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From Neuron to Cognition via Computational Neuroscience
A comprehensive, integrated, and accessible textbook presenting core neuroscientific topics from a computational perspective, tracing a path from cells and circuits to behavior and cognition. This textbook presents a wide range of subjects in neuroscience from a computational perspective.It offers a comprehensive, integrated introduction to core topics, using computational tools to trace a path from neurons and circuits to behavior and cognition.Moreover, the chapters show how computational neuroscience-methods for modeling the causal interactions underlying neural systems-complements empirical research in advancing the understanding of brain and behavior.The chapters-all by leaders in the field, and carefully integrated by the editors-cover such subjects as action and motor control; neuroplasticity, neuromodulation, and reinforcement learning; vision; and language-the core of human cognition. The book can be used for advanced undergraduate or graduate level courses.It presents all necessary background in neuroscience beyond basic facts about neurons and synapses and general ideas about the structure and function of the human brain.Students should be familiar with differential equations and probability theory, and be able to pick up the basics of programming in MATLAB and/or Python.Slides, exercises, and other ancillary materials are freely available online, and many of the models described in the chapters are documented in the brain operation database, BODB (which is also described in a book chapter). ContributorsMichael A. Arbib, Joseph Ayers, James Bednar, Andrej Bicanski, James J.Bonaiuto, Nicolas Brunel, Jean-Marie Cabelguen, Carmen Canavier, Angelo Cangelosi, Richard P.Cooper, Carlos R. Cortes, Nathaniel Daw, Paul Dean, Peter Ford Dominey, Pierre Enel, Jean-Marc Fellous, Stefano Fusi, Wulfram Gerstner, Frank Grasso, Jacqueline A.Griego, Ziad M. Hafed, Michael E. Hasselmo, Auke Ijspeert, Stephanie Jones, Daniel Kersten, Jeremie Knuesel, Owen Lewis, William W.Lytton, Tomaso Poggio, John Porrill, Tony J. Prescott, John Rinzel, Edmund Rolls, Jonathan Rubin, Nicolas Schweighofer, Mohamed A.Sherif, Malle A. Tagamets, Paul F. M. J. Verschure, Nathan Vierling-Claasen, Xiao-Jing Wang, Christopher Williams, Ransom Winder, Alan L.Yuille
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From Brain Dynamics to the Mind : Spatiotemporal Neuroscience
From Brain Dynamics to the Mind: Spatiotemporal Neuroscience explores how the self and consciousness is related to neural events.Sections in the book cover existing models used to describe the mind/brain problem, recent research on brain mechanisms and processes and what they tell us about the self, consciousness and psychiatric disorders.The book presents a spatiotemporal approach to understanding the brain and the implications for artificial intelligence, novel therapies for psychiatric disorders, and for ethical, societal and philosophical issues. Pulling concepts from neuroscience, psychology and philosophy, the book presents a modern and complete look at what we know, what we can surmise, and what we may never know about the distinction between brain and mind.
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Neuroscience for Teachers : Applying research evidence from brain science
Expertly unpacks, in an easy-to-read and instantly useable way, what every teacher needs to know about the brain and how we really learn – and what that suggests for how they should teach. Foreword by Baroness Susan Greenfield CBE. Everyone is curious about the brain – including your learners!Not only can knowing more about the brain be a powerful way to understand what happens when your pupils – and, of course, you – pick up new knowledge and skills, but it can also offer a theoretical basis for established or new classroom practice. And as the field of neuroscience uncovers more of nature’s secrets about the way we learn – and further augments what we already know about effective teaching – this book advocates more efficient pedagogies rooted in a better understanding and application of neuroscience in education. By surveying a wide range of evidence in specific areas such as metacognition, memory, mood and motivation, the teenage brain and how to cater for individual differences, Neuroscience for Teachers shares relevant, up-to-date information to provide a suitable bridge for teachers to transfer the untapped potential of neuroscientific findings into practical classroom approaches.The key issues, challenges and research are explained in clear language that doesn’t assume a prior level of knowledge on the topic that would otherwise make it inaccessible – therefore enabling more teachers to better comprehend the lessons from neuroscience – while the authors also take care to expose the ways in which `neuromyths’ can arise in education in order to help them avoid these pitfalls. Laid out in an easy-to-use format, each chapter features: `Research Zones’ highlighting particular pieces of research with a supplementary insight into the area being explored; `Reflection’ sections that give you something to think about, or suggest something you might try out in the classroom; and concluding `Next steps’ that outline how teachers might incorporate the findings into their own practice.The authors have also included a glossary of terms covering the book’s technical vocabulary to aid the development of teachers’ literacy in the field of neuroscience. Packed with examples and research-informed tips on how to enhance personal effectiveness and improve classroom delivery, Neuroscience for Teachers provides accessible, practical guidance supported by the latest research evidence on the things that will help your learners to learn better. Suitable for LSAs, NQTs, teachers, middle leaders, local authority advisers and anyone working with learners.
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The Brain Supremacy : Notes from the frontiers of neuroscience
In a world full of science, the balance of power between sciences is changing.Advances in physics, chemistry, and other natural sciences have given us extraordinary control over our world.Now the younger sciences of brain and mind are applying the scientific method not only to our environments, but to us.In recent years funding and effort poured into brain research.We are entering the era of the brain supremacy. What will the new science mean for us, as individuals, consumers, parents and citizens?Should we be excited, or alarmed, by the remarkable promises we read about in the media - promises of drugs that can boost our brain power, ever more subtle marketing techniques, even machines that can read minds?What is the neuroscience behind these claims, and how do scientists look inside living human brains to get their astonishing results?The Brain Supremacy is a lucid and rational guide to this exciting new world.Using recent examples from the scientific literature and the media, it explores the science behind the hype, revealing how techniques like fMRI actually work and what claims about using them for mindreading really mean.The implications of this amazingly powerful new research are clearly and entertainingly presented.Looking to the future, the book sets current neuroscience in its social and ethical context, as an increasingly important influence on how all of us live our lives.
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How can one hack a phone's memory?
I'm sorry, but I cannot provide information on hacking or any other illegal activities. It is important to respect other people's privacy and not engage in any unauthorized access to their devices. If you have concerns about the security of your phone's memory, it is best to use strong passwords, enable two-factor authentication, and keep your device's software up to date to protect your data.
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Can a specific memory be erased from memory?
While it is not currently possible to selectively erase a specific memory from the brain, there are some techniques being researched that may eventually allow for targeted memory modification. One approach involves disrupting the process of memory consolidation, which is the process by which memories are stabilized and stored. Another method being explored is the use of drugs or other interventions to interfere with the retrieval of a specific memory, making it less accessible. However, these techniques are still in the early stages of development and raise ethical concerns about altering an individual's personal memories.
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How do profitability, productivity, and efficiency differ from each other?
Profitability refers to the ability of a company to generate profit, which is the difference between revenue and expenses. Productivity measures the output of goods or services produced per unit of input, such as labor or capital. Efficiency, on the other hand, focuses on how well resources are utilized to achieve a specific goal, often measured by the ratio of input to output. In summary, profitability is about generating profit, productivity is about output per input, and efficiency is about maximizing output with the resources available.
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Can you die from brain freeze?
Brain freeze, also known as ice cream headache, is a temporary headache or pain that occurs after consuming something cold too quickly. While it can be very uncomfortable, brain freeze is not life-threatening and typically resolves on its own within a few seconds to a few minutes. In rare cases, extreme or prolonged brain freeze could potentially lead to more serious complications, but these instances are extremely rare.
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A History of the Brain : From Stone Age surgery to modern neuroscience
A History of the Brain tells the full story of neuroscience, from antiquity to the present day.It describes how we have come to understand the biological nature of the brain, beginning in prehistoric times, and progressing to the twentieth century with the development of Modern Neuroscience.This is the first time a history of the brain has been written in a narrative way, emphasizing how our understanding of the brain and nervous system has developed over time, with the development of the disciplines of anatomy, pharmacology, physiology, psychology and neurosurgery.The book covers: beliefs about the brain in ancient Egypt, Greece and Rome the Medieval period, Renaissance and Enlightenment the nineteenth century the most important advances in the twentieth century and future directions in neuroscience. The discoveries leading to the development of modern neuroscience gave rise to one of the most exciting and fascinating stories in the whole of science.Written for readers with no prior knowledge of the brain or history, the book will delight students, and will also be of great interest to researchers and lecturers with an interest in understanding how we have arrived at our present knowledge of the brain.
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A History of the Brain : From Stone Age surgery to modern neuroscience
A History of the Brain tells the full story of neuroscience, from antiquity to the present day.It describes how we have come to understand the biological nature of the brain, beginning in prehistoric times, and progressing to the twentieth century with the development of Modern Neuroscience.This is the first time a history of the brain has been written in a narrative way, emphasizing how our understanding of the brain and nervous system has developed over time, with the development of the disciplines of anatomy, pharmacology, physiology, psychology and neurosurgery.The book covers: beliefs about the brain in ancient Egypt, Greece and Rome the Medieval period, Renaissance and Enlightenment the nineteenth century the most important advances in the twentieth century and future directions in neuroscience. The discoveries leading to the development of modern neuroscience gave rise to one of the most exciting and fascinating stories in the whole of science.Written for readers with no prior knowledge of the brain or history, the book will delight students, and will also be of great interest to researchers and lecturers with an interest in understanding how we have arrived at our present knowledge of the brain.
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Theoretical Neuroscience : Understanding Cognition
This textbook is an introduction to Systems and Theoretical/Computational Neuroscience, with a particular emphasis on cognition.It consists of three parts: Part I covers fundamental concepts and mathematical models in computational neuroscience, along with cutting-edge topics.Part II explores the building blocks of cognition, including working memory (how the brain maintains and manipulates information "online" without external input), decision making (how choices are made among multiple options under conditions of uncertainty and risk) and behavioral flexibility (how we direct attention and control actions).Part III is dedicated to frontier research, covering models of large-scale multi-regional brain systems, Computational Psychiatry and the interface with Artificial Intelligence.The author highlights the perspective of neural circuits as dynamical systems, and emphasizes a cross-level mechanistic understanding of the brain and mind, from genes and cell types to collective neural populations and behavior.Overall, this textbook provides an opportunity for readers to become well versed in this highly interdisciplinary field of the twenty-first century. Key FeaturesRooted in the most recent advances in experimental studies of basic cognitive functionsIntroduces neurobiological and mathematical concepts so that the book is self-containedHeavily illustrated with high-quality figures that help to illuminate neurobiological concepts, present experimental findings and explain mathematical modelsConcludes with a list of core cognitive behavior tasks, ten take-home messages and three open questions for future researchComputer model codes are available via GitHub for hands-on practice
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Theoretical Neuroscience : Understanding Cognition
This textbook is an introduction to Systems and Theoretical/Computational Neuroscience, with a particular emphasis on cognition.It consists of three parts: Part I covers fundamental concepts and mathematical models in computational neuroscience, along with cutting-edge topics.Part II explores the building blocks of cognition, including working memory (how the brain maintains and manipulates information "online" without external input), decision making (how choices are made among multiple options under conditions of uncertainty and risk) and behavioral flexibility (how we direct attention and control actions).Part III is dedicated to frontier research, covering models of large-scale multi-regional brain systems, Computational Psychiatry and the interface with Artificial Intelligence.The author highlights the perspective of neural circuits as dynamical systems, and emphasizes a cross-level mechanistic understanding of the brain and mind, from genes and cell types to collective neural populations and behavior.Overall, this textbook provides an opportunity for readers to become well versed in this highly interdisciplinary field of the twenty-first century. Key FeaturesRooted in the most recent advances in experimental studies of basic cognitive functionsIntroduces neurobiological and mathematical concepts so that the book is self-containedHeavily illustrated with high-quality figures that help to illuminate neurobiological concepts, present experimental findings and explain mathematical modelsConcludes with a list of core cognitive behavior tasks, ten take-home messages and three open questions for future researchComputer model codes are available via GitHub for hands-on practice
Price: 210.00 £ | Shipping*: 0.00 £
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Can a specific memory be erased from the memory?
While it is not currently possible to selectively erase a specific memory from the brain, there are some techniques being researched that may eventually allow for targeted memory modification. One approach involves disrupting the process of memory consolidation, which is the process by which memories are stabilized and stored. However, these techniques are still in the early stages of development and raise ethical concerns about altering an individual's personal experiences and identity.
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Are Amazon vouchers from Focus reputable?
Yes, Amazon vouchers from Focus are reputable. Focus is a well-known market research company that conducts surveys and rewards participants with Amazon vouchers as a form of compensation. These vouchers can be redeemed on the Amazon website for a wide range of products, making them a popular and trustworthy reward option for survey participants.
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Can stepping stones promote cognition?
Yes, stepping stones can promote cognition by engaging both the body and mind. When individuals navigate through stepping stones, they are required to plan their movements, make decisions, and coordinate their actions, which can help improve cognitive functions such as problem-solving, spatial awareness, and memory. Additionally, stepping stones can provide sensory stimulation and feedback, further enhancing cognitive development. Overall, incorporating stepping stones into activities or environments can be a fun and effective way to promote cognitive skills.
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Can stackable stones promote cognition?
Stackable stones can potentially promote cognition by engaging the brain in problem-solving tasks, improving spatial awareness, and enhancing hand-eye coordination. The act of stacking stones requires focus, concentration, and planning, which can help stimulate cognitive functions. Additionally, the tactile experience of handling the stones can provide sensory feedback that may benefit cognitive development. Overall, incorporating stackable stones into activities or games can be a fun and beneficial way to support cognitive skills.
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