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https://www.uptodate.com/contents/oxygen-delivery-and-consumption
In dyshemoglobinemias, the oxygen content is calculated with the same equation, although the saturations (and therefore the oxygen content) will be different for a specific PaO 2 [1]. Normal CaO 2 is approximately 20 mL O 2 /dL.
https://rk.md/2017/oxygen-delivery-equation/
Mar 26, 2017 · One of the most important equations in physiology describes the delivery of oxygen to tissues in the body.Naturally, this would be related to the cardiac output (CO) and overall oxygen content in the blood (CaO2). As I wrote about in a previous post, the cardiac output is heavily dependent on a myriad of factors, but the CaO2 is described as follows: ...
https://www.openanesthesia.org/peripheral_oxygen_delivery/
Oxygen delivery to the periphery depends on the oxygen content of blood and tissue blood flow. The oxygen content of blood has two components: oxygen bound to hemoglobin and oxygen dissolved in plasma. Oxygen bound to hemoglobin is generally the much greater contributor to oxygen content.
http://www.learnhemodynamics.com/hemo/oxygen.htm
Oxygen Delivery - DO 2 The prime function of the circulation is to deliver oxygen and nutrients to the tissues and to remove waste products from them. If we know the cardiac output and the patient's haemoglobin level and oxygen saturation, then we can calculate one further critical value in hemodynamics - the oxygen delivery to the body or DO2.
http://www.e-safe-anaesthesia.org/e_library/02/Oxygen_delivery_Update_2008.pdf
known as the oxygen delivery: Oxygen delivery (ml O 2.min-1) = = Cardiac output (l.min-1) x Hb concentration (g.l ) x 1.34 (ml O 2.gHb-1) x % saturation-1= 5000ml.min-1 x 200ml O 2.1000ml blood = 1000ml O 2.min-1 oxygen consumption Approximately 250ml of oxygen are used every minute by a conscious resting person (resting oxygen consumption) and therefore
https://www.openanesthesia.org/o2_delivery_vs-_pao2/
Oxygen delivery is defined as the amount of oxygen delivered to the capillaries per minute. So oxygen delivery is dependent on cardiac output as well as the arterial oxygen content. The arterial oxygen content is based on the amount of hemoglobin (Hb), the saturation of hemoglobin with oxygen (SaO2),...
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