Nonlinear Dynamics of Parkinson’s Disease and the Basal Ganglia-Thalamic-Cortical System ()
By Jr. Erwin B. Montgomery, Olivier Darbin
Nonlinear Dynamics of Parkinson’s Disease and the Basal Ganglia-Thalamic-Cortical System examines current research regarding the operations of the basal ganglia-thalamic-cortical system that causes neurological disorders like Parkinson’s disease. While there have been remarkable advances in the understanding of the anatomy, physiology and chemistry of these systems, there remains a significant degree of inconsistency and incompleteness between facts and advancements. This book introduces the novel concepts of nonlinear complex systems and their connection to Parkinsonism as well as hyperkinetic disorders. The actual mechanisms underlying the motor disorders of Parkinson’s disease at the level of the lower motor neuron are also discussed.
Nonlinear Dynamics of Parkinson’s Disease and the Basal Ganglia-Thalamic-Cortical System is an innovative book written by Jr. Erwin B. Montgomery and Olivier Darbin. As the title suggests, the book explores current research regarding the operations of the basal ganglia-thalamic-cortical system and their connection to Parkinsonism as well as hyperkinetic disorders. Additionally, the book discusses the actual mechanisms underlying the motor disorders of Parkinson’s disease at the level of the lower motor neuron.
The book delves deeply into the topic of Parkinson’s disease, discussing the anatomy, physiology, and chemistry of the basal ganglia-thalamic-cortical system. It outlines the phenomenological selectivity of pallidotomy and deep brain stimulation and reviews anatomical models of pathophysiology and physiology. Furthermore, it discusses instrumental and analytical misrepresentations, and the inferences that misrepresent the data in nonmonotonic nonlinear dynamics.
One of the key points emphasized in the book is the significant degree of inconsistency and incompleteness that exists between facts and advancements regarding the understanding of Parkinson’s disease. It introduces novel concepts of nonlinear complex systems, emphasizing their role in Parkinsonism and hyperkinetic disorders. The book provides insights into the cause and effects of Parkinson’s disease, and its contribution to the understanding of the neurological disorder.
The book’s authors have presented a groundbreaking work that gives readers an inside look at the workings of the basal ganglia-thalamic-cortical system, and the resultant Parkinsonism and hyperkinetic disorders. It is a must-read for researchers and practitioners in the field of neuroscience, and would be of special interest to specialists working with Parkinson’s disease patients.
Nonlinear Dynamics of Parkinson’s Disease and the Basal Ganglia-Thalamic-Cortical System is available for purchase on Amazon as an e-book, hardcover, and audiobook. It has already garnered positive reviews from its readers, and has been praised for its unique approach to the topic.
In conclusion, Nonlinear Dynamics of Parkinson’s Disease and the Basal Ganglia-Thalamic-Cortical System by Jr. Erwin B. Montgomery and Olivier Darbin is an excellent resource for anyone interested in the workings of the basal ganglia-thalamic-cortical system, Parkinsonism, and hyperkinetic disorders. The book’s easy-to-understand language, coupled with its unique insights, makes it a valuable addition to the library of experts in neuroscience as well as Parkinson’s disease patients and their families. It offers a fresh perspective on the topic, and I highly recommend it to anyone seeking knowledge on this important subject. Order your copy today and discover the new concepts of nonlinear complex systems that could revolutionize the study of Parkinson’s disease.
Product Details
- Outlines phenomenological selectivity of pallidotomy and Deep Brain Stimulation
- Reviews the anatomical models of pathophysiology and physiology
- Discusses the instrumental and analytical misrepresentations and the inferences that misrepresent the data in Nonmonotonic Nonlinear Dynamics
- ASIN : B0C8T552LK
- Publisher : Academic Press (June 30, 2023)
- Publication date : June 30, 2023
- Language : English
- Page numbers source ISBN : 0443216991