Delivery Of Oxygen Do2

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Delivered Oxygen (DO2) - Deltex Medical

    http://www.deltexmedical.com/decision_tree/delivered-oxygen-do2/
    Delivered Oxygen (DO2) DELIVERED OXYGEN (DO 2) Whilst global delivered oxygen is an important principal to be considered as part of cardiovascular management, the various causes of a reduced global oxygen delivery (haemorrhage, anaemia, hypoxia) can result in different haemodynamic effects.

Peripheral oxygen delivery - Open Anesthesia

    https://www.openanesthesia.org/peripheral_oxygen_delivery/
    Oxygen Delivery. Therefore, oxygen delivery can be calculated: DO2 = CaO2 x CO. Oxygen Content. Oxygen content can be calculated as: CO2 = (1.39 x Hb x O2Sat/100) + (0.003 x PO2) Oxygen Consumption. Oxygen consumption can be calculated by the Fick principle as the difference between arterial and venous oxygen content: VO2 = CO x (CaO2 – CvO2)

The USCOM and Hemodynamics - Oxygen Delivery

    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.

DO2 - oxygen delivery - All Acronyms

    https://www.allacronyms.com/DO2/oxygen_delivery
    What is the abbreviation for oxygen delivery? What does DO2 stand for? DO2 abbreviation stands for oxygen delivery.

O2 delivery vs. PaO2 - Open Anesthesia

    https://www.openanesthesia.org/o2_delivery_vs-_pao2/
    Oxygen delivery is defined as the amount of oxygen delivered to the capillaries per minute. It is calculated by the following formula: DO2=CO x CaO2 (mL/min/m2) So oxygen delivery is dependent on cardiac output as well as the arterial oxygen content.

DO2 Equation – Peripheral Brain

    https://pbrainmd.wordpress.com/2016/01/21/do2-equation/
    Jan 21, 2016 · The equation usually used to describe the rate of oxygen delivery is as follows: This equation will not be applicable when levels of dys-hemoglobins (e.g. metHb, carboxyHb, etc) are high. A better formula to describe DO2, taking into account only the concentration of effective Hb would be: Example: ceHb = 150g/L; Wt = 70 Kg; PaO2 = 100; SO2 = 100%

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