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Journal ArticleDOI

Neural organization for the long-term memory of paired associates

Kuniyoshi L. Sakai, +1 more
- 14 Nov 1991 - 
- Vol. 354, Iss: 6349, pp 152-155
TLDR
Two types of task-related neurons in the anterior temporal cortex are found, which provide new evidence that single neurons acquire selectivity for visual patterns through associative learning and indicate neural mechanisms for storage and retrieval in the long-term memory of paired associates.
Abstract
Most of our long-term memories of episodes or objects are organized so that we can retrieve them by association. Clinical neuropsychologists assess human memory by the paired-associate learning test, in which a series of paired words or figures is presented and the subject is then asked to retrieve the other pair member associated with each cue. Patients with lesions of the temporal lobe show marked impairment in this test. In our study, we trained monkeys in a pair-association task using a set of computer-generated paired patterns. We found two types of task-related neurons in the anterior temporal cortex. One type selectively responded to both pictures of the paired associates. The other type, which had the strongest response to one picture during the cue presentation, exhibited increasing activity during the delay period when the associate of that picture was used as a cue. These results provide new evidence that single neurons acquire selectivity for visual patterns through associative learning. They also indicate neural mechanisms for storage and retrieval in the long-term memory of paired associates.

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Citations
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Visual feature integration and the temporal correlation hypothesis

TL;DR: The mammalian visual system is endowed with a nearly infinite capacity for the recognition of patterns and objects, but to have acquired this capability the visual system must have solved what is a fundamentally combinatorial prob­ lem.
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Geometric and Electronic Structure/Function Correlations in Non-Heme Iron Enzymes

TL;DR: A detailed molecular mechanism has been proposed for IPNS based on spectroscopic and crystallographic studies and the role of cosubstrate ascorbate is proposed to reduce the toxic peroxo byproduct to water.
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The functional role of the parieto-frontal mirror circuit: interpretations and misinterpretations.

TL;DR: It is concluded that, although there are several mechanisms through which one can understand the behaviour of other individuals, the parieto-frontal mechanism is the only one that allows an individual to understand the action of others 'from the inside' and gives the observer a first-person grasp of the motor goals and intentions of other Individuals.
Journal ArticleDOI

Inferotemporal cortex and object vision.

TL;DR: Cells in area TE of the inferotemporal cortex of the monkey brain selectively respond to various moderately complex object features, and those that cluster in a columnar region that runs perpendicular to the cortical surface respond to similar features.
References
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Journal ArticleDOI

Mnemonic coding of visual space in the monkey's dorsolateral prefrontal cortex

TL;DR: An oculomotor delayed-response task was used to examine the spatial memory functions of neurons in primate prefrontal cortex and found that inhibitory responses were usually strongest for, or centered about, cue directions roughly opposite those optimal for excitatory responses.
Journal ArticleDOI

Fourier Descriptors for Plane Closed Curves

TL;DR: It is established that the Fourier series expansion is optimal and unique with respect to obtaining coefficients insensitive to starting point and the amplitudes are pure form invariants as well as are certain simple functions of phase angles.
Journal ArticleDOI

Primate frontal eye fields. I. Single neurons discharging before saccades

TL;DR: This continuum of visuomovement cells suggests that although visual cells are quite distinct from movement cells, the division of cell types into three classes may be only a heuristic means of describing the processing flow from visual input to eye-movement output.
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