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切除大鼠内侧无颗粒皮质和顶叶后皮质会导致其出现多感觉忽视。

Disconnection of medial agranular and posterior parietal cortex produces multimodal neglect in rats.

作者信息

Burcham K J, Corwin J V, Stoll M L, Reep R L

机构信息

Department of Psychology, Northern Illinois University, DeKalb 60115, USA.

出版信息

Behav Brain Res. 1997 Jun;86(1):41-7. doi: 10.1016/s0166-4328(96)02241-3.

Abstract

Two cortical areas in rats have been found to be important in directed attention and spatial processing: the medial agranular cortex (AGm), the rodent analog of the frontal eye fields; and the posterior parietal cortex (PPC), the rodent analog of area 7 in primates. As in primates, unilateral destruction of either of these cortical association areas produces severe contralesional neglect of visual, auditory, and tactile stimulation. AGm and PPC are reciprocally interconnected by longitudinally oriented axons traveling in layer VI of the cortex. Their trajectory provides a unique opportunity to examine the effects of disconnection of these two areas. The key question is whether these two regions function independently or as components of a cortical network for directed attention. Unilateral disconnection of the PPC and AGm was achieved via transverse knife-cuts extending through layer VI of cortex, and the disconnection verified by tract-tracing methods. The knife-cuts produced severe multimodal neglect and allesthesia/allokinesia. The deficits produced by the knife-cuts were virtually identical to those produced by unilateral destruction of these regions. The control operates, which received knife-cuts that spared the interconnections between the AGm and PPC, were unimpaired. The results indicate that AGm and PPC in rats function as parts of a cortical system for directed attention.

摘要

研究发现,大鼠的两个皮质区域在定向注意力和空间处理方面起着重要作用:内侧无颗粒皮质(AGm),相当于啮齿动物的额叶眼区;以及顶叶后皮质(PPC),相当于灵长类动物7区的啮齿动物对应区域。与灵长类动物一样,单侧破坏这两个皮质联合区域中的任何一个,都会导致对视觉、听觉和触觉刺激的严重对侧忽视。AGm和PPC通过在皮质第VI层中纵向走行的轴突相互连接。它们的轨迹为研究这两个区域断开连接的影响提供了独特的机会。关键问题是这两个区域是独立发挥作用,还是作为定向注意力皮质网络的组成部分发挥作用。通过延伸穿过皮质第VI层的横向刀割实现PPC和AGm的单侧断开连接,并通过束路追踪方法验证断开连接。刀割导致严重的多模态忽视和异感觉/异运动症。刀割造成的缺陷与单侧破坏这些区域所产生的缺陷几乎相同。接受了保留AGm和PPC之间连接的刀割的对照手术组未出现损伤。结果表明,大鼠的AGm和PPC作为定向注意力皮质系统的一部分发挥作用。

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