patient has a Ve of 7.15 L/min and a set rate of 11 breaths per minute. what is the Vt in ml?
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- Ilike Running is training for a marathon. While training, his volume of air in each breath is 1.5 L and he takes approximately 15 breaths per minute. His total lung capacity is 5500 mL and his residual volume is 1500 mL. Ilike has a blood pH of 7.2 and his cardiac output is 4.95 L/min. His heart is pumping 172 times per minutes. Finally, his expiratory reserve volume is 750 mL. In order to increase his performance, Ilike wants an analysis of his current exercise values. Please determine the following based on the information listed above. Answe the following Blank 1: Tidal Volume Blank 2: Vital Capacity Blank 3: Ventilation Blank 4: Stroke Volume Blank 5: Inspiratory Reserve Volume:Suppose a person has a total lung capacity of 5,800 mL,a residual volume of 1,200 mL, an inspiratory reservevolume of 2,400 mL, and an expiratory reserve volume of1,400 mL. Calculate his tidal volume.A typical resting tidal volume would be expected to be around: O 1200 mL O 6000 mL 3000 mL Ⓒ 500 mL
- What would be the expired minute volume (VE) of someone who takes 2.5 breaths every 30 seconds and has a tidal volume (VT) of 0.2L? Show your work.If lung alveolar air PO2 = 100 mm Hg, we should expect blood leaving the lungs to have a PO2 _______ mm Hg. less than 100 mm Hg higher than 100 mm Hg equal to 100 mm HgA spontaneously breathing patient has a normal PaCO2 of 40 mm Hg, a minute ventilation (VE) of 6 L/min, and a VD/VT ratio of 35% (0.35). Then the patient develops a pulmonary embolus (PE), blocking blood flow to a significant number of ventilated avleoli. Consequently, the measured VD/VT increases to 65% (0.65). 1. Calculate the alveolar ventilation associated with teh original PaCO2 of 40 mm Hg. 2. To maintain the same PaCO2 of 40 after the embolus occurs, what change must occur in total minute ventilation (VE)?