醉下在猫的背外侧膝状体(dLG)核中丘脑皮质神经元的细胞内记录。与传统的在dLG上部分或全部烧蚀覆盖dLG的灰色和白色物质后从丘脑神经元进行细胞内记录的常规方式不同,我们保留了完整的皮质丘脑神经元环。将插入光路的刺激电极和作为光刺激的发光二极管用于识别dLG神经元。由Ih引起的去极化凹陷的表达取决于皮层网络的状态。在皮层缓慢(<1 Hz)振荡期间发生皮层减弱期间,检测到由超极化电流阶跃引起的丘脑dLG Ih,而在活动(去极化)期间不存在Ih。通过将浓缩的K +溶液(3 M)应用于初级视觉皮层,测试了兴奋性皮层丘脑投射可能阻止Ih生成的可能性。在应用K +之前未显示Ih的相同dLG神经元能够在K +诱导的皮质抑制过程中产生超极化激活的去极化下垂。我们的数据表明,如无大脑皮层制剂中所述,由Ih和低阈值钙电流(IT)之间的相互作用导致的丘脑钟状三角波振荡在dLG神经元中被阻止,而皮层皮质环完好无损。

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