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Nervous system --- Axonal transport --- Nerves --- Regeneration --- Growth --- Nervous system - Regeneration --- Nerves - Growth
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Nervous system --- Regeneration. --- Nerve regeneration --- Nervous system regeneration --- Neural regeneration --- Neuron regeneration --- Nerve grafting --- Regeneration (Biology) --- Degeneration and regeneration
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This second edition updates the burgeoning field of regeneration in the Central Nervous System (CNS) from molecular, systems, and disease-based perspective. While the book covers numerous areas in detail, special emphasis is given to discussions of movement disorders such as Parkinson's disease, Alzheimer's disease, and spinal cord injury.* Incorporates information gained from cutting-edge photomicroscopy techniques* Includes current information on clinical trials* Presents chapters on stem cells and other novel treatments for diseases of the CNS
Central nervous system --- Nervous system --- Regeneration. --- Nerve regeneration --- Nervous system regeneration --- Neural regeneration --- Neuron regeneration --- Nerve grafting --- Regeneration (Biology) --- Degeneration and regeneration
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(will follow).
Cell proliferation --- Cerebral ischemia --- Nervous system --- Molecular aspects. --- Regeneration. --- Nerve regeneration --- Nervous system regeneration --- Neural regeneration --- Neuron regeneration --- Nerve grafting --- Regeneration (Biology) --- Brain ischemia --- Cerebrovascular disease --- Ischemia --- Molecular biology --- Degeneration and regeneration --- Neurosciences. --- Neural sciences --- Neurological sciences --- Neuroscience --- Medical sciences
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Brain --- Nervous system --- Neurology --- Brain Diseases --- Brain Injuries --- Nerve Regeneration --- Diseases --- Congresses --- Regeneration --- Congresses. --- congresses. --- Brain - Diseases - Congresses --- Nervous system - Regeneration - Congresses --- Neurology - Congresses --- Brain Diseases - congresses --- Brain Injuries - congresses --- Nerve Regeneration - congresses
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This book focuses on the recent innovations and therapeutic potentials of regenerative medicine and discusses the applications of stem cells, biomaterials, and tissue engineering in regenerative medicine. The book covers essential aspects of regenerative medicine, including tissue microenvironment, immunological perspectives, stem, and non-stem cell-mediated approaches, imaging techniques, biomarkers, and 3D printing technology. It also reviews the applications of biosensing technologies in regenerative medicine, including biomanufacturing, organ-on-a-chip technologies, and as indicators of therapeutic efficacy. Further, it focuses on the regenerative medicine approaches for diseases of the central nervous system. It also provides the therapeutic potential of regenerative medicine to improve soft tissue and wound healing, cardiovascular, neural, bone, and orofacial regeneration.
Regenerative medicine. --- Stem cells. --- Nervous system—Regeneration. --- Biomaterials. --- Cells. --- Regenerative Medicine and Tissue Engineering. --- Stem Cell Biology. --- Regeneration and Repair in the Nervous System. --- Biomaterials-Cells. --- Organisms --- Cytology --- Colony-forming units (Cells) --- Mother cells --- Progenitor cells --- Cells --- Medicine --- Regeneration (Biology)
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Brain --- Neuronal Plasticity --- Regeneration --- Brain Injuries --- Neuroplasticity --- Nervous system --- Brain damage --- physiology --- Growth --- 615.8 --- -Brain damage --- -Neuroplasticity --- Nervous system plasticity --- Neural adaptation --- Neural plasticity --- Neuronal adaptation --- Neuronal plasticity --- Plasticity, Nervous system --- Soft-wired nervous system --- Synaptic plasticity --- Adaptation (Physiology) --- Neurophysiology --- Developmental neurobiology --- Organs (Anatomy) --- Neurosciences --- Psychology, Pathological --- Cerebrum --- Mind --- Central nervous system --- Head --- Fysiotherapie. Fysische therapie. Radiotherapie. Andere niet-medicinale therapeutische behandelingen --- Diseases --- Wounds and injuries --- Nerve regeneration --- Nervous system regeneration --- Neural regeneration --- Neuron regeneration --- Nerve grafting --- Regeneration (Biology) --- Degeneration and regeneration --- Brain - physiology --- Brain - Growth --- Nervous system - Regeneration
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Facial nerve surgery inevitably leads to partial pareses, abnormally associated movements and pathologically altered reflexes. The reason for this "post-paralytic syndrome" is the misdirected reinnervation of targets, which consists of two major components. First, due to malfunctioning axonal guidance, a muscle gets reinnervated by a "foreign" axon, that has been misrouted along a "wrong" fascicle. Second, the supernumerary collateral branches emerging from all transected axons simultaneously innervate antagonistic muscles and cause severe impairment of their coordinated activity. Since it is hardly possible to influence the first major component and improve the guidance of several thousands axons, the authors concentrated on the second major component and tried to reduce the collateral axonal branching.
Nervous system --- Axons --- Nerves, Peripheral --- Facial nerve --- Muscles --- Regeneration. --- Physiology. --- Wounds and injuries. --- Innervation. --- Muscle --- Musculature --- Myodynamics --- Myology --- Musculoskeletal system --- Tissues --- Nerves, Cranial --- Nerve axons --- Neurons --- Nerve regeneration --- Nervous system regeneration --- Neural regeneration --- Neuron regeneration --- Nerve grafting --- Regeneration (Biology) --- Degeneration and regeneration --- Neurosciences. --- Neural sciences --- Neurological sciences --- Neuroscience --- Medical sciences
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This book provides the latest findings on neuroprotection and neuroregeneration as potential therapeutic strategies for various eye diseases, namely, glaucoma, age-related macular degeneration (AMD), retinal detachment, and retinitis pigmentosa. Glaucoma is one of the main causes of blindness throughout the world, and other diseases such as AMD and retinitis pigmentosa also lead to loss of vision. All these conditions are characterized by degeneration of specific retinal cell types, making it essential to establish treatments to protect retinal neurons and the optic nerve. With that aim in mind, this book explains the mechanisms underlying aforementioned diseases and their experimental models. The novel strategy proposals for the treatment of retinal diseases based on the concept of neuroprotection are also discussed in the main body of the text, while the section on regenerative research discusses optic nerve regeneration, endothelial progenitor cells, and iPS cells. This book is recommended as a professional reference work for all doctors and trainees in the field of ophthalmology who are interested in neuroprotective and neuroregenerative treatments.
Retina --- Nervous system --- Diseases. --- Regeneration. --- Nerve regeneration --- Nervous system regeneration --- Neural regeneration --- Neuron regeneration --- Nerve grafting --- Regeneration (Biology) --- Degeneration and regeneration --- Ophthalmology. --- Neurology. --- Regenerative Medicine/Tissue Engineering. --- Medicine --- Neuropsychiatry --- Eye --- Diseases --- Neurology . --- Regenerative medicine. --- Tissue engineering. --- Biomedical engineering --- Regenerative medicine --- Tissue culture
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