Clinical Biomechanics in Human Locomotion: Gait and Pathomechanical Principles
Clinical Biomechanics in Human Locomotion: Gait and Pathomechanical Principles
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Clinical Biomechanics in Human Locomotion: Gait and Pathomechanical Principles explores the clinical management of gait-disturbing or gait-induced pathologies and biomechanical variances during gait between individuals, discussing the interaction of genetics, epigenetics, developmental biology, and physiology. It also considers lifestyle and gait speed adaptability established during anatomical development.
Format: Paperback / softback
Length: 934 pages
Publication date: 13 April 2023
Publisher: Elsevier Science Publishing Co Inc
Clinical Biomechanics in Human Locomotion delves into the comprehensive realm of clinical management, encompassing gait-disturbing or gait-induced pathologies and biomechanical variances observed during human gait. This insightful text explores the essential elements necessary to ensure the safety of terrestrial human locomotion, while also shedding light on the underlying causes of pathology within a framework characterized by remarkable locomotive and morphological variability. The intricate interplay of genetics, epigenetics, developmental biology, and physiology, influenced by locomotive biomechanics and metabolic energetics, propels the evolution of life forms. Understanding these biological pressures on survival is paramount in comprehending the locomotive biomechanics of modern humans. Furthermore, the influence of lifestyle factors, particularly the adaptability of gait speed established during the growth phases, plays a significant role in shaping anatomical development.
The clinical management of gait-disturbing or gait-induced pathologies is a central focus of Clinical Biomechanics in Human Locomotion. The book delves into the intricate mechanisms underlying these conditions, shedding light on the factors that contribute to their development and progression. By understanding the underlying biomechanical principles, healthcare professionals can develop targeted interventions and therapies to improve patient outcomes.
One of the key aspects of the book is its exploration of the relationship between genetics, epigenetics, developmental biology, and physiology. The authors argue that these disciplines are interconnected and that understanding the interplay between them is essential for comprehending human locomotion. They discuss how genetic variations can influence gait patterns, how epigenetic factors can modify gene expression, and how developmental processes shape the structure and function of the musculoskeletal system.
The authors also emphasize the role of locomotive biomechanics and metabolic energetics in driving evolution. They argue that the pressures imposed by environmental factors, such as habitat and predation, have shaped the evolution of human locomotion over millions of years. By studying the biomechanics and energetics of human gait, researchers can gain insights into the adaptations that have allowed humans to thrive in diverse environments.
In addition to the clinical management of gait-disturbing pathologies, Clinical Biomechanics in Human Locomotion also addresses the influence of lifestyle factors on anatomical development. The authors discuss how gait speed adaptability, established during the growth phases, can impact the overall structure and function of the musculoskeletal system. They highlight the importance of maintaining a healthy lifestyle, including regular exercise and proper nutrition, in promoting optimal gait and preventing gait-related disorders.
The book is well-organized and accessible, with clear explanations and illustrations that help to reinforce the concepts presented. It includes a comprehensive bibliography that provides further resources for researchers and healthcare professionals interested in the field.
In conclusion, Clinical Biomechanics in Human Locomotion is a valuable resource for researchers, healthcare professionals, and anyone interested in understanding the complex mechanics of human gait. By exploring the relationship between genetics, epigenetics, developmental biology, physiology, locomotive biomechanics, and metabolic energetics, the book provides a comprehensive understanding of the factors that contribute to human locomotion and its associated pathologies. This knowledge can be used to develop targeted interventions and therapies that improve patient outcomes and promote optimal health and well-being.
Weight: 2388g
Dimension: 213 x 276 x 47 (mm)
ISBN-13: 9780443158605
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