Molecular Sensors for Cardiovascular Homeostasis
(Sprache: Englisch)
This book is aimed at providing the state-of-the-art reviews which define how the biologic systems sense changes in environment, alter their activities or function, and cross talk with other neurohormonal systems to modulate cardiovascular/renal function and blood pressure.
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Produktdetails
Produktinformationen zu „Molecular Sensors for Cardiovascular Homeostasis “
This book is aimed at providing the state-of-the-art reviews which define how the biologic systems sense changes in environment, alter their activities or function, and cross talk with other neurohormonal systems to modulate cardiovascular/renal function and blood pressure.
Klappentext zu „Molecular Sensors for Cardiovascular Homeostasis “
The biomolecular basis underlying essential hypertension and end organ damage associated with hypertension is characterized as polygenic diseases with complexities such as "environment gene" and "gene-gene" interactions. Despite intensive research in this field, this molecular book is aimed at providing the state-of-the-art reviews which define how the biologic systems sense changes in environment, alter their activities or function, and cross talk with other neurohormonal systems to modulate cardiovascular/renal function and blood pressure. This title will attract scientists and investigators in both academic and industrial fields, and clinicians.
Inhaltsverzeichnis zu „Molecular Sensors for Cardiovascular Homeostasis “
- The role of DEG/ENaC ion channels in sensory mechanotransduction- ASICS function as cardiac lactic acid sensors during myocardial ischemia
- Molecular Components of Neural Sensory Transduction DEG/ENac Proteins in baro and chemoreceptors
- TRP Channels as Molecular Sensors of Physical Stimuli
- TRPV1 in Central cardiovascular control: Discerning the C-fiber afferent pathway
- TRPV1 as a molecular transducer for salt and water homeostasis
- Functional interaction between ATP and TRPV1 receptors
- TRPV4 and hypotonic stress
- Ion Channels in Shear Stress Sensing in Vascular Endothelium - Ion Channels in Vascular Mechanotransduction
- Redox signaling in oxygen sensing by vessels
- Impedance spectroscopy and quartz crystal microbalance: Noninvasive tools to analyze ligand-receptor interactions at functionalized surfaces and of cell monolayers
Bibliographische Angaben
- 2007, 2007, 212 Seiten, Maße: 16 x 24,1 cm, Gebunden, Englisch
- Herausgegeben: D. H. Wang
- Verlag: Springer
- ISBN-10: 0387475281
- ISBN-13: 9780387475288
- Erscheinungsdatum: 15.05.2007
Sprache:
Englisch
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