Motor System and Motor Diseases: From Molecules to Circuits

Motor System and Motor Diseases: From Molecules to Circuits
Author :
Publisher : Frontiers Media SA
Total Pages : 355
Release :
ISBN-10 : 9782889637348
ISBN-13 : 2889637344
Rating : 4/5 (344 Downloads)

Book Synopsis Motor System and Motor Diseases: From Molecules to Circuits by : Jing-Ning Zhu

Download or read book Motor System and Motor Diseases: From Molecules to Circuits written by Jing-Ning Zhu and published by Frontiers Media SA. This book was released on 2020-06-04 with total page 355 pages. Available in PDF, EPUB and Kindle. Book excerpt: Movement is the basis for many forms of behaviors, and is tightly controlled by a hierarchical system containing cerebral cortex, basal ganglia, cerebellum, brainstem, and spinal cord. Each level of this hierarchy contributes to motor planning, motor initiation, motor execution, and motor coordination, respectively. However, they all receive continuous sensory inputs and generate accurate sensorimotor integrations that are necessary for both predictive and reflexive/servo controls of movements. The motor system contains various types of neurons with different morphological, neurochemical and electrophysiological properties, which are significantly dependent on many intracellular signaling molecules. Interestingly, these neurons are interconnected by intricate neuronal circuits for motor control, and even interacted with other non-motor systems to orchestrate somatic-nonsomatic integration. Furthermore, synaptic and neural plasticity endows motor system with amazing abilities for not only motor learning but also compensation and recovery from motor diseases, such as Parkinson’s disease, ataxias, motion sickness and amyotrophic lateral sclerosis, etc. Therefore, the motor system is of great importance for understanding information processing, integrative function, and neural plasticity of the central nervous system. The aim of this Research Topic is to discuss the latest advances in our understanding of motor system, motor control, motor learning and motor diseases from molecular, cellular, synaptic, circuit, and behavioral levels, especially in an integrative perspective.


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