Difference between revisions of "Cardiorespiratory System Overview - Anatomy & Physiology"
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+ | |linkpage =Anatomy and Physiology | ||
+ | |linktext =ANATOMY & PHYSIOLOGY | ||
+ | |thispagenormal = Cardiorespiratory System - Anatomy & Physiology | ||
+ | |thispagemap = Cardiorespiratory System (Content Map) - Anatomy & Physiology | ||
+ | |pagetype =Anatomy | ||
+ | }} | ||
+ | <br> | ||
+ | |||
==Introduction== | ==Introduction== | ||
+ | [[Image:Routeofairthroughrespiratorysystem.jpg|right|thumb|200px|'''Schematic Diagram showing the route air takes through the respiratory system''']] | ||
The mammalian cardiovascular and respiratory systems have evolved primarily to provide the tissues of the body with oxygen and to remove carbon dioxide. The cardiorespiratory system also has metabolic and heat exchange roles. | The mammalian cardiovascular and respiratory systems have evolved primarily to provide the tissues of the body with oxygen and to remove carbon dioxide. The cardiorespiratory system also has metabolic and heat exchange roles. | ||
− | ==Respiratory System== | + | ===Respiratory System=== |
− | Air is [[Ventilation - Anatomy & Physiology|inhaled]] and passes through the upper respiratory tract | + | Air is [[Ventilation - Anatomy & Physiology|inhaled]] and passes through the upper respiratory tract (nares, [[Nasal cavity - Anatomy & Physiology|nasal cavity]], [[Nasopharynx - Anatomy & Physiology|nasopharynx]], [[Larynx - Anatomy & Physiology|larynx]], [[Trachea - Anatomy & Physiology|trachea]]) where it is heated and moistened. It then passes to the lower respiratory tract ([[Bronchi and bronchioles - Anatomy & Physiology|bronchi, bronchioles]], [[Lungs - Anatomy & Physiology|alveoli]]) where oxygen diffuses across the alveolar wall and into the blood, forming oxyhaemoglobin. |
− | + | ===Cardiovascular System=== | |
− | == | + | Blood, which has been oxygenated by the [[Lungs - Anatomy & Physiology|lungs]], flows through the pulmonary vein to the left atrium of the heart and subsequently to the left ventricle from which it is ejected by the heart during ventricular systole. Oxygenated blood is then distributed to the different parts of the body via the aorta. The distribution of blood is controlled by vascular tone which dictates the degree of perfusion of capillary beds and therefore the amount of oxygen available to the various tissues. Carbon dioxide produced from cellular respiration is removed from the tissues and transported either attached to proteins, in solution or as bicarbonate via the venous system to the vena cavae and ultimately to the right atrium. The passage of venous blood is a product of blood flow, vascular valves and muscular and respiratory function. Carbon dioxide rich blood enters the right ventricle and is then pumped to the lungs via the pulmonary artery. |
+ | |||
+ | ===Integration=== | ||
+ | |||
+ | The function of the cardiac and respiratory systems are tightly linked and regulated to maintain blood pressure, tissue oxygen delivery and carbon dioxide removal. Cardiac function is controlled by baroreceptors (pressure receptors) which result in changes to the heartrate, contractility and vascular tone. Respiratory function is controlled centrally by chemoreceptors to maintain rate and both centrally and locally to maintain bronchiolar tone. | ||
+ | |||
+ | ==Upper Respiratory Tract== | ||
+ | |||
+ | [[Nasal cavity - Anatomy & Physiology|Nasal Cavity]] | ||
+ | |||
+ | [[Paranasal sinuses - Anatomy & Physiology|Paranasal Sinuses]] | ||
+ | |||
+ | [[Pharynx - Anatomy & Physiology|Pharynx]] | ||
+ | |||
+ | [[Guttural pouches - Anatomy & Physiology|Guttural Pouches]] | ||
+ | |||
+ | [[Larynx - Anatomy & Physiology|Larynx]] | ||
+ | |||
+ | [[Trachea - Anatomy & Physiology|Trachea]] | ||
+ | |||
+ | ==Lower Respiratory Tract== | ||
+ | |||
+ | [[Bronchi and bronchioles - Anatomy & Physiology|Bronchi & Bronchioles]] | ||
− | + | [[Lungs - Anatomy & Physiology|Anatomy of the Lungs]] | |
− | + | [[Ventilation - Anatomy & Physiology|Ventilation]] | |
− | + | [[Gas Exchange - Anatomy & Physiology|Gas Exchange]] | |
+ | [[Pleural cavity and membranes - Anatomy & Physiology|Pleural Cavity & Membranes]] | ||
+ | ==Cardiovascular System== | ||
− | + | [[Heart - Anatomy & Physiology|Heart]] | |
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− | + | [[Vascular System - Anatomy & Physiology|Vascular System]] | |
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− | == | + | ==Acknowledgements and Reference Material== |
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− | + | [[References for the Cardiorespiratory system - Anatomy & Physiology| References]] | |
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− | [[ | ||
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Revision as of 11:03, 9 September 2008
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Introduction
The mammalian cardiovascular and respiratory systems have evolved primarily to provide the tissues of the body with oxygen and to remove carbon dioxide. The cardiorespiratory system also has metabolic and heat exchange roles.
Respiratory System
Air is inhaled and passes through the upper respiratory tract (nares, nasal cavity, nasopharynx, larynx, trachea) where it is heated and moistened. It then passes to the lower respiratory tract (bronchi, bronchioles, alveoli) where oxygen diffuses across the alveolar wall and into the blood, forming oxyhaemoglobin.
Cardiovascular System
Blood, which has been oxygenated by the lungs, flows through the pulmonary vein to the left atrium of the heart and subsequently to the left ventricle from which it is ejected by the heart during ventricular systole. Oxygenated blood is then distributed to the different parts of the body via the aorta. The distribution of blood is controlled by vascular tone which dictates the degree of perfusion of capillary beds and therefore the amount of oxygen available to the various tissues. Carbon dioxide produced from cellular respiration is removed from the tissues and transported either attached to proteins, in solution or as bicarbonate via the venous system to the vena cavae and ultimately to the right atrium. The passage of venous blood is a product of blood flow, vascular valves and muscular and respiratory function. Carbon dioxide rich blood enters the right ventricle and is then pumped to the lungs via the pulmonary artery.
Integration
The function of the cardiac and respiratory systems are tightly linked and regulated to maintain blood pressure, tissue oxygen delivery and carbon dioxide removal. Cardiac function is controlled by baroreceptors (pressure receptors) which result in changes to the heartrate, contractility and vascular tone. Respiratory function is controlled centrally by chemoreceptors to maintain rate and both centrally and locally to maintain bronchiolar tone.