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Body Fluid Compartments With Main Ion Distribution
Brain Anatomy
Buffering Systems Present in the Body
Calcium Ion Entry and Exit from a Vascular Smooth Muscle Cell
Carbon Dioxide (Co2) Enters the Plasma in Molecular Form from the Tissues
Cardiac Conduction System
Cardiac Cycle: Mechanical, Electrical, and Acoustic Events
Cardiac Glycosides
Cardiac Output Can Increase Nearly Fourfold Without Greatly Increasing the Pulmonary Arterial Pressure
Cardiac Sympathetic and Parasympathetic Nerves
Cell Cycle Specificity of Chemotherapy Agents
Cellular Mechanism Underlying Nociceptor Sensitization Induced by Peripheral Inflammation
Central Venous Waveform
Cerebral Blood Flow is Influenced by Pao2, Paco2, and Mean Arterial Pressure (MAP)
Cerebral Blood Flow Measured in the Presence of Normocapnia and in the Absence of Surgical Stimulation
Cerebral Spinal Fluid Fluxes in and Out of the Ventricles With the Cardiac Cycle
Changes in Maternal Pulmonary Function
Changes in Respiratory System Resistance As a Percentage of the Thiopental Baseline Recorded after Tracheal Intubation but Before the Addition of Sevoflurane or Desflurane to the Inhaled Gases or Beginning the Infusion of Thiopental Airway Resistance Responses to Sevoflurane Were Significantly Different from Desflurane and Thiopental
Chemical Structure of Fat-Soluble Vitamins
Chemical Structure of Thyroid Hormones
Chemical Structure of Water-Soluble Vitamins
Chemical Structures of Opium Alkaloids
Chemical Structures of the Steroidal Neuromuscular Blockers Pancuronium, Vecuronium, and Rocuronium
Classification of Acute Renal Failure
Comparative Changes (Expressed in % Changes [mean ± Sd]) from Control Values (C) in Systemic Vascular Resistance (SVR) in the 45 Minutes after the Administration of Thiopental, 5 mg/Kg IV (Open Circles), or Propofol, 25 mg/Kg IV (Solid Circles)
Comparison of Circulatory Effects of Enflurane after 1 Hour (Solid Line) and 6 Hours (Broken Line) of Administration During Controlled Ventilation of the Lungs to Maintain Normocapnia Cv, Cardiovascular
Comparison of Circulatory Effects of Halothane During Spontaneous Breathing (Sr) and Controlled Ventilation of the Lungs (Cr) after 1 and 5 Hours of Administration of Halothane
Comparison of Intravascular Pressures in the Systemic and Pulmonary Circulations
Comparison of the Composition of Body Weight to Caloric Stores
Complete Pulmonary Function Testing Will Provide Data on Lung Volumes and Capacities to Differentiate Obstructive from Restrictive Lung Diseases
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