Neuroscientific approaches and applications within anthropology
Datos Bibliográficos
| ID | 8319124 |
|---|---|
| Autores | J K Rilling (0000-0003-4430-1377, Emory University, autor de correspondencia) |
| Año | 2008 |
| Volumen | 137 |
| Número | S47 |
| Páginas | 2-32 |
| Fecha de publicación | 2008-01-01 |
| Peer Reviewed | Sí |
| Open Access | Sí |
| Tipo | ARTICLE |
| Revista | American Journal of Physical Anthropology (JOURNAL) |
| Identificadores de la revista | ISSN: 0002-9483 • E-ISSN: 1096-8644 |
| Editorial | Wiley (PUBLISHER • GB) |
| DOI | 10.1002/ajpa.20947 |
| PMID | 19003891 |
| OpenAlex | W2001226230 |
| Idioma | EN |
| Citas recibidas | 16 |
| Referencias citadas | 214 |
Many of the most distinctive attributes of our species are a product of our brains. To understand the function, development, variability, and evolution of the human brain, we must engage with the field of neuroscience. Neuroscientific methods can be used to investigate research topics that are of special interest to anthropologists, such as the neural bases of primate behavioral diversity, human brain evolution, and human brain development. Traditional neuroscience methods had to rely on investigation of postmortem brains, as well as invasive studies in living nonhuman primates. However, recent neuroimaging methods have made it possible to compare living human and nonhuman primate brains using noninvasive techniques such as structural and functional magnetic resonance imaging, positron emission tomography, and diffusion tensor imaging. These methods are providing an integrated picture of brain structure and function that was not previously available. With a combination of these traditional and modern neuroscience methods, we are beginning to explore and understand the neural bases of some of the most distinctive cognitive and behavioral attributes of the human species, including language, tool use, altruism, and mental self-projection, and we can now begin to propose plausible scenarios by which the neural substrates supporting these human specializations evolved from pre-existing neural circuitry serving related functions in common ancestors we shared with the living nonhuman primates. Consideration of the process of neurodevelopment suggests plausible mechanisms by which the highly encephalized human brain might have evolved. Neurodevelopmental studies also demonstrate that experience can shape both brain structure and function, providing a mechanism by which people of different cultures learn to act and think differently. Finally, not only can anthropologists benefit from neuroscience, neuroscience can benefit from the more sophisticated concept of evolution that anthropology offers, including an appreciation of evolutionary diversity as well as consideration of the process by which the human brain was formed during evolution
Brain function · Cognition · Cognitive science · Cultural neuroscience · Human brain · Neuroimaging · Action Observation and Synchronization · Child and Animal Learning Development · Cognitive Neuroscience · Functional Brain Connectivity Studies · Neuroscience · Psychology
Pontos de Contato' revisitados
Evolution, Cognition, and Performance
Consciousness
Fear, anger and responsibility
Toward Consilience on Indirect Reciprocity
Electrodermal activity during Lower Paleolithic stone tool handling
Neuroarchaeology
An Evolutionary Perspective on Play, Performance, and Ritual
Determining Hominid Handedness in Lithic Debitage
Diploic vessels and computed tomography
A new synthesis
Neuroanthropology and the dialectical imperative
Brain Plasticity and Human Evolution
Neuroanthropology and Its Applications
The State of Biological Anthropology in 2008
Les « points de contact » entre anthropologie et performance
Primate cognition
Chimpanzee Material Culture
Neural Responses to Taxation and Voluntary Giving Reveal Motives for Charitable Donations
Empathy for Pain Involves the Affective but not Sensory Components of Pain
How do you feel? Interoception
A Neural Basis for Social Cooperation
Five Rules for the Evolution of Cooperation
Culture and point of view
The evolutionary neuroscience of tool making
The nature of human altruism
Social support and oxytocin interact to suppress cortisol and subjective responses to psychosocial stress
Washing Away Your Sins
Getting to Know You
Does Rejection Hurt? An fMRI Study of Social Exclusion
Self-projection and the brain
The Neural Basis of Altruistic Punishment
Oxytocin increases trust in humans
Dorsal and ventral streams
The Neural Basis of Economic Decision-Making in the Ultimatum Game
Molecular evolution of Foxp2, a gene involved in speech and language
Cultural variation in eye movements during scene perception
A Neural Substrate of Prediction and Reward
Language within our grasp
An Integrative Theory of Prefrontal Cortex Function
The functional neuroanatomy of the human orbitofrontal cortex
Imitation of Facial and Manual Gestures by Human Neonates
The role of emotion in decision-making
Beautiful Faces Have Variable Reward Value
Interoception
Episodic Memory and Autonoesis
Emotion, Decision Making and the Orbitofrontal Cortex
Empathic neural responses are modulated by the perceived fairness of others
Meta-analyzing left hemisphere language areas
Humans Have Evolved Specialized Skills of Social Cognition
A default mode of brain function
The Evolution of Reciprocal Altruism
The Development of Cognitive Anthropology
Demonic Males
Patterns of Culture
Human and nonhuman primate brains
Brief communication
The social brain hypothesis
Sign Language and the Brain
The neuropsychology of facial expression
The neuropsychology of facial expression
Continuing Investigations into the Stone Tool-making and Tool-using Capabilities of a Bonobo ( )
The Duchenne smile
On the nature and evolution of the neural bases of human language
Hominid brain evolution
The evolution of human speech
A comparative volumetric analysis of the amygdaloid complex and basolateral division in the human and ape brain
Morphological differences between minicolumns in human and nonhuman primate cortex
The failure of the gyrification index (GI) to account for volumetric reorganization in the evolution of the human brain
Hypoglossal Canal Size in Living Hominoids and the Evolution of Human Speech
The evolution of the frontal lobes
The brain and its main anatomical subdivisions in living hominoids using magnetic resonance imaging
A quantitative morphometric comparative analysis of the primate temporal lobe
Expansion of the neocerebellum in Hominoidea
Neural connectivity and cortical substrates of cognition in hominoids
The primate neocortex in comparative perspective using magnetic resonance imaging
Volumetric comparisons in the cerebellar complex of anthropoids, with special reference to locomotor types
Demography and Cultural Evolution
Cognitive Evolution in Primates
The Human Primate
Chimpanzee and Human Cultures
| Obras citantes distintas | 16 |
|---|---|
| Citas por año | 0,94 |
| Intervalo de citas | 2009 - 2023 (15) |
| Velocidad de citación | historical |
| Altamente citado | No |
| Tipos de cita | Neutras: 15 |