Memory for stimulus sequences: a divide between humans and other animals?

Author:

Ghirlanda Stefano123ORCID,Lind Johan3,Enquist Magnus34

Affiliation:

1. Department of Psychology, Brooklyn College, Brooklyn, NY, USA

2. Departments of Psychology and Biology, Graduate Center of the City University of New York, New York, NY, USA

3. Centre for the Study of Cultural Evolution, Stockholm University, Stockholm, Sweden

4. Department of Zoology, Stockholm University, Stockholm, Sweden

Abstract

Humans stand out among animals for their unique capacities in domains such as language, culture and imitation, yet it has been difficult to identify cognitive elements that are specifically human. Most research has focused on how information is processed after it is acquired, e.g. in problem solving or ‘insight’ tasks, but we may also look for species differences in the initial acquisition and coding of information. Here, we show that non-human species have only a limited capacity to discriminate ordered sequences of stimuli. Collating data from 108 experiments on stimulus sequence discrimination (1540 data points from 14 bird and mammal species), we demonstrate pervasive and systematic errors, such as confusing a red–green sequence of lights with green–red and green–green sequences. These errors can persist after thousands of learning trials in tasks that humans learn to near perfection within tens of trials. To elucidate the causes of such poor performance, we formulate and test a mathematical model of non-human sequence discrimination, assuming that animals represent sequences as unstructured collections of memory traces. This representation carries only approximate information about stimulus duration, recency, order and frequency, yet our model predicts non-human performance with a 5.9% mean absolute error across 68 datasets. Because human-level cognition requires more accurate encoding of sequential information than afforded by memory traces, we conclude that improved coding of sequential information is a key cognitive element that may set humans apart from other animals.

Funder

Knut och Alice Wallenbergs Stiftelse

Graduate Center

Publisher

The Royal Society

Subject

Multidisciplinary

Reference59 articles.

1. Thalgard P. 2014 Cognitive science. In The Stanford Encyclopedia of Philosophy (ed. EN Zalta). Fall 2014 edn. Stanford CA: The Metaphysics Research Lab Center for the Study of Language and Information Stanford University.

2. Working Memory, its Executive Functions, and the Emergence of Modern Thinking

3. The Neural Representation of Sequences: From Transition Probabilities to Algebraic Patterns and Linguistic Trees

4. A Search for Tonal Pattern Perception in Cebus Monkeys: Why Monkeys Can't Hum a Tune

5. Darwin's mistake: Explaining the discontinuity between human and nonhuman minds

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