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Titlebook: Central Neural Mechanisms in Cardiovascular Regulation; Volume 2 George Kunos,John Ciriello Book 1992 Springer Science+Business Media New Y

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Natriuretic Peptide System in the Brain and Its Implication in Central Cardiovascular Regulation,he involvement of this peptide in the central regulation of cardiovascular homeostasis as a neurotransmitter or neuromodulation (Imura and Nakao, 1990; Nakao et al., 1986b; Quirion, 1988; Samson, 1987; Saper et al., 1985).
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Objektorientiertes Reverse Engineeringfication and extension of existing data regarding central nervous system (CNS) mechanisms controlling the physiological and behavioral response to stress might suggest new strategies for its better understanding and control.
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H.-J. Blaheta,W. Dummer,W. Remyle for the generation of a coordinated respiratory and sympathetic outflow. The related problem of how the cardiovagal parasympathetic output is matched to the respiratory activity will not be examined here (for reviews see Feldman and Ellenberger, 1988; Spyer and Gilbey, 1988; Richter and Spyer, 1990).
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Chemochirurgische Behandlung mit Phenolransmitter in the NTS acts physiologically in the regulation of AP has not been clearly elucidated. This chapter reviews the evidence that GABA, by acting on GABA. receptors in the NTS, contributes to the regulation of AP by modulating the baroreceptor reflex.
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Nancy Craighill,Vicki de Mey,Xavier Pintado intensity of activity and whether the exercise is dynamic or static. The general cardiovascular responses include an increase in heart rate (HR), mean arterial pressure (MAP), and sympathetic nerve activity (SNA). In dynamic exercise, cardiac output increases with increases in oxygen consumption wh
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Objektorientiertes Reverse Engineeringdiac arrhythmia, angina, myocardial infarction, and even sudden death. Nonetheless, we know little about the neural circuitry responsible for integrating the autonomic “stress response” above the level of the medulla-pons, and even less about the neuropharmacology of these higher pathways. The clari
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https://doi.org/10.1007/978-3-642-79336-3tal muscle. Taurine has been extensively studied for its cardiovascular actions. In stroke-prone spontaneously hypertensive rats (SHRSP) (Nara et al., 1978), spontaneously hypertensive rats (SHR) (Abe et al., 1987), and deoxycorticosterone acetate (DOCA)-salt hypertensive rats (Fujita and Sato, 1986
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