Mintz M, Douglas R, Kellaway L, van Wageningen G
Behav Brain Res. 1985 Oct;17(3):257-63. doi: 10.1016/0166-4328(85)90050-6.
Several studies have demonstrated the existence of crossed pathways interconnecting the bilateral extrapyramidal system. The present study has evaluated the role of the thalamus in the interhemispheric control of nigrostriatal function by observing the effect of midsagittal thalamic transection on amphetamine-induced rotation in rats. The effect of thalamic transection on net rotational asymmetry did not differ from the effects of sham operations. Also, the transection did not affect the rotational asymmetry induced by subsequent lesioning of the dominant hemisphere substantia nigra. The failure to affect the rotation asymmetry by the transection suggests either that the inter-hemispheric pathway does not control extrapyramidal asymmetry or that the crossing takes place outside the thalamus. In an additional group of rats, thalamic transection did not interrupt retrograde labeling of somata in the substantia nigra and ventral tegmental area by horseradish peroxidase injected in the contralateral caudate. Thus, the crossed nigrostriatal projection does not decussate via the thalamus. It is suggested that this pathway decussates in the ventral mesencephalon.
多项研究已证实存在连接双侧锥体外系的交叉通路。本研究通过观察矢状位丘脑横断对苯丙胺诱导的大鼠旋转的影响,评估了丘脑在黑质纹状体功能半球间控制中的作用。丘脑横断对净旋转不对称性的影响与假手术的影响无差异。此外,横断并不影响优势半球黑质随后损伤所诱导的旋转不对称性。横断未能影响旋转不对称性表明,要么半球间通路不控制锥体外系不对称性,要么交叉发生在丘脑之外。在另一组大鼠中,丘脑横断并未中断通过注入对侧尾状核的辣根过氧化物酶对黑质和腹侧被盖区中躯体的逆行标记。因此,交叉的黑质纹状体投射并不通过丘脑交叉。提示该通路在腹侧中脑交叉。