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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Additional resources for Central Neural Mechanisms in Cardiovascular Regulation
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.