Suppr超能文献

当颞下皮质的部分区域因冷却而受到抑制时视觉任务的表现。

The performance of visual tasks while segments of the inferotemporal cortex are suppressed by cold.

作者信息

Horel J A, Pytko-Joiner D E, Voytko M L, Salsbury K

出版信息

Behav Brain Res. 1987 Jan;23(1):29-42. doi: 10.1016/0166-4328(87)90240-3.

Abstract

Cold was used to suppress the function of subdivisions of the inferotemporal cortex. Three cryodes were placed bilaterally, one over the lower bank of the superior temporal sulcus (sts), one over the middle temporal gyrus (mtg) and one over the inferior temporal gyrus (itg). The animals were tested with delayed match-to-sample (DMS) and simultaneous visual discriminations. The DMS required the animal to recall a projected image of an object over delays of 0, 15, 30 and 45 s. The 3 cryodes were cooled separately during the performance of the DMS and only itg cooling produced a deficit. This was compared to the effects of ablative bilateral lesions; damage to itg but not mtg disrupted performance of DMS. The greatest deficit was in an animal with a small lesion in the ventral pole and anterior extreme of itg. Cooling individual cryodes was without effect on a discrimination between horizontal and vertical stripes, but produced a significant deficit from each of the 3 placements on a discrimination between monkey faces. Chance performance on all visual discriminations resulted from cooling all cryodes. Unilateral cooling of all cryodes produced significant effects on the face discrimination, but there was no significant difference between the two sides in the severity of the deficit.

摘要

采用冷冻法抑制颞下回皮质各亚区的功能。在双侧放置三个冷冻电极,一个置于颞上沟(sts)下壁上方,一个置于颞中回(mtg)上方,一个置于颞下回(itg)上方。对动物进行延迟匹配样本(DMS)和同时视觉辨别测试。DMS要求动物在0、15、30和45秒的延迟后回忆一个投射物体的图像。在进行DMS测试时,分别对三个冷冻电极进行冷却,只有itg冷却会导致缺陷。将此与双侧切除性损伤的效果进行比较;itg损伤而非mtg损伤会破坏DMS的表现。最大的缺陷出现在一只itg腹侧极和前端有小损伤的动物身上。单独冷却各个冷冻电极对水平和垂直条纹的辨别没有影响,但在对猴脸的辨别中,从三个放置位置中的每一个都产生了显著缺陷。对所有冷冻电极进行冷却会导致所有视觉辨别测试的表现处于随机水平。对所有冷冻电极进行单侧冷却对面部辨别产生了显著影响,但两侧缺陷的严重程度没有显著差异。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验