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Nanoengineering in Musculoskeletal Regeneration provides the reader
an updated summary of the therapeutic pipeline-from biomedical
discovery to clinical implementation-aimed at improving treatments
for patients with conditions of the muscles, tendons, cartilage,
meniscus, and bone. Regenerative medicine focuses on using stem
cell biology to advance medical therapies for devastating
disorders. This text presents novel, significant, and
interdisciplinary theoretical and experimental results related to
nanoscience and nanotechnology in musculoskeletal regeneration.
Content includes basic, translational, and clinical research
addressing musculoskeletal repair and regeneration for the
treatment of diseases and injuries of the skeleton and its
associated tissues. Musculoskeletal degeneration and complications
from injuries have become more prevalent as people live longer and
increasingly participate in rigorous athletic and recreational
activities. Additionally, defects in skeletal tissues may
immobilize people and cause inflammation and pain. Musculoskeletal
regeneration research provides solutions to repair, restore, or
replace skeletal elements and associated tissues that are affected
by acute injury, chronic degeneration, genetic dysfunction, and
cancer-related defects. The goal of musculoskeletal regeneration
medicine research is to improve quality of life and outcomes for
people with musculoskeletal injury or degradation.
Neural Regenerative Nanomedicine presents novel, significant,
experimental results relating to nanoscience and nanotechnology in
neural regeneration. As current research is at the forefront of
healing the nervous system, the content in the book focuses on
basic, translational and clinical research in neural repair and
regeneration. Chapters focus on stem cell biology to advance
medical therapies for devastating disorders, the complex, delicate
structures that make up the nervous system, and neurodegenerative
diseases that cause progressive deterioration, including
Alzheimer's disease, Parkinson's disease, amyotrophic lateral
sclerosis (ALS), multiple sclerosis and multiple system atrophy.
Nanobiomaterials Science, Development and Evaluation examines the
practical aspects of producing nanostructured biomaterials for a
range of applications. With a strong focus on materials, such as
metals, ceramics, polymers, and composites, the book also examines
nanostructured coatings and toxicology aspects. Chapters in Part
One look at materials classes and their synthesis with information
on all major material groups. Part Two focuses on nanostructured
coatings and practical aspects associated with the use of
nanobiomaterials in vivo. This book brings together the work of
international contributors who are actively engaged on the
forefront of research in their respective disciplines, and is a
valuable resource for materials scientists in academia, industry,
and all those who wish to broaden their knowledge in the allied
field.
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