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一个统一的数学框架,用于编码海马区的时间、空间和序列。

A unified mathematical framework for coding time, space, and sequences in the hippocampal region.

机构信息

Center for Memory and Brain and Department of Psychological and Brain Sciences, Boston University, Boston, Massachusetts 02215, and Department of Neuroscience, State University of New York, Upstate Medical University, Syracuse, New York 13210.

出版信息

J Neurosci. 2014 Mar 26;34(13):4692-707. doi: 10.1523/JNEUROSCI.5808-12.2014.

Abstract

The medial temporal lobe (MTL) is believed to support episodic memory, vivid recollection of a specific event situated in a particular place at a particular time. There is ample neurophysiological evidence that the MTL computes location in allocentric space and more recent evidence that the MTL also codes for time. Space and time represent a similar computational challenge; both are variables that cannot be simply calculated from the immediately available sensory information. We introduce a simple mathematical framework that computes functions of both spatial location and time as special cases of a more general computation. In this framework, experience unfolding in time is encoded via a set of leaky integrators. These leaky integrators encode the Laplace transform of their input. The information contained in the transform can be recovered using an approximation to the inverse Laplace transform. In the temporal domain, the resulting representation reconstructs the temporal history. By integrating movements, the equations give rise to a representation of the path taken to arrive at the present location. By modulating the transform with information about allocentric velocity, the equations code for position of a landmark. Simulated cells show a close correspondence to neurons observed in various regions for all three cases. In the temporal domain, novel secondary analyses of hippocampal time cells verified several qualitative predictions of the model. An integrated representation of spatiotemporal context can be computed by taking conjunctions of these elemental inputs, leading to a correspondence with conjunctive neural representations observed in dorsal CA1.

摘要

内侧颞叶(MTL)被认为支持情景记忆,即生动地回忆特定时间、特定地点的特定事件。有大量神经生理学证据表明,MTL 计算了位置在非定域空间中,最近的证据表明,MTL 也对时间进行了编码。空间和时间代表了类似的计算挑战;两者都是不能简单地从当前可用的感官信息中计算出来的变量。我们引入了一个简单的数学框架,该框架将空间位置和时间的函数作为更一般计算的特例进行计算。在这个框架中,随着时间展开的经验是通过一组漏积分器进行编码的。这些漏积分器对其输入的拉普拉斯变换进行编码。可以使用拉普拉斯逆变换的近似值来恢复变换中包含的信息。在时间域中,得到的表示重建了时间历史。通过整合运动,这些方程产生了到达当前位置的路径的表示。通过用关于非定域速度的信息调制变换,方程对地标位置进行编码。模拟细胞在所有三种情况下都与在各个区域观察到的神经元表现出密切对应。在时间域中,对海马体时间细胞的新的二次分析验证了该模型的几个定性预测。通过对这些基本输入进行并集运算,可以计算出时空上下文的综合表示,从而与背侧 CA1 中观察到的联合神经表示相对应。

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