The 'cognitive buffer' hypothesis predicts that the costs of relatively large brains are compensated for later in life by the increased benefits of large brains providing a higher chance of survival under changing environments through flexible behaviors in the animal kingdom. Thus, animals that live in a larger range (with a higher probability of environmental variation) are expected to have larger brains than those that live in a restricted geographic range. Here, to test the prediction of the 'cognitive buffer' hypothesis that larger brains should be expected to occur in species living in geographic ranges of larger size, we analyzed the relationship between the size of the geographic range and brain size and the size of various brain reg...
Abstract The challenges of seasonal environments are thought to contribute to brain evolution, but i...
Natural selection is a major force in the evolution of vertebrate brain size, but the role of sexual...
Natural selection is a major force in the evolution of vertebrate brain size, but the role of sexual...
<p>The ‘cognitive buffer’ hypothesis predicts that the costs of relatively large brains are compensa...
Brain size differs substantially among species and several hypotheses have been proposed to explain ...
Brain size differs substantially among species and several hypotheses have been proposed to explain ...
Brain size differs substantially among species and several hypotheses have been proposed to explain ...
Species can evolve diverse strategies to survive periods of uncertainty. Animals may either invest i...
Species can evolve diverse strategies to survive periods of uncertainty. Animals may either invest i...
Brain sizes vary substantially across vertebrate taxa yet the evolution of brain size appears tightl...
Brain sizes vary substantially across vertebrate taxa yet the evolution of brain size appears tightl...
Brain sizes vary substantially across vertebrate taxa yet the evolution of brain size appears tightl...
The Expensive Brain Framework (EBF) and the Cognitive Buffer Hypothesis are commonly used to explain...
The Expensive Brain Framework (EBF) and the Cognitive Buffer Hypothesis are commonly used to explain...
Brain size relative to body size varies considerably among animals, but the ecological consequences ...
Abstract The challenges of seasonal environments are thought to contribute to brain evolution, but i...
Natural selection is a major force in the evolution of vertebrate brain size, but the role of sexual...
Natural selection is a major force in the evolution of vertebrate brain size, but the role of sexual...
<p>The ‘cognitive buffer’ hypothesis predicts that the costs of relatively large brains are compensa...
Brain size differs substantially among species and several hypotheses have been proposed to explain ...
Brain size differs substantially among species and several hypotheses have been proposed to explain ...
Brain size differs substantially among species and several hypotheses have been proposed to explain ...
Species can evolve diverse strategies to survive periods of uncertainty. Animals may either invest i...
Species can evolve diverse strategies to survive periods of uncertainty. Animals may either invest i...
Brain sizes vary substantially across vertebrate taxa yet the evolution of brain size appears tightl...
Brain sizes vary substantially across vertebrate taxa yet the evolution of brain size appears tightl...
Brain sizes vary substantially across vertebrate taxa yet the evolution of brain size appears tightl...
The Expensive Brain Framework (EBF) and the Cognitive Buffer Hypothesis are commonly used to explain...
The Expensive Brain Framework (EBF) and the Cognitive Buffer Hypothesis are commonly used to explain...
Brain size relative to body size varies considerably among animals, but the ecological consequences ...
Abstract The challenges of seasonal environments are thought to contribute to brain evolution, but i...
Natural selection is a major force in the evolution of vertebrate brain size, but the role of sexual...
Natural selection is a major force in the evolution of vertebrate brain size, but the role of sexual...