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一些脑结构在操作性条件反射大鼠中下行影响转换中的作用。

The role of some brain structures in the switching of the descending influences in operantly conditioned rats.

作者信息

Fanardjian V V, Papoyan E V, Hovhannisyan E A, Melik-Moussian A B, Gevorkyan O V, Pogossian V I

机构信息

L. A. Orbeli Institute of Physiology, National Academy of Sciences of Armenia, 22 Bros. Orbeli Str., 375028, Yerevan, Armenia.

出版信息

Neuroscience. 2000;98(2):385-95. doi: 10.1016/s0306-4522(00)00113-5.

Abstract

A hypothesis was proposed according to which the switching of descending influences by the corticospinal and corticorubrospinal systems was associated with rubro-olivary projection involvement depending on the context of movement [Kennedy P. R. (1990) Trends Neurosci. 13, 474-479]. Our results confirmed and extended this hypothesis. It was shown that a preliminary transection of the dorsolateral funiculus (containing the rubrospinal tract) accelerated the compensatory rehabilitation process following lesions of the red nucleus and the ventrolateral thalamic nucleus in albino rats with learned instrumental reflexes on equilibrium. A preliminary lesion of the ventrolateral thalamic nucleus considerably hampered the switching process; nevertheless, performance of the reflexes suggested that the switching of cerebellar ascending influences to the cerebral cortex could be completed through other cerebellocortical pathways as well. Comparison of the results of electrolytic and chemical lesions of the red nucleus suggested a similar conclusion. It was established that the conditioning and recovery of already learned instrumental reflexes were impossible after complete neurotoxic destruction of the inferior olive. The data obtained emphasize the role of the inferior olive, ventrolateral thalamic nucleus and red nucleus in the switching of descending influences in operantly motor conditioned rats. Motor deficit and the compensatory rehabilitation process depended on the severity of inferior olive destruction combined with a high transection of the dorsolateral funiculus and a destroyed red nucleus. Long-lasting training improved compensation of motor deficit and stabilized instrumental reflexes to some extent in rats with incomplete destruction of the inferior olive. It has been suggested that these modifications occur because of collateral sprouting in the olivocerebellar system.

摘要

根据一种假说,皮质脊髓和皮质红核脊髓系统下行影响的转换与红核-橄榄投射的参与有关,这取决于运动的背景[肯尼迪·P·R.(1990年)《神经科学趋势》13卷,474 - 479页]。我们的结果证实并扩展了这一假说。结果表明,在患有平衡学习性工具反射的白化大鼠中,背外侧索(包含红核脊髓束)的预先横断加速了红核和腹外侧丘脑核损伤后的代偿性康复过程。腹外侧丘脑核的预先损伤极大地阻碍了转换过程;然而,反射表现表明,小脑向大脑皮质的上行影响的转换也可以通过其他小脑皮质通路完成。红核电解损伤和化学损伤结果的比较得出了类似的结论。已经确定,在下橄榄完全神经毒性破坏后,已习得的工具反射的条件化和恢复是不可能的。所获得的数据强调了下橄榄、腹外侧丘脑核和红核在操作性运动条件反射大鼠下行影响转换中的作用。运动缺陷和代偿性康复过程取决于下橄榄破坏的严重程度,以及背外侧索的高位横断和红核的破坏。在患有下橄榄不完全破坏的大鼠中,长期训练在一定程度上改善了运动缺陷的代偿并稳定了工具反射。有人认为,这些改变是由于橄榄小脑系统中的侧支发芽所致。

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