ISSN 1671-3710
CN 11-4766/R
主办:中国科学院心理研究所
出版:科学出版社

心理科学进展 ›› 2026, Vol. 34 ›› Issue (9): 1663-1683.doi: 10.3724/SP.J.1042.2026.1663 cstr: 32111.14.2026.1663

• 研究前沿 • 上一篇    下一篇

生命性检测器:生命性感知的内嵌性

赵佩琼1,2, 董岩鑫1, 陈冠初1, 文生俊3, 尹军4, 陈巍1,2, 董达1,2   

  1. 1绍兴大学心理学系;
    2绍兴大学大脑、心智与教育研究中心, 浙江 绍兴 312000;
    3中国科学院广州生物与健康研究院, 广州 510530;
    4宁波大学心理学系暨研究所, 浙江 宁波 315211
  • 收稿日期:2025-09-12 出版日期:2026-09-15 发布日期:2026-07-20
  • 基金资助:
    教育部哲学社会科学重大课题攻关项目(2025JZDZ023)、浙江省哲学社会科学领军人才培育重大专项课题(青年英才培育) (23QNYC19ZD)、国家社科基金重大项目(2022&ZD034)、国家自然科学基金面上项目(32371090)资助

The animacy detectors: The embeddedness of animacy perception

ZHAO Peiqiong1,2, DONG Yanxin1, CHEN Guanchu1, WEN Junsheng3, YIN Jun4, CHEN Wei1,2, DONG Da1,2   

  1. 1Department of Psychology, Shaoxing University, Shaoxing 312000, China;
    2Center for Brain, Mind and Education, Shaoxing University, Shaoxing 312000, China;
    3Guangzhou Institutes of Biomedicine and Health, Chinese Academy of Sciences, Guangzhou 510530, China;
    4Department of Psychology, Ningbo University, Ningbo 315211, China
  • Received:2025-09-12 Online:2026-09-15 Published:2026-07-20

摘要: 生命在演化过程中是否被内嵌了生命性感知的认知机制,是当前生物运动研究的核心问题之一。“生命检测器假说”(life detector hypothesis, LDH)仅关注动态线索。鉴于静态线索同样能引发生命性感知,本文提出并论证“生命性检测器假说” (animacy detectors hypothesis, ADH) , 即认知主体拥有一个内嵌的核心认知模块,包含对生命体特征敏感的感官过滤器,可同时处理动态与静态线索,将外部对象感知为具有生命性特征的对象,为高级的社会认知及其发展提供认知基础。个体发生学、比较心理学、进化生物学、主体间因素(如经验、发育、意识水平与跨模态之间的相互作用)及环境因素(社会互动及重力环境)的证据支持生命性检测器内嵌的可能性,但仍面临生命性偏好质疑等的挑战。未来研究应关注内嵌性机制的获得方式、加工过程、多感官信息的作用及脑认知机制。此外,神经发育障碍儿童的生命性感知受损,或可成为潜在的生物学标志。

关键词: 生物运动, 生命性感知, 生命检测器, 生命性检测器, 内嵌性, 核心知识

Abstract: Whether animacy perception is embedded as an innate cognitive mechanism shaped by evolutionary adaptation is a central question in contemporary research on biological motion. The influential life detector hypothesis (LDH) has considerably advanced our understanding of how non-configural dynamic cues, such as gravity-congruent foot movements, trigger the perception of animacy. Nevertheless, this hypothesis is constrained by two substantive theoretical limitations. First, the term "life" carries an unfortunate biological connotation; the cognitive system is in fact attuned to the perceptual cues of "animacy" rather than to life as an objective biological property. Second, and more critically, LDH focuses exclusively on dynamic cues and thus fails to account for the robust animacy perception elicited by static cues, including visual features such as faces, postures, and gestures, as well as non-visual static signals like odors, tastes, and pheromones. To address these limitations, this article extends the LDH framework by proposing and substantiating the animacy detectors hypothesis (ADH).
We argue that cognitive agents possess an embedded core cognitive module—a sensory filter highly sensitive to the intrinsic features of living organisms. This "animacy detector" participates in the primary processing of all animacy-related information, responding not only to non-configural, local dynamic cues (e.g., coherent foot movements aligned with gravity) but also to static cues and other life-like stimuli. Operating exclusively at the most fundamental level of the animacy-processing hierarchy, it performs the core functions of detection, attentional orienting, and screening, thereby furnishing the most basic and primordial cognitive foundation for higher-level social cognition and its development. As a cross-species functional module embedded in the brain, the animacy detector is characterized by innateness and spontaneous self-activation, while also being amenable to further development, specialization, and recombination with other functional modules through postnatal learning.
The central theoretical contribution of this article resides in articulating ADH as a distinct cognitive architecture rather than merely describing a hardwired mechanism. Drawing upon the “core knowledge” framework, we define the animacy detector in terms of its embeddedness, which encompasses four interrelated properties: (1) Innateness and early ontogenetic emergence, the mechanism is pre-existing and can be spontaneously activated in neonates and visually naïve animals without prior learning; (2) Domain specificity, it functions as a dedicated input analyzer for animacy cues, exhibiting a degree of informational encapsulation during the initial detection phase; (3) Functional embeddedness, the module does not operate in isolation but instead acts as a front-end, rapid sensory filter that detects, selects, and directs attention toward potential animate targets, thereby supplying the necessary input for downstream specialized systems such as face perception and biological motion processing; (4) Evolutionary conservation, its widespread presence across diverse species implies a highly conserved underlying neural substrate.
Evidence from ontogeny, comparative psychology, and evolutionary biology provides robust empirical support for the animacy detector as a cross-species embedded cognitive module. Human neonates and visually inexperienced animals display spontaneous preferences for faces, self-propelled motion, and biological motion patterns early in life. These parallel cross-species findings, together with the involvement of homologous neural structures, collectively attest to the innate, early-emerging, evolutionarily ancient, and domain-general nature of this mechanism. Concurrently, research on subject-related and environmental factors further corroborates the functional embeddedness of the animacy detector. Variables such as experience, age-related maturation, level of awareness, cross-modal interactions, social engagement, and gravitational shaping all exert modulatory effects on animacy detection capabilities, indicating that this module is deeply integrated into the social cognitive system during ontogeny and exhibits both plasticity and adaptive fine-tuning.
Notwithstanding the multiple lines of evidence supporting the plausibility of an embedded ADH, challenges to the hypothesis remain, particularly with respect to the non-replicability of animacy preference findings. At the same time, this framework delineates several critical directions for future inquiry. It is imperative to disentangle the respective contributions of genetic inheritance and environmental sculpting to the acquisition of the animacy detection mechanism. Moreover, the neural and behavioral integration of multisensory animacy cues—encompassing visual, auditory, and olfactory modalities—constitutes a frontier that warrants further exploration. Finally, elucidating the principles and cognitive-neural underpinnings of the animacy detector holds considerable translational promise for the early diagnosis and intervention of certain neuropsychiatric conditions. Given that impaired social cognition is a core feature of neurodevelopmental disorders such as autism spectrum disorder (ASD) and attention-deficit/hyperactivity disorder (ADHD), future research could leverage animacy detection techniques (e.g., the presentation of faces or biological motion stimuli) to facilitate early identification of these conditions, thereby opening new avenues for timely psychological and social intervention.

Key words: biological motion, animacy perception, life detector, animacy detectors, embeddedness, core knowledge

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