A fundamental goal of system neuroscience is to understand how the brain processes sensory information. In this project we go beyond the classical open-loop approach and study the visual system in a closed-loop manner by using advanced optimization algori
A fundamental goal of system neuroscience is to understand how the brain processes sensory information. In this project we go beyond the classical open-loop approach and study the visual system in a closed-loop manner by using advanced optimization algori
批准号:
214627469
负责人:
Dr. Jens Kremkow
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Research Fellowships
财政年份:
2012
资助国家:
德国
项目状态:
已结题
起止时间:
2011-12-31 至 2013-12-31
中文摘要
系统神经科学的一个基本目标是了解大脑是如何处理感觉信息的。然而,经过几十年的研究,我们仍然没有能够完全捕捉初级视觉皮层神经元反应选择性的模型,目前利用线性系统理论的开环方法在表征初级视觉皮质中普遍存在的神经元类型--非线性神经元方面存在不足。此外,关于刺激如何在单个神经元和/或神经元群体的活动中编码的讨论也是有争议的。对非线性神经元的表征和对单个神经元与群体活动之间关系的更好的理解将极大地促进我们对初级视觉皮质和总体皮质功能的了解。超越经典的开环方法,以闭环的方式修改基于神经元反应的刺激是解决这些问题的关键。进化计算领域的进步已经产生了强大的优化算法,例如利用群体智能的算法。这些算法可以处理高维参数空间和表现出多峰参数分布和自适应的非线性和噪声目标函数。因此,它们非常适合于基于神经元反应来优化视觉刺激。在本项目中,我们将以闭环的方式研究单个神经元和神经元群体。我们将使用优化算法来构造基于单个神经元反馈的最优刺激集成。这将使我们能够研究单个神经元的属性及其与嵌入群体的关系,并促进我们对感觉处理原理的了解。
英文摘要
A fundamental goal of system neuroscience is to understand how the brain processes sensory information. Yet, after decades of research we still do not have models that can completely capture the response selectivity of neurons in primary visual cortex.Current open-loop methods that make use linear-system theory fall short in characterizing non-linear neurons, the prevailing neuron type in the primary visual cortex. Furthermore, it is controversial discussed how stimuli are encoded in the activity of single neurons and/or populations of neurons. Characterization of non-linear neurons and a better understanding of the relationship between single neuron and population activity would greatly advance our knowledge about the function of the primary visual cortex and cortex in general.Going beyond the classical open-loop approach by modifying the stimulus based on the neuronal responses in a closed-loop way is the key to these questions. Advances in the field of evolutionary computation have produced powerful optimization algorithms, e.g. algorithms that make use of swarm intelligence. These algorithms can cope with high dimensional parameter spaces and non-linear and noisy objective functions that show multimodal parameter distributions and adaptation. Thus they are very suited to optimize visual stimuli based on neuronal responses.In this project we will study single neurons and populations of neurons in a closed-loop fashion. We will use the optimization algorithms to construct optimal stimulus ensembles based on feedback of single neurons. This will allow us to investigate single neuron properties and their relationship to the embedding population and advance our knowledge about the principles of sensory processing.
期刊论文(3)
专著(0)
科研奖励(0)
会议论文
The role of GABAergic interneurons in mouse superior colliculus in visual processing and visually guided behaviours
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批准号:522282084
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项目类别:Research Grants
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资助金额:$0.0万
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财政年份:--
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负责人:Dr. Jens Kremkow
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依托单位:
Visual motor processing in retino-collicular and cortico-collicular circuits
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批准号:348229062
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项目类别:Independent Junior Research Groups
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资助金额:$0.0万
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财政年份:--
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负责人:Dr. Jens Kremkow
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依托单位:
海外基金