Key result
This article provides a comprehensive review of the anatomical features, physiological characteristics, and pathophysiology of arterial chemoreceptors.
This article provides a comprehensive review of the anatomy, physiology, and pathophysiology of arterial chemoreceptors.
May inform hypoxia-related CV management; extends mechanistic synthesis but leaves open prospective trials.
The sections in this article are: Anatomical Features Physiological Characteristics Arterial Chemoreceptors in the Fetus and Newborn Peripheral Chemoreceptors in Adult Human Beings and Animals Adaptation of Response to CO 2 Oscillations of Chemoreceptor Activity Effects of Exercise Blood Pressure, Perfusate Flow, and Carotid Chemoreceptor Activity Oxygen Consumption and Tissue P O 2 Oxygen Content and Po 2 in Chemoreceptor Excitation Anesthetics and Peripheral Chemoreceptor Activity Effects of Temperature and Tonicity Pathophysiology of Peripheral Chemoreceptors Cellular Electrophysiological Mechanisms Glomus Cells Possible Role of Carotid Body Cells as Conditioners or Inductors of Chemosensory Activity Chemosensory Nerve Endings Mass Receptor Potential of Chemoreceptors Recordings From Single Nerve Fibers and Endings Hypotheses of Chemoreception Hypotheses Involving Neurotransmitters Mechanoreceptor Hypotheses Hypotheses Based on pH Sensitivity Protein Receptor Hypothesis Metabolic Hypothesis Interactions Between Nerves and Carotid Body Cells Result of Efferent Input on Carotid Body Afferent Output Physiological Significance of Carotid Nerve Efferent Input Peripheral Chemoreceptors and Cardiovascular Control Chemoreceptor Stimulation in the Normoxic Animal Perfusion of Isolated Aortic and Carotid Chemoreceptors with Hypoxic and Hypoxic‐Hypercapnic Blood Cardiovascular Adjustments to Acute Systemic Hypoxia Chemoreceptor Activity and Regional Blood Flow Conclusions
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Eyzaguirre et al. (1983) conducted a review in Arterial Chemoreceptors. This article provides a comprehensive review of the anatomical features, physiological characteristics, and pathophysiology of arterial chemoreceptors.
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