Neural mechanisms of color
Neural mechanisms of color
批准号:
9008216
负责人:
Bevil R Conway
金额:
$21.05万
依托单位国家:
美国
项目类别:
财政年份:
2013
资助国家:
美国
项目状态:
已结题
起止时间:
2013-09-01 至 2018-07-31
中文摘要
描述(由申请人提供):尽管大脑编码颜色信号的步骤相对较好地理解,但令人惊讶的是,对解码这些信号以产生颜色感知的神经计算知之甚少。一个线索来自恒河猴的下颞叶皮层(IT)损伤,导致颜色感知的严重丧失。使用fMRI引导的猴子单单位记录,我们发现了一个IT模块系统,可能在代表颜色方面发挥重要作用,并且可能是人类颜色区域的同源物。人们对颜色模块与IT其他部分的关系知之甚少,就像它们内部的神经活动与感知之间的联系一样。相比之下,人类的感知色彩机制已被广泛研究,产生了许多假设,可以在猴子中进行测试,记录针对颜色模块。但目前尚不清楚这两个物种是否拥有类似的心理物理色彩机制,这对该领域的进展构成了关键障碍。我们的首要目标是克服这一障碍,并使用fMRI引导的微电极记录参与颜色任务的训练有素的猴子的IT来揭示颜色感知的神经计算。中心的假设,大量的初步数据的基础上,是猴子拥有的基数和高阶彩色机制类似于人类,这些机制是实现的基本转换,最终在专门的IT颜色模块内的感知颜色空间的表示。该提案包括三个目标。首先,我们将修改猴子的经典范例,用于揭示人类的心理物理色彩机制。其次,我们将使用功能磁共振成像来确定模块专门用于颜色和功能连接的程度。第三,我们将首次解决后IT的颜色细胞活动与颜色辨别行为之间的联系,使用信号检测理论从动物执行颜色任务时获得的神经记录中计算选择概率估计。实现该提案的目标将有助于我们朝着理解颜色感知基础计算的长期目标迈出下一步,包括构建一个生理上合理的颜色模型。这项研究将为神经回路功能的一般原理提供信息,这对于理解精神疾病和神经系统疾病的病因,诊断和治疗至关重要;并将指导绕过眼睛的视觉障碍治疗,并利用那些在失明中幸存的主要损伤的皮层计算。
英文摘要
DESCRIPTION (provided by applicant): Although the steps by which the brain encodes color signals are relatively well understood, surprisingly little is known about the neural computations that decode these signals to yield color percepts. One hint comes from lesions of inferior temporal cortex (IT) in rhesus monkeys that cause a profound loss of color perception. Using fMRI-guided single-unit recording in monkeys, we found a system of IT modules that likely play an important role in representing color and are the probable homologue of color regions in humans. The relationship of the color modules to the rest of IT is poorly understood, as is the link between the neural activity within them and perception. By contrast, perceptual chromatic mechanisms in humans have been studied extensively, giving rise to many hypotheses that could be tested in monkeys with recordings targeted to the color modules. But it is unknown whether the two species possess similar psychophysical chromatic mechanisms, imposing a critical barrier to progress in the field. Our overarching aim is to overcome this obstacle and to uncover the neural computations for color perception using fMRI-guided microelectrode recording of IT in trained monkeys engaged in color tasks. The central hypothesis, based on substantial preliminary data, is that monkeys possess both cardinal and higher-order chromatic mechanisms similar to humans; and that these mechanisms are implemented by essential transformations that culminate in the representation of perceptual color space within specialized IT color modules. The proposal consists of three aims. First, we will modify for monkeys the classic paradigm used to reveal psychophysical chromatic mechanisms in humans. Second, we will use fMRI to determine the extent to which the modules are specialized for color and functionally connected. Third, we will address for the first time the link from color-cell activityin posterior IT to color-discrimination behavior, using signal-detection theory to compute choice-probability estimates from neural recordings obtained while animals perform a color task. Achieving the proposal's aims will facilitate the next logical steps toward our long-term goal of understanding the computations underlying color perception, including the construction of a physiologically plausible model of color. The research will inform general principles of neural circuit function, which is critical for understanding the etiology, diagnosis and treatment of mental illness and neurological disease; and will guide treatments for visual impairment that bypass the eye and exploit those cortical computations that survive the primary insult in blindness.
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Neural mechanisms of color
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批准号:8595559
-
项目类别:
-
资助金额:$36.85万
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财政年份:2013
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负责人:Bevil R Conway
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依托单位:
Neural mechanisms of color
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批准号:8723230
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项目类别:
-
资助金额:$15.06万
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财政年份:2013
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负责人:Bevil R Conway
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依托单位:
Neural mechanisms of color
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批准号:8929251
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项目类别:
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资助金额:$38.22万
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财政年份:2013
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负责人:Bevil R Conway
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依托单位:
国内基金
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