Application of Muscle/Nerve Stimulation in Health and Disease (eBook)

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2008 | 2008
XI, 118 Seiten
Springer Netherlands (Verlag)
978-1-4020-8233-7 (ISBN)

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Application of Muscle/Nerve Stimulation in Health and Disease -  Kristin Schaefer Centofanti,  Olga Hudlicka,  Gerta Vrbova
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The first evidence that electrical changes can cause muscles to contract was p- vided by Galvani (1791). Galvani's ideas about 'animal electricity' were explored during the 19th and 20th century when it was firmly established that 'electricity' is one of the most important mechanisms used for communication by the nervous system and muscle. These researches lead to the development of ever more soph- ticated equipment that could either record the electrical changes in nerves and muscles, or elicit functional changes by electrically stimulating these structures. It was indeed the combination of these two methods that elucidated many of the basic principles about the function of the nervous system. Following these exciting findings, it was discovered that electrical stimulation and the functions elicited by it also lead to long-term changes in the properties of nerves and particularly muscles. Recent findings help us to understand the mec- nisms by which activity induced by electrical stimulation can influence mature, fully differentiated cells, in particular muscles, blood vessels and nerves. Electrically elicited activity determines the properties of muscle fibres by activating a sequence of signalling pathways that change the gene expression of the muscle. Thus, elect- cal activity graduated from a simple mechanism that is used to elicit muscle c- traction, to a system that could induce permanent changes in muscles and modify most of its characteristic properties.
The first evidence that electrical changes can cause muscles to contract was p- vided by Galvani (1791). Galvani's ideas about 'animal electricity' were explored during the 19th and 20th century when it was firmly established that 'electricity' is one of the most important mechanisms used for communication by the nervous system and muscle. These researches lead to the development of ever more soph- ticated equipment that could either record the electrical changes in nerves and muscles, or elicit functional changes by electrically stimulating these structures. It was indeed the combination of these two methods that elucidated many of the basic principles about the function of the nervous system. Following these exciting findings, it was discovered that electrical stimulation and the functions elicited by it also lead to long-term changes in the properties of nerves and particularly muscles. Recent findings help us to understand the mec- nisms by which activity induced by electrical stimulation can influence mature, fully differentiated cells, in particular muscles, blood vessels and nerves. Electrically elicited activity determines the properties of muscle fibres by activating a sequence of signalling pathways that change the gene expression of the muscle. Thus, elect- cal activity graduated from a simple mechanism that is used to elicit muscle c- traction, to a system that could induce permanent changes in muscles and modify most of its characteristic properties.

Chapter 1: PLASTICITY OF THE MAMMALIAN MOTOR UNIT Chapter 2: CARDIOVASCULAR SYSTEM: CHANGES WITH EXERCISE TRAINING AND MUSCLE STIMULATION Chapter 3: ELECTRICAL STIMULATION AS A THERAPEUTIC TOOL TO RESTORE MOTOR FUNCTION Chapter 4: ELECTRICAL STIMULATION FOR HEALTH, BEAUTY, FITNESS, SPORTS TRAINING AND REHABILITATION

Erscheint lt. Verlag 19.4.2008
Reihe/Serie Advances in Muscle Research
Zusatzinfo XI, 118 p.
Verlagsort Dordrecht
Sprache englisch
Themenwelt Geisteswissenschaften Psychologie Klinische Psychologie
Medizin / Pharmazie Allgemeines / Lexika
Medizin / Pharmazie Gesundheitsfachberufe
Medizin / Pharmazie Medizinische Fachgebiete Neurologie
Medizin / Pharmazie Medizinische Fachgebiete Sportmedizin
Medizin / Pharmazie Pflege
Medizin / Pharmazie Physiotherapie / Ergotherapie Rehabilitation
Schlagworte Fitness • Health • Muscle • physiotherapy • Rehabilitation • rehabilitation psychology • spinal cord • Training
ISBN-10 1-4020-8233-9 / 1402082339
ISBN-13 978-1-4020-8233-7 / 9781402082337
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