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鸽子(家鸽)的视动性眼震。II. 辅助视系统(AOS)顶盖前核的作用。

Optokinetic nystagmus in the pigeon (Columba livia). II. Role of the pretectal nucleus of the accessory optic system (AOS).

作者信息

Gioanni H, Rey J, Villalobos J, Richard D, Dalbera A

出版信息

Exp Brain Res. 1983;50(2-3):237-47. doi: 10.1007/BF00239188.

Abstract

In birds, the accessory optic system (AOS) includes two nuclei: the nucleus ectomamillaris (nEM) and the pretectal nucleus superficialis synencephali (nSS). The role of the nSS in the production of a horizontal optokinetic nystagmus (OKN) was studied in the pigeon, by comparing the OKN before and after a unilateral lesion of this nucleus. The lesions were performed either by electrolysis or by local application of kainic acid (KA); the KA lesions gave more stable modifications of the OKN than the electrolytic lesions. A quantitative analysis of the slow-phase velocity (V) of the OKN was carried out on the animals receiving KA lesions. Lesion of the nSS provokes the almost total disappearance of the OKN for stimulation of the contralateral eye in the temporo-nasal direction, and a reduction of the OKN for stimulation in the naso-temporal direction. Thus, the nSS is essential for the production of the OKN in the temporo-nasal direction, but it also participates in the production of the OKN in the naso-temporal direction (slow-phase direction). The same lesion produces a large increase of the OKN (V) when the ipsilateral eye is stimulated in the temporo-nasal direction, and a smaller increase following stimulation in the naso-temporal direction. These increases suggest some kind of inhibitory (or disfacilitatory) interactions between the nSS (or the associated system) on one side, and the contralateral optokinetic centers. The lesion of one nSS does not provoke a deficit when the stimulation is binocular. This result probably reflects the combined effect of both monocular inputs. After a pretectal KA injection, a spontaneous nystagmus of the contralateral eye, in the naso-temporal direction, can be seen for several hours. The mechanism is still unknown, but it might be related to a reverse optokinetic after nystagmus (R-OKAN). The anatomical and physiological data so far available consistently support the hypothesis of a functional equivalence between the nSS in birds and the nucleus of the optic tract in mammals.

摘要

在鸟类中,附属视觉系统(AOS)包括两个核团:乳头外核(nEM)和前顶盖联合脑浅核(nSS)。通过比较该核团单侧损伤前后的水平视动性眼震(OKN),研究了nSS在鸽子产生水平视动性眼震中的作用。损伤通过电解或局部应用 kainic 酸(KA)进行;KA 损伤比电解损伤对视动性眼震产生更稳定的改变。对接受 KA 损伤的动物进行了视动性眼震慢相速度(V)的定量分析。nSS 损伤会导致在颞鼻方向刺激对侧眼时视动性眼震几乎完全消失,而在鼻颞方向刺激时视动性眼震减弱。因此,nSS 对于颞鼻方向视动性眼震的产生至关重要,但它也参与鼻颞方向(慢相方向)视动性眼震的产生。当同侧眼在颞鼻方向受到刺激时,相同的损伤会使视动性眼震(V)大幅增加,而在鼻颞方向刺激后增加幅度较小。这些增加表明一侧的 nSS(或相关系统)与对侧视动中枢之间存在某种抑制性(或去易化性)相互作用。当双眼受到刺激时,一侧 nSS 的损伤不会导致缺陷。这一结果可能反映了单眼输入的综合作用。在前顶盖注射 KA 后,在数小时内可观察到对侧眼出现鼻颞方向的自发性眼震。其机制尚不清楚,但可能与反向视动性眼震后眼震(R-OKAN)有关。目前可得的解剖学和生理学数据一致支持鸟类的 nSS 与哺乳动物的视束核在功能上等效的假说。

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