Suppr超能文献

乌龟中脑顶盖前区的视觉反应与连接性

Visual responses and connectivity in the turtle pretectum.

作者信息

Fan T X, Weber A E, Pickard G E, Faber K M, Ariel M

机构信息

Department of Anatomy and Neurobiology, Saint Louis University, Missouri 63104, USA.

出版信息

J Neurophysiol. 1995 Jun;73(6):2507-21. doi: 10.1152/jn.1995.73.6.2507.

Abstract
  1. Using an isolated turtle brain preparation, we made extracellular spike recordings in the dorsal midbrain during visual stimulation. Single units were isolated by their response to a slow-moving full-field visual pattern imaged on the contralateral retina. This stimulus elicits responses from the basal optic nucleus (BON) and the cerebellar cortex using a similar preparation. Direction and speed tuning were then analyzed, as well as the size and position of the receptive field. 2. In one brain stem region, anterior to the optic tectum and deep to the dorsal surface, all of the visually responsive neurons were direction sensitive (DS) to contralateral retinal stimulation. The location and properties of these cells indicate that they are in the mesencephalic lentiform nucleus (nLM). Anterograde transport of intravitreally injected horseradish peroxidase revealed that this pretectal nucleus receives direct input from the contralateral eye. 3. All but 2 of the 48 cells of the nLM were strongly DS. The most effective stimulus was a slowly moving complex visual pattern that drifted nasally in the contralateral visual field. Brief flashes of spots, patterns, or diffuse light were much less effective. Receptive fields were large and usually (9 of 13 cells) centered in the superior visual field near the horizon and nasal to the blind spot. 4. The visual responses of nLM cells were compared to those of cells in the superficial layers of the optic tectum. In contrast to nLM, the responses of tectal cells were heterogeneous and frequently not DS. Neither tectum or nLM cells had much spontaneous spike activity during darkness or stationary patterns. On the other hand, visual responses of nLM cells were very similar to those of the BON, where neurons also had low spontaneous activity, preferred slow-moving patterns, and were DS. However, nLM and BON exhibit different distributions of preferred directions. Most nLM cells preferred temporal-to-nasal motion, whereas BON cells preferred almost any direction, although few preferred the nasal direction. nLM cell responses were not affected by removal of the ventral brain stem including the BON. 5. The visual properties of nLM cells recorded in vitro were very similar to those that were recorded in intact turtles.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 我们使用分离的龟脑标本,在视觉刺激期间对中脑背侧进行细胞外锋电位记录。通过对在对侧视网膜上成像的缓慢移动的全场视觉模式的反应来分离单个神经元。使用类似的标本,这种刺激可从基底视核(BON)和小脑皮质引发反应。然后分析方向和速度调谐,以及感受野的大小和位置。2. 在脑干的一个区域,位于视顶盖前方且在背表面深处,所有视觉反应神经元对同侧视网膜刺激具有方向敏感性(DS)。这些细胞的位置和特性表明它们位于中脑豆状核(nLM)。玻璃体内注射辣根过氧化物酶的顺行运输显示,这个顶盖前核接受来自对侧眼的直接输入。3. nLM的48个细胞中除2个外均具有强烈的DS。最有效的刺激是在对侧视野中向鼻侧漂移的缓慢移动的复杂视觉模式。点状、图案或漫射光的短暂闪光效果要差得多。感受野很大,通常(13个细胞中的9个)集中在视野上方靠近地平线且在盲点鼻侧的位置。4. 将nLM细胞的视觉反应与视顶盖浅层细胞的反应进行比较。与nLM不同,顶盖细胞的反应是异质的,且通常不具有DS。在黑暗或静止模式下,顶盖或nLM细胞都没有太多的自发锋电位活动。另一方面,nLM细胞的视觉反应与BON的非常相似,BON中的神经元也具有低自发活动,偏好缓慢移动的模式,并且具有DS。然而,nLM和BON表现出不同的偏好方向分布。大多数nLM细胞偏好颞侧到鼻侧的运动,而BON细胞几乎偏好任何方向,尽管很少有偏好鼻侧方向的。去除包括BON在内的腹侧脑干不会影响nLM细胞的反应。5. 在体外记录的nLM细胞的视觉特性与在完整龟中记录的非常相似。(摘要截断于400字)

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