
Title

Fast Oscillations In Cortical Circuits (Computational Neuroscience)
Delivery time: 8-12 business days (International)
The Study Of Cortical Oscillations Is Of Great Interest To Those Working In Many Areas Of Neuroscience. A Fast Coherent Eeg Rhythm Called Gamma Or 40 Hz Has Been Implicated In Cognition, As It May Play A Role In Binding Together Features Of Objects. This Rhythm May Also Be Important For Consciousness, As A Number Of Drugs That Induce General Anesthesia Disrupt The Synchronization Of The Rhythm At Clinically Relevant Concentrations. There Is Also Suggestive Evidence Implicating Dysfunction Of Gamma Rhythms In Alzheimer'S Disease, And Perhaps In Other Neuropsychiatric Disorders.In Fast Oscillations In Cortical Circuits, The Authors Use A Combination Of Electrophysiological And Computer Modeling Techniques To Analyze How Large Networks Of Neurons Can Produce Both Epileptic Seizures And Functionally Relevant Synchronized Oscillations. Specific Topics Covered Include Single Hippocampal Pyramid Cells, Hippocampal Interneurons, Synaptic Interactions, Gamma Oscillations In Brain Slices As Well As In Vivo, The Mechanisms Of Oscillationsynchronization (Both Local And Longrange), The Switch From Gamma To Beta Frequencies And Its Implications For Memory, And The Significance Of Gamma Oscillations For Brain Function.
By changing our most important processes and
products, we have already made a big leap forward. This ranges from the
increased use of more sustainable fibers to the use of more
environmentally friendly printing processes to the development of
efficient waste management in our value chain.
⚠️ WARNING (California Proposition 65):
This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.
For more information, please visit www.P65Warnings.ca.gov.
Shipping & Returns
Shipping
We ship your order within 2–3 business days for USA deliveries and 5–8 business days for international shipments. Once your package has been dispatched from our warehouse, you'll receive an email confirmation with a tracking number, allowing you to track the status of your delivery.
Returns
To facilitate a smooth return process, a Return Authorization (RA) Number is required for all returns. Returns without a valid RA number will be declined and may incur additional fees. You can request an RA number within 15 days of the original delivery date. For more details, please refer to our Return & Refund Policy page.
Shipping & Returns
Shipping
We ship your order within 2–3 business days for USA deliveries and 5–8 business days for international shipments. Once your package has been dispatched from our warehouse, you'll receive an email confirmation with a tracking number, allowing you to track the status of your delivery.
Returns
To facilitate a smooth return process, a Return Authorization (RA) Number is required for all returns. Returns without a valid RA number will be declined and may incur additional fees. You can request an RA number within 15 days of the original delivery date. For more details, please refer to our Return & Refund Policy page.
Warranty
We provide a 2-year limited warranty, from the date of purchase for all our products.
If you believe you have received a defective product, or are experiencing any problems with your product, please contact us.
This warranty strictly does not cover damages that arose from negligence, misuse, wear and tear, or not in accordance with product instructions (dropping the product, etc.).
Warranty
We provide a 2-year limited warranty, from the date of purchase for all our products.
If you believe you have received a defective product, or are experiencing any problems with your product, please contact us.
This warranty strictly does not cover damages that arose from negligence, misuse, wear and tear, or not in accordance with product instructions (dropping the product, etc.).
Secure Payment
Your payment information is processed securely. We do not store credit card details nor have access to your credit card information.
We accept payments with :
Visa, MasterCard, American Express, Paypal, Shopify Payments, Shop Pay and more.
Secure Payment
Your payment information is processed securely. We do not store credit card details nor have access to your credit card information.
We accept payments with :
Visa, MasterCard, American Express, Paypal, Shopify Payments, Shop Pay and more.
Related Products
You may also like
Frequently Asked Questions
- Q: What is the main topic of 'Fast Oscillations in Cortical Circuits'? A: The book focuses on the study of cortical oscillations, particularly the gamma rhythm, and its implications for cognition, consciousness, and neuropsychiatric disorders.
- Q: Who is the author of this book? A: The author of 'Fast Oscillations in Cortical Circuits' is Roger D. Traub.
- Q: What type of binding does this book have? A: This book is available in hardcover binding, which provides durability and a professional appearance.
- Q: When was 'Fast Oscillations in Cortical Circuits' published? A: The book was published on June 11, 1999.
- Q: How many pages are in this book? A: The book contains a total of 308 pages.
- Q: What scientific techniques are discussed in the book? A: The authors utilize electrophysiological and computer modeling techniques to analyze neuronal networks and their functions.
- Q: Does this book cover the role of gamma oscillations in diseases? A: Yes, the book discusses the dysfunction of gamma rhythms in conditions such as Alzheimer's disease and other neuropsychiatric disorders.
- Q: Is 'Fast Oscillations in Cortical Circuits' suitable for beginners in neuroscience? A: While the book provides valuable insights into advanced topics, it is more suited for readers with a background in neuroscience or related fields.
- Q: What are some specific topics covered in the book? A: Topics include single hippocampal pyramid cells, hippocampal interneurons, synaptic interactions, and the mechanisms of oscillation-synchronization.
- Q: Does this book include practical applications of the research? A: Yes, it discusses implications for memory and brain function related to oscillation patterns.