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  • From Neuron to Brain
    From Neuron to Brain

    From Neuron to Brain, Sixth Edition, provides a readable, up-to-date book for use in undergraduate, graduate, and medical school courses in neuroscience.As in previous editions, the emphasis is on experiments made by electrical recordings, molecular and cellular biological techniques, and behavioral studies on the nervous system, from simple reflexes to cognitive functions.Lines of research are followed from the inception of an idea to new findings being made in laboratories and clinics today. From Neuron to Brain will be of interest to anyone--with or without a specialized background in biological sciences--who is curious about the workings of the nervous system.

    Price: 162.99 £ | Shipping*: 0.00 £
  • Wildlife in the Anthropocene : Conservation after Nature
    Wildlife in the Anthropocene : Conservation after Nature

    Elephants rarely breed in captivity and are not considered domesticated, yet they interact with people regularly and adapt to various environments.Too social and sagacious to be objects, too strange to be human, too captive to truly be wild, but too wild to be domesticated—where do elephants fall in our understanding of nature?In Wildlife in the Anthropocene, Jamie Lorimer argues that the idea of nature as a pure and timeless place characterized by the absence of humans has come to an end.But life goes on. Wildlife inhabits everywhere and is on the move; Lorimer proposes the concept of wildlife as a replacement for nature.Offering a thorough appraisal of the Anthropocene—an era in which human actions affect and influence all life and all systems on our planet— Lorimer unpacks its implications for changing definitions of nature and the politics of wildlife conservation.Wildlife in the Anthropocene examines rewilding, the impacts of wildlife films, human relationships with charismatic species, and urban wildlife.Analyzing scientific papers, policy documents, and popular media, as well as a decade of fieldwork, Lorimer explores the new interconnections between science, politics, and neoliberal capitalism that the Anthropocene demands of wildlife conservation.Imagining conservation in a world where humans are geological actors entangled within and responsible for powerful, unstable, and unpredictable planetary forces, this work nurtures a future environmentalism that is more hopeful and democratic.

    Price: 23.99 £ | Shipping*: 3.99 £
  • From Neuron to Cognition via Computational Neuroscience
    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

    Price: 110.00 £ | Shipping*: 0.00 £
  • The Cooperative Neuron : Cellular Foundations of Mental Life
    The Cooperative Neuron : Cellular Foundations of Mental Life

    The Cooperative Neuron is part of a revolution that is occurring in the sciences of brain and mind.It explores the new field of cellular psychology, a field built upon the recent discovery that many neurons in the brain cooperate to seek agreement in deciding what's relevant in the current context.This cooperative context-sensitivity provides the cellular foundations for knowledge, doubt, imagination, self-development, and the search for purpose in life.This emerging field has far-reaching and fundamental implications for psychology, neuroscience, psychiatry, neurology, and the philosophy of mind. In a clear and accessible style, the book explains the neuroscience to psychologists, the psychology to neuroscientists, and both to philosophers, students of the behavioral and brain sciences, and to anyone intrigued by the enduring mystery of how brains can be minds.

    Price: 49.95 £ | Shipping*: 0.00 £
  • What is the difference between a Canyon Neuron WMN and a regular Neuron?

    The Canyon Neuron WMN is specifically designed for women, with a geometry and components tailored to suit female riders. This includes a women-specific saddle, narrower handlebars, and adjusted suspension settings to accommodate lighter weight and different riding styles. In contrast, the regular Neuron is a unisex model with a standard geometry and components that may not be as well-suited for female riders.

  • What is the neuron output in backpropagation?

    In backpropagation, the neuron output is the result of applying the activation function to the weighted sum of the inputs. This output is then used to calculate the error and update the weights during the training process. The neuron output is a crucial component in the backpropagation algorithm as it helps to determine the contribution of each neuron to the overall network output and allows for the adjustment of weights to minimize the error.

  • Can an axon of a neuron change reality?

    No, an axon of a neuron cannot change reality. Neurons and their axons are part of the biological processes that allow us to perceive and interact with reality, but they do not have the ability to change reality itself. The function of neurons is to transmit electrical and chemical signals within the brain and nervous system, but they do not have the capacity to alter the fundamental nature of reality. Reality is shaped by a complex interplay of physical, chemical, and biological processes, but the actions of individual neurons do not have the power to change this fundamental reality.

  • Is the Canyon Neuron 5 a good bike for beginners?

    The Canyon Neuron 5 is a good bike for beginners due to its versatile and user-friendly design. It features a comfortable geometry and reliable components that are well-suited for entry-level riders. The bike's suspension system and handling make it suitable for a variety of trails, allowing beginners to develop their skills and confidence. Overall, the Canyon Neuron 5 is a solid choice for those new to mountain biking.

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  • Wildlife Conservation
    Wildlife Conservation

    Featuring twenty of the world's most 'at risk' animals, this book teaches young naturalists about conservation programs protect the lives of endangered wild animals from hunters, poachers, illness and other threats.Understanding these threats is balanced with conservation success stories from around the globe to give the reader hope for the future.Clearly written text, maps, quotes and stunning full-page illustrations bring the reality into focus for the reader.

    Price: 9.99 £ | Shipping*: 3.99 £
  • QMotion - Noitom Perception Neuron Motion Capture DLC Steam CD Key
    QMotion - Noitom Perception Neuron Motion Capture DLC Steam CD Key

    Unlimited use of Noitom(Perception Neuron) motion capture function in QMotion.

    Price: 19.50 € | Shipping*: 0.00 €
  • QMotion - Noitom Perception Neuron Motion Capture DLC Steam CD Key
    QMotion - Noitom Perception Neuron Motion Capture DLC Steam CD Key

    Unlimited use of Noitom(Perception Neuron) motion capture function in QMotion.

    Price: 16.89 € | Shipping*: 0.00 GBP €
  • Wildlife Conservation Diploma Course
    Wildlife Conservation Diploma Course

    This course explores the importance of wildlife conservation and the strategies used to create and maintain a successful wildlife conservation programme.

    Price: 127 € | Shipping*: 0.00 €
  • Which is better, the Canyon Spectral or the Canyon Neuron?

    The choice between the Canyon Spectral and the Canyon Neuron ultimately depends on the type of riding you prefer. The Canyon Spectral is better suited for aggressive trail riding and enduro racing, with its longer travel and slacker geometry. On the other hand, the Canyon Neuron is designed for cross-country and trail riding, with a more efficient pedaling platform and lighter weight. Consider your riding style and preferences to determine which bike is better for you.

  • How do you calculate the maximum frequency of a neuron?

    The maximum frequency of a neuron can be calculated by determining the refractory period of the neuron, which is the time it takes for the neuron to recover and be able to fire another action potential. The maximum frequency is then the inverse of the refractory period, as it represents the fastest rate at which the neuron can fire action potentials. For example, if a neuron has a refractory period of 2 milliseconds, its maximum frequency would be 1/0.002 = 500 Hz. This calculation helps to understand the limitations of a neuron's firing rate and its ability to transmit information.

  • Why does a neuron work like the battery of our phone?

    A neuron works like the battery of our phone because it generates and transmits electrical signals just like a battery powers our phone. Neurons have a resting membrane potential, similar to the stored energy in a battery when it is not in use. When a neuron receives a signal, it can depolarize and generate an action potential, similar to how a battery discharges energy to power our phone. This electrical activity allows neurons to communicate with each other and transmit information throughout the brain and body, much like how a battery powers our phone to function.

  • What happens when the Schwann cells are damaged in a neuron?

    When Schwann cells are damaged in a neuron, the myelin sheath that they produce around the axon may become compromised. This can lead to a decrease in the speed and efficiency of nerve impulse conduction. Additionally, the axon may become more susceptible to injury and degeneration. In severe cases, the loss of Schwann cells can result in conditions such as Guillain-Barré syndrome, which is characterized by muscle weakness and paralysis.

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