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Neuronal Population Decoding Explains the Change in Signal Detection Sensitivity Caused by Task-Irrelevant Perceptual Bias

机译:神经元人口的解码解释了任务任务诱导的感性偏见引起的信号检测灵敏度的变化。

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摘要

Spatiotemporal context in sensory stimulus has profound effects on neural responses and perception, and it sometimes affects task difficulty. Recently reported experimental data suggest that human detection sensitivity to motion in a target stimulus can be enhanced by adding a slow surrounding motion in an orthogonal direction, even though the illusory motion component caused by the surround is not relevant to the task. It is not computationally clear how the task-irrelevant component of motion modulates the subject's sensitivity to motion detection. In this study, we investigated the effects of encoding biases on detection performance by modeling the stochastic neural population activities. We modeled two types of modulation on the population activity profiles caused by a contextual stimulus: one type is identical to the activity evoked by a physical change in the stimulus, and the other is expressed more simply in terms of response gain modulation. For both encoding schemes, the motion detection performance of the ideal observer is enhanced byrna task-irrelevant, additive motion component, replicating the properties observed for real subjects. The success of these models suggests that human detection sensitivity can be characterized by a noisy neural encoding that limits the resolution of information transmission in the cortical visual processing pathway. On the other hand, analyses of the neuronal contributions to the task predict that the effective cell populations differ between the two encoding schemes, posing a question concerning the decoding schemes that the nervous system used during illusory states.
机译:感觉刺激的时空背景对神经反应和知觉有深远的影响,有时会影响工作难度。最近报道的实验数据表明,即使由周围环境引起的错觉运动分量与任务无关,也可以通过在正交方向上添加缓慢的周围运动来增强人体对目标刺激运动的检测灵敏度。目前尚不清楚计算中与任务无关的部分如何调节对象对运动检测的敏感性。在这项研究中,我们通过对随机神经种群活动进行建模,研究了编码偏差对检测性能的影响。我们对由上下文刺激引起的种群活动概况建模了两种类型的调制:一种类型与刺激物理变化所引起的活动相同,另一种类型则更简单地表示为响应增益调制。对于这两种编码方案,理想的观察者的运动检测性能都通过与任务无关的附加运动分量得以增强,从而复制了对真实对象观察到的特性。这些模型的成功表明,人类检测灵敏度的特征在于嘈杂的神经编码,从而限制了皮质视觉处理途径中信息传递的分辨率。另一方面,对神经元对任务的贡献的分析预测,两种编码方案之间的有效细胞数量有所不同,这引起了有关神经系统在幻觉状态下使用的解码方案的问题。

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  • 来源
    《Neural computation》 |2010年第10期|p.2586-2614|共29页
  • 作者单位

    Department of Complexity Science and Engineering, University of Tokyo, Kashiwa City, Chiba 277-8561 Japan Nagano Station, Japan Broadcasting Corporation, Nagano City, Nagano 380-8502, Japan;

    rnDepartment of Life Sciences, University of Tokyo, Komaba, Meguro-ku, Tokyo 153-8902, Japan Japan Society for the Promotion of Science, Tokyo, Japan;

    rnDepartment of Life Sciences, University of Tokyo, Komaba, Meguro-ku, Tokyo 153-8902, Japan;

    rnDepartment of Complexity Science and Engineering, University of Tokyo, Kashiwa City, Chiba 277-8561, Japan Brain Science Institute, RIKEN, Wako City, Saitama 351-0198, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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