Thermoregulation Part I: From Basic Neuroscience to Clinical Neurology: Handbook of Clinical Neurology, cartea 156
Andrej A. Romanovskyen Limba Engleză Hardback – 12 dec 2018
In addition, the book covers the physiology and neuroanatomy of the thermoregulation system and provides descriptions of how the regulation of body temperature intervenes with other physiological functions (such as sleep, osmoregulation, and immunity), stress, exercise and aging. Basic sections serve as an introduction to the four clinical sections: Body Temperature, Clinical Significance, Abnormal Body Temperature, Thermoregulation in Neurological Disease and Therapeutic Interventions.
- Presents a clear, logical pathway from the fundamental physiology of thermoregulation, through neurobiology, to clinical applications and disease
- Enables researchers and clinicians to better understand the value of temperature measurement in disease and the use of temperature as a therapy
- Integrates content from a broad field of research, including topics on the molecular physiology of temperature receptors, to the management of accidental hypothermia
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Specificații
ISBN-13: 9780444639127
ISBN-10: 0444639128
Pagini: 496
Dimensiuni: 215 x 275 mm
Greutate: 1.36 kg
Editura: ELSEVIER SCIENCE
Seria Handbook of Clinical Neurology
ISBN-10: 0444639128
Pagini: 496
Dimensiuni: 215 x 275 mm
Greutate: 1.36 kg
Editura: ELSEVIER SCIENCE
Seria Handbook of Clinical Neurology
Public țintă
Basic and clinical researchers in neuroscience; fellows, residents, and practicing clinicians in neurology as well as other clinicians whose clinical focus includes temperature control (internal medicine, endocrinology)Cuprins
SECTION I. THERMOREGULATION SYSTEM
1. The thermoregulation system and how it works
SECTION II. THERMORECEPTORS
2. Peripheral thermoreceptors in innocuous temperature detection
3. Molecular basis of peripheral innocuous cold sensitivity
4. Molecular basis of peripheral innocuous warmth sensitivity
5. Peripheral and central determinants of skin wetness sensing in humans
6. Nociceptors. Thermal allodynia and thermal pain
7. Central thermoreceptors
8. Molecular Basis of Central Thermosensation
SECTION III. THERMOEFFECTORS
9. Brown adipose tissue as a heat-production thermoeffector
10. Shivering and nonshivering thermogenesis in skeletal muscles
11. Skin vasoconstriction as a heat-conservation thermoeffector
12. Cutaneous active vasodilation as a heat-loss thermoeffector
13. Sweating as a heat-loss thermoeffector
14. Panting as a heat-loss thermoeffector
15. Thermal comfort
SECTION IV. NEURAL PATHWAYS
16. Afferent pathways for autonomic and shivering thermoeffectors
17. Efferent neural pathways for the control of brown adipose tissue thermogenesis and shivering
18. Efferent thermoregulatory pathways regulating cutaneous blood flow and sweating
19. Central neural substrates involved in temperature discrimination, thermal pain, thermal comfort, and thermoregulatory behavior
SECTION V. THERMOREGULATION AS A HOMEOSTATIC FUNCTION
20. Body temperature and sleep
21. Skin Temperature, Sleep and Vigilance
22. Thermoregulation and the ultradian basic rest-activity cycle
23. Thermoregulation and age
24. Temperature and adaptive immunity
25. Interactions between body fluid homeostasis and thermoregulation in humans
26. Obesity and Thermoregulation
27. Thermoregulation and nausea
28. Neurogenesis in the thermoregulatory system
1. The thermoregulation system and how it works
SECTION II. THERMORECEPTORS
2. Peripheral thermoreceptors in innocuous temperature detection
3. Molecular basis of peripheral innocuous cold sensitivity
4. Molecular basis of peripheral innocuous warmth sensitivity
5. Peripheral and central determinants of skin wetness sensing in humans
6. Nociceptors. Thermal allodynia and thermal pain
7. Central thermoreceptors
8. Molecular Basis of Central Thermosensation
SECTION III. THERMOEFFECTORS
9. Brown adipose tissue as a heat-production thermoeffector
10. Shivering and nonshivering thermogenesis in skeletal muscles
11. Skin vasoconstriction as a heat-conservation thermoeffector
12. Cutaneous active vasodilation as a heat-loss thermoeffector
13. Sweating as a heat-loss thermoeffector
14. Panting as a heat-loss thermoeffector
15. Thermal comfort
SECTION IV. NEURAL PATHWAYS
16. Afferent pathways for autonomic and shivering thermoeffectors
17. Efferent neural pathways for the control of brown adipose tissue thermogenesis and shivering
18. Efferent thermoregulatory pathways regulating cutaneous blood flow and sweating
19. Central neural substrates involved in temperature discrimination, thermal pain, thermal comfort, and thermoregulatory behavior
SECTION V. THERMOREGULATION AS A HOMEOSTATIC FUNCTION
20. Body temperature and sleep
21. Skin Temperature, Sleep and Vigilance
22. Thermoregulation and the ultradian basic rest-activity cycle
23. Thermoregulation and age
24. Temperature and adaptive immunity
25. Interactions between body fluid homeostasis and thermoregulation in humans
26. Obesity and Thermoregulation
27. Thermoregulation and nausea
28. Neurogenesis in the thermoregulatory system
Recenzii
"…The book excels with comprehensiveness, completeness, adequate width and depth, homogeneity, clarity, and actuality, not to forget the great number of illustrative and helpful figures. It presents a clear, logical pathway from the fundamental physiology of thermoregulation, through neurobiology, to clinical applications and disease. Undoubtedly, it will become a must for physiologists, biologists, neurologists, anesthesiologists and all clinicians whose clinical focus includes temperature control, as e.g. in internal medicine and endocrinology…" --Jürgen Werner, Book Review: "Thermoregulation: From Basic Neuroscience to Clinical Neurology, Part 1", in Temperature, Volume 5, Issue 3, 2018. Taylor & Francis Online.