What Lives? A meta-analysis of diverse opinions on the definition of life

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Main Authors: Bender, Reed, Kofman, Karina, Arcas, Blaise Agüera y, Levin, Michael
Format: Preprint
Published: 2025
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author Bender, Reed
Kofman, Karina
Arcas, Blaise Agüera y
Levin, Michael
author_facet Bender, Reed
Kofman, Karina
Arcas, Blaise Agüera y
Levin, Michael
contents The question of "what is life?" has challenged scientists and philosophers for centuries, producing an array of definitions that reflect both the mystery of its emergence and the diversity of disciplinary perspectives brought to bear on the question. Despite significant progress in our understanding of biological systems, psychology, computation, and information theory, no single definition for life has yet achieved universal acceptance. This challenge becomes increasingly urgent as advances in synthetic biology, artificial intelligence, and astrobiology challenge our traditional conceptions of what it means to be alive. We undertook a methodological approach that leverages large language models (LLMs) to analyze a set of definitions of life provided by a curated set of cross-disciplinary experts. We used a novel pairwise correlation analysis to map the definitions into distinct feature vectors, followed by agglomerative clustering, intra-cluster semantic analysis, and t-SNE projection to reveal underlying conceptual archetypes. This methodology revealed a continuous landscape of the themes relating to the definition of life, suggesting that what has historically been approached as a binary taxonomic problem should be instead conceived as differentiated perspectives within a unified conceptual latent space. We offer a new methodological bridge between reductionist and holistic approaches to fundamental questions in science and philosophy, demonstrating how computational semantic analysis can reveal conceptual patterns across disciplinary boundaries, and opening similar pathways for addressing other contested definitional territories across the sciences.
format Preprint
id arxiv_https___arxiv_org_abs_2505_15849
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle What Lives? A meta-analysis of diverse opinions on the definition of life
Bender, Reed
Kofman, Karina
Arcas, Blaise Agüera y
Levin, Michael
Other Quantitative Biology
Artificial Intelligence
Computers and Society
Biomolecules
Cell Behavior
Subcellular Processes
Applications
The question of "what is life?" has challenged scientists and philosophers for centuries, producing an array of definitions that reflect both the mystery of its emergence and the diversity of disciplinary perspectives brought to bear on the question. Despite significant progress in our understanding of biological systems, psychology, computation, and information theory, no single definition for life has yet achieved universal acceptance. This challenge becomes increasingly urgent as advances in synthetic biology, artificial intelligence, and astrobiology challenge our traditional conceptions of what it means to be alive. We undertook a methodological approach that leverages large language models (LLMs) to analyze a set of definitions of life provided by a curated set of cross-disciplinary experts. We used a novel pairwise correlation analysis to map the definitions into distinct feature vectors, followed by agglomerative clustering, intra-cluster semantic analysis, and t-SNE projection to reveal underlying conceptual archetypes. This methodology revealed a continuous landscape of the themes relating to the definition of life, suggesting that what has historically been approached as a binary taxonomic problem should be instead conceived as differentiated perspectives within a unified conceptual latent space. We offer a new methodological bridge between reductionist and holistic approaches to fundamental questions in science and philosophy, demonstrating how computational semantic analysis can reveal conceptual patterns across disciplinary boundaries, and opening similar pathways for addressing other contested definitional territories across the sciences.
title What Lives? A meta-analysis of diverse opinions on the definition of life
topic Other Quantitative Biology
Artificial Intelligence
Computers and Society
Biomolecules
Cell Behavior
Subcellular Processes
Applications
url https://arxiv.org/abs/2505.15849