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Related Concept Videos

Language01:16

Language

921
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.
Corballis and Suddendorf (2007) and Tomasello and Rakoczy (2003) highlight the role of language in...
921
Components of Language01:24

Components of Language

830
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.
830
Language Development01:22

Language Development

936
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.
The critical period for language acquisition suggests that the ability to acquire language is at its peak early in life. As people age, this proficiency decreases. Language development begins very...
936
Language and Cognition01:27

Language and Cognition

812
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.
812
Polymer Classification: Architecture01:14

Polymer Classification: Architecture

3.9K
Polymers are classified as linear or branched on the basis of their chain architecture. The polymer chains in linear polymers have a long chain-like structure with minimal to no branching at all. Even if a polymer features large substituent groups on the monomer, which appear as branches to the skeleton, it is not considered a branched polymer. A branched polymer contains secondary polymer chains that arise from the main polymer chain. The branching occurs when the polymer growth shifts from...
3.9K
Higher Mental Functions of the Brain: Language01:10

Higher Mental Functions of the Brain: Language

3.9K
Language is a system of communication that allows the expression of thoughts, ideas, and feelings. The brain processes language in both hemispheres.
Language formation and comprehension take place in the dominant hemisphere. The dominant hemisphere is responsible for understanding the meaning of spoken, written, or sign language, as well as the ability to communicate. For most people, the left hemisphere is the dominant one. The right hemisphere, then, gives tone and emotional context to the...
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Related Experiment Video

Updated: Feb 13, 2026

Fast and Efficient Expression of Multiple Proteins in Avian Embryos Using mRNA Electroporation
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Hyena architecture enables fast and efficient protein language modeling.

Yiming Zhang1, Bian Bian2,3,4, Manabu Okumura1

  • 1Department of Information and Communications Engineering School of Engineering, Institute of Science Tokyo Yokohama Japan.

Imetaomics
|February 12, 2026
PubMed
Summary

ProtHyena, a novel protein language model, uses the Hyena operator to overcome Transformer limitations. This approach achieves state-of-the-art results in 8 tasks with reduced computational complexity and fewer parameters.

Keywords:
Hyena architectureprotein language modelprotein pre‐training

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Area of Science:

  • Computational biology
  • Bioinformatics
  • Machine learning

Background:

  • Deep learning models, particularly Transformers, have advanced biological sequence analysis.
  • Transformer models face computational bottlenecks due to the attention mechanism's quadratic complexity (O(L^2)).
  • High computational costs limit the efficiency of current models for large biological datasets.

Purpose of the Study:

  • To introduce ProtHyena, an efficient protein language model.
  • To address the computational limitations of Transformer-based models in protein sequence analysis.
  • To develop a model with subquadratic complexity for faster and more memory-efficient protein modeling.

Main Methods:

  • Utilized the Hyena operator, alternating subquadratic long convolutions with element-wise gating.
  • Implemented an architecture that circumvents attention mechanisms.
  • Developed a model with only 1.6 million parameters.

Main Results:

  • Achieved state-of-the-art and comparable performance across 8 diverse downstream tasks.
  • Demonstrated significant reductions in computational complexity to subquadratic levels.
  • Enabled faster and more memory-efficient protein sequence modeling.

Conclusions:

  • ProtHyena offers a highly efficient solution for protein language modeling.
  • The Hyena operator effectively overcomes Transformer limitations in biological sequence analysis.
  • ProtHyena presents a promising approach for rapid and efficient protein sequence analysis.