Central Neural Mechanisms in Cardiovascular Regulation by John P. Chalmers, Emilio Badoer, David Morilak, Guy Drolet,

By John P. Chalmers, Emilio Badoer, David Morilak, Guy Drolet, Jane B. Minson (auth.), George Kunos, John Ciriello (eds.)

Part I Ventral Medullary Mechanisms.- 1. Afferent Inputs to Ventrolateral Medulla.- 2. common Autonomic Afferents to the Nucleus Paragigantocellularis of the Rostral Ventrolateral Medulla.- three. law of Autonomic Cardiovascular functionality through the Rostral Ventromedial Medulla.- four. Flexibility of the Map of Brainstem Neurons with Sympathetic Nerve-Related Activity.- five. Imidazole Receptors and their Endogenous Ligand within the Rostral Ventrolateral Medulla: dating to the motion of Clonidine on Arterial Pressure.- 6. The function of the Rostral Ventrolateral Medulla within the Synchronization of respiration and Sympathetic Functions.- part II crucial Neurotransmitter Systems.- 7. interplay of Angiotensin II with Catecholamines within the Brain.- eight. activities of Angiotensin II within the Ventrolateral Medulla Oblongata.- nine. Cardiovascular activities of Angiotensin II within the Ventrolateral Medulla.- 10. Endorphinergic Neurons within the Brainstem: position in Cardiovascular Regulation.- eleven. Endogenous Opioid Peptides, Glucocorticoids, and surprise: Specificity, website, and Mechanism of Action.- 12. Neuropeptides in critical Baroreceptor Reflex Pathways.- thirteen. Adenosine in crucial Cardiovascular Control.- part III keep watch over of Sympathetic Tone, Hypertensive Mechanisms.- 14. Spinal Mechanisms within the Sympathetic keep watch over of Cardiac Function.- 15. The functionality of Catecholamines within the keep an eye on of Sympathetic Preganglionic Neurons.- sixteen. Contribution of Forebrain buildings to the improvement of Neurogenic Hypertension.- 17. Mechanisms of Differential Cardiovascular Responsiveness to 2-Deoxyglucose-Induced significant Glycopenia in wide awake Spontaneously Hypertensive and Wistar Kyoto Rats.- 18. High-Renin Renal high blood pressure Depresses the Baroreflex keep an eye on of center expense and Sympathetic Activity.- 19. Opioidergic-Dopaminergic interplay in high blood pressure.

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1990). gc. neurons in chloralose-anesthetized cats, cohered to the arterial pulse but not to the EEG. LTF unit activity tended to be more strongly related to SND in DU-anesthetized than in chloralose-anesthetized cats. The coherence of LTF unit activity and SND in DU-anesthetized cats was strongest at the frequency of the heart rate.

1981), but contained only a few scattered retrogradely labeled neurons from PGi in our study. Large injections of PHA-L or WGA-HRP into the inferior colliculus yielded substantial anterograde labeling in the superior olivary nucleus and nucleus of the trapezoid body and moderate labeling in a restricted portion of the juxtafacial PGi. , 1981). Injections into these nuclei yielded anterograde labeling in structures nearby PGi but not in PGi proper. Retrograde Tracing Studies from Juxtafacial PGi We have recently initiated a study of the afferents to the rostral, juxtafacial PGi and the initial results are noteworthy.

1). , 1990). This was the case even though mean arterial pressure in chloralose-anesthetized cats (118 ± 8 mm Hg) was the same as in DU-anesthetized cats (117 ± 6 mm Hg). 1). J. Kenney et al. 0 AP Autospectrum AP~SND [I ! 05 ..... ;; c CIJ ..... 05 \ \ 0 I EEG Autospectrum . 0 ! I I ! 1. Relationships among arterial pulse (AP), inferior cardiac sympathetic nerve discharge (SND), and frontal-parietal cortical activity (EEG) in a chloraloseanesthetized cat. A: Oscilloscopic records. Vertical calibration (amplified signals) is 90 mV for SND and 55 mV for EEG.

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