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Language serves as a bridge between ideas and communication, influencing how individuals perceive and interact with the world. Psychologists have long debated whether language shapes thought or vice versa. This discussion gained grip with Edward Sapir and Benjamin Lee Whorf in the 1940s, who proposed that language determines thought, a concept known as linguistic determinism. They suggested that the vocabulary and structure of a language influence how its speakers think and perceive reality.
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Children master language quickly and with relative ease, supported by both biological predisposition and reinforcement. B. F. Skinner (1957) proposed that language is learned through reinforcement, while Noam Chomsky (1965) argued that language acquisition mechanisms are biologically determined.
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Brain lateralization refers to the division of mental processes and functions between the two hemispheres of the brain, a phenomenon that optimizes neural efficiency and underpins complex abilities in humans. This specialization allows each hemisphere to perform tasks where it has a comparative advantage, facilitating more refined cognitive capabilities across different domains.
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Language is a unique communication system that uses words and systematic rules to organize and transmit information. Unlike other forms of communication, which may involve postures, movements, odors, or vocalizations, language relies on symbols and grammar. This makes human communication distinct from that of other species, who also communicate but do not use language in the same way humans do.
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Language, whether spoken, signed, or written, consists of specific components: lexicon and grammar. The lexicon is the vocabulary of a language, comprising its words. Grammar is the set of rules used to convey meaning through the lexicon. For example, English grammar adds “-ed” to most verbs to indicate past tense. Words are formed by combining phonemes, which are the basic sound units of a language. Different languages have different sets of phonemes (e.g., “ah” vs.
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Related Experiment Video

Updated: Dec 23, 2025

Measuring Statistical Learning Across Modalities and Domains in School-Aged Children Via an Online Platform and Neuroimaging Techniques
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Exploring and Exploiting Uncertainty: Statistical Learning Ability Affects How We Learn to Process Language Along

Dagmar Divjak1, Petar Milin2

  • 1Department of Modern Languages & Department of English Language and Linguistics, The University of Birmingham.

Cognitive Science
|April 29, 2020
PubMed
Summary
This summary is machine-generated.

Individual differences in statistical pattern learning impact language processing and reading speed. Content-sensitive learners explore more patterns initially, optimizing reading performance by leveraging learned linguistic co-occurrences.

Keywords:
Exploration-exploitationIndividual differencesMorphologyStatistical learningSyntax

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Area of Science:

  • Cognitive Science
  • Psycholinguistics
  • Computational Linguistics

Background:

  • The influence of pattern learning on language processing is established.
  • Its effect on exploratory behavior in language tasks remains under-explored.

Purpose of the Study:

  • Investigate how individual differences in statistical pattern learning affect language processing and reading.
  • Examine the relationship between pattern learning and exploration/exploitation strategies in reading.

Main Methods:

  • Analyzed data from healthy monolingual adults.
  • Utilized a serial reaction time task and a self-paced reading task.
  • Applied concepts from Reinforcement Learning (exploration/exploitation).

Main Results:

  • Individual pattern learning ability correlates with sensitivity to linguistic co-occurrences (morphological, syntactic).
  • Content-sensitive learners show faster reading with more probable co-occurrence patterns.
  • Content-sensitive learners initially explore a wider range of relevant patterns.

Conclusions:

  • Statistical pattern learning influences readers' knowledge of linguistic patterns.
  • Pattern learning affects exploratory behavior, impacting information gathering and exploitation.
  • This enhances the overall effect of pattern learning on language cognition.