DEVELOPMENT OF COMPLEX RETINAL FIELDS
复杂视网膜区域的发育
基本信息
- 批准号:6500653
- 负责人:
- 金额:$ 13.41万
- 依托单位:
- 依托单位国家:美国
- 项目类别:
- 财政年份:1996
- 资助国家:美国
- 起止时间:1996-12-01 至 2003-03-31
- 项目状态:已结题
- 来源:
- 关键词:Chelonia acetylcholine brain electrical activity calcium metabolism cobalt computer simulation dark adaptation dendrites developmental neurobiology electronic recording system fluorescence microscopy histology imaging /visualization /scanning infrared microscopy neostigmine neural information processing neuropharmacology potassium retina retinal ganglion synapses visual fields visual pathways visual stimulus
项目摘要
The long-term objective of the proposed research is to understand what
processes contribute to the development of image information processing in
the retinas of embryos and neonatal animals. This basic research could
have important implications for future cure of genetic diseases of the
retina. To achieve the objectives of the research, a theoretical
framework was proposed, which shows how dendritic growth, light exposure,
and spontaneous waves of activity (common to immature isolated retinas,
but as yet not studied in vivo) can contribute to the development of
retinal information processing. The specific questions being asked are:
1) Do developing retinas have spontaneous waves of activity in vivo? If
so, what are the properties of this activity? To answer these questions,
the eyes of developing turtles will be recorded with two electrodes
simultaneously and the results analyzed with a new mathematical technique.
The experiments will be performed under normal conditions and visually-
and pharmacologically-abnormal ones. The data will then be compared to
computer simulations performed with the theoretical framework.
2) Are spontaneous waves mediated by extracellular potassium and
cholinergic synapses? To answer this question, a new technique for
optically imaging Ca2+ in ganglion cells will be used. This technique
will allow to obtain the waves' spatio-temporal profile across cells and
thus, to test the predictions made by a recent model of these waves. In
particular, this model predicts the effects of neostigmine, a
cholinesterase inhibitor, Cs+ and TEA, two K+-currents blockers, and Co2+,
a synaptic blocker.
3) Does spontaneous activity contribute to the development of receptive-
field size and orientation selectivity? To test whether waves contribute
to the development of these properties, a technique to implant
intraocularly a piece of polymer that slowly releases drugs mixed with it
was developed. In the proposed experiments, the drugs will be neostigmine
and Co2+. Incidence of orientation selectivity and receptive-field size
will be measured for each of these conditions as a function of age, and
the results compared to those of new computer simulations.
这项拟议研究的长期目标是了解
处理过程有助于图像信息处理的发展
胚胎和新生动物的视网膜。这项基础研究可能
对未来人类遗传性疾病的治疗具有重要意义
视网膜。为达到研究目的,提出了一种理论上的
框架被提出,它展示了树枝状生长,光照,
和自发的活动波(未成熟的孤立视网膜常见,
但尚未在体内进行研究)可促进
视网膜信息处理。提出的具体问题如下:
1)发育中的视网膜在体内有自发波活动吗?如果
那么,这项活动的性质是什么呢?要回答这些问题,
发育中的海龟的眼睛将用两个电极记录
同时用一种新的数学方法对结果进行了分析。
这些实验将在正常条件下进行,并在视觉上-
以及药理上不正常的。然后将数据与
在理论框架下进行了计算机模拟。
2)是由细胞外钾介导的自发波
胆碱能突触?为了回答这个问题,一种新的技术
将使用光学成像技术在神经节细胞内进行钙离子成像。这项技术
将允许获得横跨细胞的波的时空分布以及
因此,为了检验这些波的最新模型所做的预测。在……里面
特别是,这个模型预测了新斯的明的效果,
胆碱酯酶抑制剂Cs+和TEA,两种K+电流阻滞剂,以及Co2+,
一种突触阻滞剂。
3)自发活动是否有助于发展接受性--
场大小和取向选择性?测试海浪是否会对
对于这些特性的发展,一种植入技术
眼内一种聚合物,可以缓慢地释放与之混合的药物
是发展起来的。在拟议的实验中,这些药物将是新斯的明
和Co2+。定向选择性与感受野大小的关系
将作为年龄的函数来测量这些条件中的每一种
结果与新的计算机模拟结果进行了比较。
项目成果
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