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Table of Contents

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    Book Overview
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    Chapter 2 Immunolocalization of Tandem Pore Domain K + Channels in the Rat Carotid Body
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    Chapter 3 Neuroglobin, a New Oxygen Binding Protein is Present in the Carotid Body and Increases after Chronic Intermittent Hypoxia
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    Chapter 4 Hypoxia-Inducible Factor (HIF)-1α and Endothelin-1 Expression in the Rat Carotid Body during Intermittent Hypoxia
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    Chapter 5 Expression of HIF-2α and HIF-3α in the Rat Carotid Body in Chronic Hypoxia
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    Chapter 6 Modulation of Gene Expression in Subfamilies of TASK K + Channels by Chronic Hyperoxia Exposure in Rat Carotid Body
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    Chapter 7 Postnatal Changes in Gene Expression of Subfamilies of TASK K + Channels in Rat Carotid Body
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    Chapter 8 Morphological Changes in the Rat Carotid Body in Acclimatization and Deacclimatization to Hypoxia
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    Chapter 9 Effect of Carbon Dioxide on the Structure of the Carotid Body A comparison between normoxic and hypoxic conditions
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    Chapter 10 S-Nitrosoglutathione (SNOG) Accumulates Hypoxia Inducible Factor-1α in Main Pulmonary Artery Endothelial Cells but not in Micro Pulmonary Vessel Endothelial Cells
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    Chapter 11 Changes in Antioxidant Protein SP-22 of Chipmunk Carotid Bodies during the Hibernation Season
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    Chapter 12 Potential Role of Mitochondria in Hypoxia Sensing by Adrenomedullary Chromaffin Cells
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    Chapter 13 Localization of Ca/Calmodulin-Dependent Protein Kinase I in the Carotid Body Chief Cells and the Ganglionic Small Intensely Fluorescent (SIF) Cells of Adult Rats
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    Chapter 14 Dual Origins of the Mouse Carotid Body Revealed by Targeted Disruption of Hoxa3 and Mash1
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    Chapter 15 Genetic Regulation of Chemoreceptor Development in DBA/2J and A/J Strains of Mice
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    Chapter 16 Genetic Influence on Carotid Body Structure in DBA/2J and A/J Strains of Mice
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    Chapter 17 The Effect of Hyperoxia on Reactive Oxygen Species (ROS) in Petrosal and Nodose Ganglion Neurons during Development (Using Organotypic Slices)
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    Chapter 18 Carotid Body Volume in Three-Weeks-Old Rats Having an Episode of Neonatal Anoxia
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    Chapter 19 The Effect of Development on the Pattern of A1 and A2a-Adenosine Receptor Gene and Protein Expression in Rat Peripheral Arterial Chemoreceptors
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    Chapter 20 A Comparative Study of the Hypoxic Secretory Response between Neonatal Adrenal Medulla and Adult Carotid Body from the Rat
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    Chapter 21 In Search of the Acute Oxygen Sensor
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    Chapter 22 Does AMP-activated Protein Kinase Couple Inhibition of Mitochondrial Oxidative Phosphorylation by Hypoxia to Pulmonary Artery Constriction?
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    Chapter 23 Function of NADPH Oxidase and Signaling by Reactive Oxygen Species in Rat Carotid Body Type I Cells
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    Chapter 24 Hypoxemia and Attenuated Hypoxic Ventilatory Responses in Mice Lacking Heme Oxygenase-2
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    Chapter 25 Regulation of a TASK-like Potassium Channel in Rat Carotid Body Type I Cells by ATP
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    Chapter 26 Accumulation of Radiolabeled N -Oleoyl-Dopamine in the Rat Carotid Body
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    Chapter 27 Profiles for ATP and Adenosine Release at the Carotid Body in Response to O 2 Concentrations
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    Chapter 28 Hypoxic Regulation of Ca 2+ Signalling in Astrocytes and Endothelial Cells
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    Chapter 29 Does AMP-activated Protein Kinase Couple Hypoxic Inhibition of Oxidative Phosphorylation to Carotid Body Excitation?
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    Chapter 30 Mitochondrial ROS Production Initiates Aβ1-40-Mediated Up-Regulation of L-Type Ca2+ Channels during Chronic Hypoxia
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    Chapter 31 Acute hypoxic regulation of recombinant THIK-1 stably expressed in HEK293 cells.
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    Chapter 32 Differential Expression of Oxygen Sensitivity in Voltage-Dependent K Channels in Inbred Strains of Mice
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    Chapter 33 An Overview on the Homeostasis of Ca 2+ in Chemoreceptor Cells of the Rabbit and Rat Carotid Bodies
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    Chapter 34 Midbrain Neurotransmitters in Acute Hypoxic Ventilatory Response
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    Chapter 35 Chronic Intermittent Hypoxia Enhances Carotid Body Chemosensory Responses to Acute Hypoxia
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    Chapter 36 The Cell-Vessel Architecture Model for the Central Respiratory Chemoreceptor
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    Chapter 37 Loop Gain of Respiratory Control upon Reduced Activity of Carbonic Anhydrase or Na + /H + Exchange
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    Chapter 38 Adrenaline Increases Carotid Body CO 2 Sensitivity: An in vivo Study
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    Chapter 39 Peripheral Chemoreceptor Activity on Exercise-Induced Hyperpnea in Human
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    Chapter 40 Effects of Low-Dose Methazolamide on the Control of Breathing in Cats
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    Chapter 41 Stimulus Interaction between Hypoxia and Hypercapnia in the Human Peripheral Chemoreceptors
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    Chapter 42 Gene Expression and Signaling Pathways by Extracellular Acidification
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    Chapter 43 Hypoxic Modulation of the Cholinergic System in the Cat Carotid Glomus Cell
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    Chapter 44 Are There “CO 2 Sensors” in the Lung?
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    Chapter 45 Nitric Oxide in Brain Glucose Retention after Carotid Body Receptors Stimulation with Cyanide in Rats
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    Chapter 46 Pulmonary Nociceptors are Potentially Connected with Neuroepithelial Bodies
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    Chapter 47 Modulators of Cat Carotid Body Chemotransduction
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    Chapter 48 Identification and Characterization of Hypoxia Sensitive Kvα Subunits in Pulmonary Neuroepithelial Bodies
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    Chapter 49 Voltage-Dependent K Channels in Mouse Glomus Cells are Modulated by Acetylcholine
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    Chapter 50 Modification of the Glutathione Redox Environment and Chemoreceptor Cell Responses
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    Chapter 51 Carotid Body Transmitters Actions on Rabbit Petrosal Ganglion in Vitro
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    Chapter 52 Potassium Channels in the Central Control of Breathing
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    Chapter 53 Role of Endothelin-1 on the Enhanced Carotid Body Activity Induced by Chronic Intermittent Hypoxia
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    Chapter 54 Concluding Remarks
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Published by
Springer US, April 2006
DOI 10.1007/0-387-31311-7
978-0-387-31310-8, 978-0-387-31311-5

Hayashida, Yoshiaki, Gonzalez, Constancio, Kondo, Hisatake

Mendeley readers

The data shown below were compiled from readership statistics for 2 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 2 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 1 50%
Researcher 1 50%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 1 50%
Agricultural and Biological Sciences 1 50%