947 resultados para primate cognition


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Neurotrypsin is one of the extra-cellular serine proteases that are predominantly expressed in the brain and involved in neuronal development and function. Mutations in humans are associated with autosomal recessive non-syndromic mental retardation (MR). We studied the molecular evolution of neurotrypsin by sequencing the coding region of neurotrypsin in 11 representative non-human primate species covering great apes, lesser apes, Old World monkeys and New World monkeys. Our results demonstrated a strong functional constraint of neurotrypsin that was caused by strong purifying selection during primate evolution, an implication of an essential functional role of neurotrypsin in primate cognition. Further analysis indicated that the purifying selection was in fact acting on the SRCR domains of neurotrypsin, which mediate the binding activity of neurotrypsin to cell surface or extracellular proteins. In addition, by comparing primates with three other mammalian orders, we demonstrated that the absence of the first copy of the SRCR domain (exon 2 and 3) in mouse and rat was due to the deletion of this segment in the murine lineage. Copyright (C) 2005 S. Karger AG, Basel.

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As abordagens analítico-comportamentais da linguagem ainda não conseguiram fornecer um tratamento conceitual e empírico adequado dos comportamentos verbais complexos. Uma proposta funcionalista recente que vem abordando repertórios complexos na aquisição e no desenvolvimento da linguagem é a teoria da aquisição da linguagem baseada no uso, de Tomasello e cols. Esta teoria vem se desenvolvendo no interior de uma análise mais ampla de Tomasello e cols. sobre a evolução da cognição humana. Nesta proposta, a compreensão e o compartilhamento da intencionalidade são elementos-chave para o desenvolvimento cognitivo e linguístico humano. E é justamente o uso do conceito de intencionalidade o que tem produzido as principais críticas a esta proposta, principalmente, enquanto possibilidade de representar um retorno às propostas mentalistas sobre cognição e linguagem. Com base nisso, o presente trabalho procurou: (1) analisar a proposta de Tomasello e cols. sobre a evolução da cognição humana e a relação entre essa proposta e a aquisição e o desenvolvimento da linguagem – analisando, especificamente, o papel do conceito de intencionalidade nessa proposta e a relação entre intencionalidade e linguagem; (2) analisar o tratamento do conceito de intencionalidade nos trabalhos de John R. Searle e de Daniel C. Dennett, comparando-o com o proposto por Tomasello e cols., segundo os critérios de (a) definição de intencionalidade e (b) relação entre intencionalidade e linguagem; e (3) analisar o tratamento que o conceito de intencionalidade tem recebido na Análise do Comportamento, comparandoo com o proposto por Tomasello e cols, segundo os mesmos critérios (a) e (b). Esperava-se que estas análises permitissem um maior esclarecimento sobre o uso do conceito de intencionalidade na proposta de Tomasello e cols. e uma aproximação dessa proposta com um referencial analítico-comportamental, i.e., sem recorrer a entidades mentais como elementos explicativos da cognição e da linguagem. Tomasello e cols. propõem que a cognição humana é um tipo de cognição primata, derivada de adaptações biológicas característica dos primatas em geral para compreender os outros intencionalmente, em termos de ações, percepções, estados emocionais e objetivos, além de uma motivação exclusivamente humana para compartilhar intencionalidade com os outros. A partir dessas características, os humanos se tornaram capazes de se engajar em atividades de colaboração relacionadas à cognição cultural (envolvendo a criação e o uso de símbolos lingüísticos e matemáticos, artefatos culturais, tecnologias, práticas culturais e instituições sociais), que alteraram profundamente os modos de interação social da espécie humana, permitindo a ela acumular e modificar conhecimentos ao longo da história e transmitir esses conhecimentos para as gerações posteriores. Considerando a análise dos usos do conceito de intencionalidade nas propostas de Tomasello e cols, Searle, Dennett e da Análise do Comportamento, foi possível estabelecer uma relação entre as propostas de Tomasello e cols. e de Dennett, ambas caracterizando a intencionalidade como um conjunto de habilidades cognitivo-comportamentais dos organismos, resultante da história evolutiva das espécies. Contudo, foi possível relacionar o uso do o conceito de intencionalidade nas propostas de Searle e da Análise do Comportamento com o conceito de intencional na proposta de Tomasello e cols., ambos significando uma propriedade referencial (i.e., estar relacionado com) de certos fenômenos em relação a aspectos do mundo. No que concerne à relação entre intencionalidade e linguagem, as propostas de Tomasello e cols., Searle e de Dennett destacam a importância da interação da intencionalidade com a linguagem para a evolução da cognição humana propriamente dita. Contudo, Tomasello e cols. se aproximam mais do modelo de Searle, ao sugerirem que a linguagem simbólica é uma habilidade comportamental humana derivada da intencionalidade. Dennett, por outro lado, se contrapõe a essa hipótese, afirmando que intencionalidade e linguagem simbólica são dois fenômenos comportamentais distintos que co-evoluíram e passaram a interagir em certo momento da história evolutiva da espécie humana. Em geral, o presente trabalho sugere que os principais conceitos utilizados na proposta de Tomasello e cols. sobre a evolução da cognição humana e, especificamente, na teoria da aquisição da linguagem baseada no uso, são compatíveis com alguns conceitos aplicados em outras áreas do conhecimento, como a filosofia da mente e as ciências do comportamento. Em adição, o presente trabalho também possibilitou uma aproximação da proposta de Tomasello e cols. com um referencial analíticocomportamental. Sugere-se que (i) a adoção de um vocabulário analítico-comportamental pode contribuir para abordar os fenômenos contemplados na proposta de Tomasello e cols., evitando a recorrência a pressupostos mentalistas; e, (ii) a proposta de Tomasello e cols. pode oferecer relevantes contribuições para a Análise do Comportamento, no que se refere à investigação de processos simbólicos, principalmente, a aquisição e o desenvolvimento da linguagem simbólica, na medida em que esta proposta tem investigado processos simbólicos mais complexos do que aqueles tradicionalmente investigados na Análise do Comportamento.

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Nutcracking capuchins are mentioned in reports dating as far back as the sixteenth century,(1,2) as well as in Brazilian folklore.(3) However, it was barely a decade ago that primatologists ""discovered"" the spontaneous use of stones to crack nuts in a semi-free ranging group of tufted capuchin monkeys. Since then, we have found several more capuchin populations in savanna-like environments which(5-7) employ this form of tool use. The evidence so far only weakly supports geneti cally based behavioral differences between populations and does not suggest that dietary pressures in poor environments are proximate determinants of the likelihood of tool use. Instead, tool use within these capuchin populations seems to be a behavioral tradition that is socially learned and is primarily associated with more terrestrial habits. However, differences in the diversity of ""tool kits"" between populations remain to be understood.

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Deficits in social cognition are prominent symptoms of many human psychiatric disorders, but the origin of such deficits remains largely unknown. To further current knowledge regarding the neural network mediating social cognition, the present research program investigated the individual contributions of two temporal lobe structures, the amygdala and hippocampal formation, and one frontal lobe region, the orbital frontal cortex (Areas 11 and 13), to primate social cognition. Based on previous research, we hypothesized that the amygdala, hippocampal formation and orbital frontal cortex contribute significantly to the formation of new social relationships, but less to the maintenance of familiar ones. ^ Thirty-six male rhesus macaques (Macaca mulatta) served as subjects, and were divided into four experimental groups: Neurotoxic amygdala lesion (A-ibo, n = 9), neurotoxic or aspiration orbital frontal cortex lesion (O, n = 9), neurotoxic hippocampal formation lesion (H-ibo, n = 9) or sham-operated control (C, n = 9). Six social groups (tetrads) were created, each containing one member from each experimental group. The effect of lesion on established social relationships was assessed during pre- and post-surgical unrestrained social interactions, whereas the effect of lesion on the formation of new relationships was assessed during an additional phase of post-surgical testing with shuffled tetrad membership. Results indicated that these three neural structures each contribute significantly to both the formation and maintenance of social relationships. Furthermore, the amygdala appears to primarily mediate normal responses to threatening social signals, whereas the orbital frontal cortex plays a more global role in social cognition by mediating responses to both threatening and affiliative social signals. By contrast, the hippocampal formation seems to contribute to social cognition indirectly by providing access to previous experience during social judgments. ^ These conclusions were further investigated with three experiments that measured behavioral and physiological (stress hormone) reactivity to threatening stimuli, and three additional experiments that measured subjects' ability to flexibly alter behavioral responses depending on the incentive value of a food reinforcer. Data from these six experiments further confirmed and strengthened the three conclusions originating from the social behavior experiments and, when combined with the current literature, helped to formulate a simple, but testable, theoretical model of primate social cognition. ^

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Humans are metacognitive: they monitor and control their cognition. Our hypothesis was that neuronal correlates of metacognition reside in the same brain areas responsible for cognition, including frontal cortex. Recent work demonstrated that nonhuman primates are capable of metacognition, so we recorded from single neurons in the frontal eye field, dorsolateral prefrontal cortex, and supplementary eye field of monkeys (Macaca mulatta) that performed a metacognitive visual-oculomotor task. The animals made a decision and reported it with a saccade, but received no immediate reward or feedback. Instead, they had to monitor their decision and bet whether it was correct. Activity was correlated with decisions and bets in all three brain areas, but putative metacognitive activity that linked decisions to appropriate bets occurred exclusively in the SEF. Our results offer a survey of neuronal correlates of metacognition and implicate the SEF in linking cognitive functions over short periods of time.

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Making decisions is fundamental to everything we do, yet it can be impaired in various disorders and conditions. While research into the neural basis of decision-making has flourished in recent years, many questions remain about how decisions are instantiated in the brain. Here we explored how primates make abstract decisions and decisions in social contexts, as well as one way to non-invasively modulate the brain circuits underlying decision-making. We used rhesus macaques as our model organism. First we probed numerical decision-making, a form of abstract decision-making. We demonstrated that monkeys are able to compare discrete ratios, choosing an array with a greater ratio of positive to negative stimuli, even when this array does not have a greater absolute number of positive stimuli. Monkeys’ performance in this task adhered to Weber’s law, indicating that monkeys—like humans—treat proportions as analog magnitudes. Next we showed that monkeys’ ordinal decisions are influenced by spatial associations; when trained to select the fourth stimulus from the bottom in a vertical array, they subsequently selected the fourth stimulus from the left—and not from the right—in a horizontal array. In other words, they begin enumerating from one side of space and not the other, mirroring the human tendency to associate numbers with space. These and other studies confirmed that monkeys’ numerical decision-making follows similar patterns to that of humans, making them a good model for investigations of the neurobiological basis of numerical decision-making.

We sought to develop a system for exploring the neuronal basis of the cognitive and behavioral effects observed following transcranial magnetic stimulation, a relatively new, non-invasive method of brain stimulation that may be used to treat clinical disorders. We completed a set of pilot studies applying offline low-frequency repetitive transcranial magnetic stimulation to the macaque posterior parietal cortex, which has been implicated in numerical processing, while subjects performed a numerical comparison and control color comparison task, and while electrophysiological activity was recorded from the stimulated region of cortex. We found tentative evidence in one paradigm that stimulation did selectively impair performance in the number task, causally implicating the posterior parietal cortex in numerical decisions. In another paradigm, however, we manipulated the subject’s reaching behavior but not her number or color comparison performance. We also found that stimulation produced variable changes in neuronal firing and local field potentials. Together these findings lay the groundwork for detailed investigations into how different parameters of transcranial magnetic stimulation can interact with cortical architecture to produce various cognitive and behavioral changes.

Finally, we explored how monkeys decide how to behave in competitive social interactions. In a zero-sum computer game in which two monkeys played as a shooter or a goalie during a hockey-like “penalty shot” scenario, we found that shooters developed complex movement trajectories so as to conceal their intentions from the goalies. Additionally, we found that neurons in the dorsolateral and dorsomedial prefrontal cortex played a role in generating this “deceptive” behavior. We conclude that these regions of prefrontal cortex form part of a circuit that guides decisions to make an individual less predictable to an opponent.

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Thesis (Ph.D.)--University of Washington, 2016-06

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The Internet theoretically enables marketers to personalize a Website to an individual consumer. This article examines optimal Website design from the perspective of personality trait theory and resource-matching theory. The influence of two traits relevant to Internet Web-site processing—sensation seeking and need for cognition— were studied in the context of resource matching and different levels of Web-site complexity. Data were collected at two points of time: personality-trait data and a laboratory experiment using constructed Web sites. Results reveal that (a) subjects prefer Web sites of a medium level of complexity, rather than high or low complexity; (b)high sensation seekers prefer complex visual designs, and low sensation seekers simple visual designs, both in Web sites of medium complexity; and (c) high need-for-cognition subjects evaluated Web sites with high verbal and low visual complexity more favourably.

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Previous research into the use of explicit and implicit conclusions in advertising has yet to demonstrate consistent effects for both brand attitudes and purchase intentions. While research has examined the role of involvement, this study contributes by examining the trait called need for cognition (NFC), which addresses a person’s propensity to engage in effortful thinking. In addition, this study introduces argument quality (AQ) as another potential moderator of conclusion explicitness effects. In a 2 × 2 experiment of 261 subjects, conclusion explicitness (explicit conclusion, implicit conclusion) and AQ (strong, weak) are manipulated, with NFC (high NFC, low NFC) as a third measured variable. Results indicate more favorable evaluations for implicit conclusions over explicit conclusions for high-NFC individuals. Further, implicit conclusions result in more favorable brand attitudes and purchase intentions when linked with strong AQ for high-NFC individuals. The findings confirm that conclusion explicitness does not differentially affect the evaluations of low-NFC subjects. Results suggest that NFC may represent an important moderating variable for future conclusion explicitness research.

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In recent decades, concepts and ideas from James J. Gibson’s theory of direct perception in ecological psychology have been applied to the study of how perception and action regulate sport performance. This article examines the influence of different streams of thought in ecological psychology for studying cognition and action in the diverse behavioural contexts of sport and exercise. In discussing the origins of ecological psychology it can be concluded that psychologists such as Lewin, and to some extent Heider, provided the initial impetus for the development of key ideas. We argue that the papers in this special issue clarify that the different schools of thinking in ecological psychology have much to contribute to theoretical and practical developments in sport and exercise psychology. For example, Gibson emphasized and formalized how the individual is coupled with the environment; Brunswik raised the issue of the ontology of probability in human behaviour and the problem of representative design for experimental task constraints; Barker looked carefully into extra-individual behavioural contexts and Bronfenbrenner presented insights pertinent to the relations between behaviour contexts, and macro influences on behaviour. In this overview, we highlight essential issues from the main schools of thought of relevance to the contexts of sport and exercise, and we consider some potential theoretical linkages with dynamical systems theory.

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The paper discusses robot navigation from biological inspiration. The authors sought to build a model of the rodent brain that is suitable for practical robot navigation. The core model, dubbed RatSLAM, has been demonstrated to have exactly the same advantages described earlier: it can build, maintain, and use maps simultaneously over extended periods of time and can construct maps of large and complex areas from very weak geometric information. The work contrasts with other efforts to embody models of rat brains in robots. The article describes the key elements of the known biology of the rat brain in relation to navigation and how the RatSLAM model captures the ideas from biology in a fashion suitable for implementation on a robotic platform. The paper then outline RatSLAM's performance in two difficult robot navigation challenges, demonstrating how a cognitive robotics approach to navigation can produce results that rival other state of the art approaches in robotics.

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This paper reports on three primary school students’ explorations of 3D rotation in a virtual reality learning environment (VRLE) named VRMath. When asked to investigate if you would face the same direction when you turn right 45 degrees first then roll up 45 degrees, or when you roll up 45 degrees first then turn right 45 degrees, the students found that the different order of the two turns ended up with different directions in the VRLE. This was contrary to the students’ prior predictions based on using pen, paper and body movements. The findings of this study showed the difficulty young children have in perceiving and understanding the non-commutative nature of 3D rotation and the power of the computational VRLE in giving students experiences that they rarely have in real life with 3D manipulations and 3D mental movements.