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E-grāmata: Physiology of Exercise in Spinal Cord Injury

  • Formāts: PDF+DRM
  • Sērija : Physiology in Health and Disease
  • Izdošanas datums: 20-Dec-2016
  • Izdevniecība: Springer-Verlag New York Inc.
  • Valoda: eng
  • ISBN-13: 9781493966646
  • Formāts - PDF+DRM
  • Cena: 213,54 €*
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  • Formāts: PDF+DRM
  • Sērija : Physiology in Health and Disease
  • Izdošanas datums: 20-Dec-2016
  • Izdevniecība: Springer-Verlag New York Inc.
  • Valoda: eng
  • ISBN-13: 9781493966646

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Every year, around the world, between 250,000 and 500,000 people suffer a spinal cord injury (SCI). Those with an SCI are two to five times more likely to die prematurely than people without a spinal cord injury, with worse survival rates in low- and middle-income countries. Dynamic aerobic requires integrated physiologic responses across the musculoskeletal, cardiovascular, autonomic, pulmonary, thermoregulatory, and immunologic systems. Moreover, regular aerobic exercise beneficially impacts these same systems, reducing the risk for a range of diseases and maladies. This book will present comprehensive information on the unique physiologic effects of SCI and the potential role of exercise in treating and mitigating these effects. In addition, it will incorporate work from scientists across a number of disciplines and have contributors at multiple levels of investigation and across physiologic systems. Furthermore, SCI can be considered an accelerated form of aging due to the severely restricted physical inactivity imposed, usually at an early age. Therefore, the information presented may have a broader importance to the physiology of aging as it relates to inactivity. Lastly, the need for certain levels of regular aerobic exercise to engender adaptations beneficial to health is not altered by the burden of an SCI. Indeed, the amounts of exercise necessary may be even greater than the able-bodied due to ‘passive’ ambulation. This book will also address the potential health benefits for those with an SCI that can be realized if a sufficient exercise stimulus is provided.

Recenzijas

This book offers a well-written and well-referenced comprehensive review of the physiological responses to exercise performed by people with spinal cord injury. Rehabilitation clinicians are likely to find this book of particular interest, as will clinical researchers who are investigating this important and increasingly commonly studied topic. a much needed and unmatched single comprehensive reference for professionals who are studying and designing clinical, community, or research programs on the topic of exercise for people with spinal cord injury. (Elliot J. Roth, Doodys Book Reviews, April, 2017)

1 The Physiology of Exercise in Spinal Cord Injury (SCI): An Overview of the Limitations and Adaptations
1(12)
Hannah W. Mercier
J. Andrew Taylor
2 Physiology of Motor Deficits and the Potential of Motor Recovery After a Spinal Cord Injury
13(24)
V. Reggie Edgerton
Roland R. Roy
3 Role of Activity in Defining Metabolic and Contractile Adaptations After SCI
37(14)
Gaelle Deley
4 Respiratory System Responses to Exercise in Spinal Cord Injury
51(26)
Christopher R. West
Andrew W. Sheel
Lee M. Romer
5 Alterations in Cardiac Electrophysiology After Spinal Cord Injury and Implications for Exercise
77(28)
Heidi L. Lujan
Stephen E. DiCarlo
6 Cardiovascular Responses to Exercise in Spinal Cord Injury
105(22)
Thomas J. Barton
David A. Low
Dick H.J. Thijssen
7 Thermoregulatory Considerations for the Performance of Exercise in SCI
127(34)
Christopher T. Minson
Vienna E. Brunt
8 Increased Bone Fracture After SCI: Can Exercise Reduce Risk?
161(14)
Adina E. Draghici
Sandra J. Shefelbine
9 Alterations in Body Composition After SCI and the Mitigating Role of Exercise
175(24)
David R. Gater
Gary J. Farkas
10 Cardiometabolic Syndrome in SCI: The Role of Physical Deconditioning and Evidence-Based Countermeasures
199(18)
Jennifer L. Maher
David W. McMillan
Mark S. Nash
11 The Effect of Acute and Chronic Exercise on Inflammatory Markers in SCI
217(16)
Christof A. Leicht
Nicolette C. Bishop
12 Role of Exercise in Alleviating Chronic Pain in SCI
233(10)
Thomas N. Bryce
13 Autonomic Alterations After SCI: Implications for Exercise Performance
243(26)
Aaron A. Phillips
Andrei V. Krassioukov
14 Hybrid Functional Electrical Stimulation Exercise for Improved Cardiorespiratory Fitness in SCI
269
Shuang Qiu
J. Andrew Taylor
Dr. Taylor is an integrative physiologist with a research focus on the human cardiovascular system and the effects of aging, exercise, and pathophysiology. He has conducted clinical/translational research on cardiovascular autonomic control at Harvard Medical School for over twenty years. His work has ranged across various pathophysiologic conditions, including chronic fatigue syndrome, disorders of sleep, and traumatic brain injury. A current primary area of research is exercise for those with spinal cord injuries to prevent inactivity-related cardiovascular deficits.