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颞下回神经元在视觉记忆中的作用。II. 与视觉和记忆相关的时间波形相乘。

Role of inferior temporal neurons in visual memory. II. Multiplying temporal waveforms related to vision and memory.

作者信息

Eskandar E N, Optican L M, Richmond B J

机构信息

Laboratory of Sensorimotor Research, National Eye Institute, National Institutes of Health, Bethesda, Maryland 20892.

出版信息

J Neurophysiol. 1992 Oct;68(4):1296-306. doi: 10.1152/jn.1992.68.4.1296.

DOI:10.1152/jn.1992.68.4.1296
PMID:1432085
Abstract
  1. In the companion paper we reported on the activity of neurons in the inferior temporal (IT) cortex during a sequential pattern matching task. In this task a sample stimulus was followed by a test stimulus that was either a match or a nonmatch. Many of the neurons encoded information about the patterns of both current and previous stimuli in the temporal modulation of their responses. 2. A simple information processing model of visual memory can be formed with just four steps: 1) encode the current stimulus; 2) recall the code of a remembered stimulus; 3) compare the two codes; 4) and decide whether they are similar or different. The analysis presented in the first paper suggested that some IT neurons were performing the comparison step of visual memory. 3. We propose that IT neurons participate in the comparison of temporal waveforms related to vision and memory by multiplying them together. This product could form the basis of a crosscorrelation-based comparison. 4. We tested our hypothesis by fitting a simple multiplicative model to data from IT neurons. The model generated waveforms in separate memory and visual channels. The waveforms arising from the two channels were then multiplied on a point by point basis to yield the output waveform. The model was fitted to the actual neuronal data by a gradient descent method to find the best fit waveforms that also had the lowest total energy. 5. The multiplicative model fit the neuronal responses quite well. The multiplicative model made consistently better predictions of the actual response waveforms than did an additive model. Furthermore, the fit was better when the actual relationship between the responses and the sample and test stimuli were preserved than when that relationship was randomized. 6. We infer from the superior fit of the multiplicative model that IT neurons are multiplying temporally modulated waveforms arising from separate visual and memory systems in the comparison step of visual memory.
摘要
  1. 在配套论文中,我们报告了颞下回(IT)皮质神经元在序列模式匹配任务中的活动情况。在该任务中,一个样本刺激之后是一个测试刺激,测试刺激可能是匹配刺激或非匹配刺激。许多神经元在其反应的时间调制中编码了关于当前和先前刺激模式的信息。2. 一个简单的视觉记忆信息处理模型可以通过仅四个步骤形成:1)对当前刺激进行编码;2)回忆一个记忆刺激的代码;3)比较这两个代码;4)并确定它们是相似还是不同。第一篇论文中的分析表明,一些IT神经元正在执行视觉记忆的比较步骤。3. 我们提出,IT神经元通过将与视觉和记忆相关的时间波形相乘来参与它们之间的比较。这个乘积可以构成基于互相关比较的基础。4. 我们通过将一个简单的乘法模型拟合到IT神经元的数据来检验我们的假设。该模型在单独的记忆和视觉通道中生成波形。然后将来自两个通道的波形逐点相乘,以产生输出波形。通过梯度下降法将该模型拟合到实际神经元数据,以找到总能量最低的最佳拟合波形。5. 乘法模型很好地拟合了神经元反应。与加法模型相比,乘法模型对实际反应波形做出了更一致的更好预测。此外,当反应与样本和测试刺激之间的实际关系得以保留时,拟合效果比关系被随机化时更好。6. 从乘法模型的优越拟合中我们推断,在视觉记忆的比较步骤中,IT神经元正在将来自单独视觉和记忆系统的时间调制波形相乘。

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