Michael Gazzaniga's Cognitive Neuroscience: The Biology of the Mind
Dominant for visuospatial processing, facial recognition, and emotional inflections in communication. Cellular and Evolutionary Neuroscience
Cualquier edición o compendio basado en el texto de Gazzaniga aborda la biología de la mente a través de un viaje estructurado que va desde los componentes celulares hasta las funciones ejecutivas superiores. 1. Fundamentos de la Neurociencia
Relacionado (términos de búsqueda sugeridos) (comando interno: generar términos relacionados) Neurociencia Cognitiva Gazzaniga.pdf
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The PDF usually contains a critical chapter on how we know what we know.
It covers everything from basic neurons to complex social ethics. The PDF usually contains a critical chapter on
This is the story of that quest—a tale not just of split-brain patients, but of how we see, remember, speak, and believe we have a single, unified "self."
Los procesos cognitivos involucrados en la toma de decisiones, la planificación y el control de acciones.
How does light become sight? How do vibrations become sound? Gazzaniga uses case studies of visual agnosia and cortical blindness to explain the primary visual cortex (V1) and the ventral/dorsal stream pathways. from fear to joy. 11.
Michael S. Gazzaniga, known as the "father of cognitive neuroscience," authored foundational texts including the core textbook Cognitive Neuroscience: The Biology of the Mind and the authoritative The Cognitive Neurosciences handbook. His work, which explores modular brain organization and the "left-brain interpreter" theory, bridges structural neurology with cognitive psychology. For an overview of his academic work, see his Google Scholar profile.
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— This section explores the fundamental mental operations that define our daily existence: 4. Hemispheric Specialization delves into the distinct roles of the brain's two halves, including the famous split-brain studies. 5. Sensation and Perception explains how the brain receives raw sensory data and transforms it into our rich, subjective experience of the world. 6. Object Recognition tackles the computational feat of how we instantly identify faces, objects, and patterns. 7. Attention explores the mechanisms that allow us to select and focus on specific information while filtering out the rest. 8. Control of Action explains how our intentions become coordinated movements. 9. Memory covers the different types of memory (e.g., working, episodic, procedural) and the brain structures that support them. 10. Emotion examines the neural basis of feelings, from fear to joy. 11. Language describes the brain's specialized networks for understanding and producing speech.