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In 2-rescuer CPR on an ADULT victim with an advanced airway device, what are the compression and ventilation rates?

Answer :

Final answer:

In 2-rescuer CPR on an adult victim with an advanced airway, the recommended compression rate is 100 to 120 compressions per minute. When it comes to ventilation, it occurs once every 6 seconds (or around 10 breaths per minute) without pausing chest compressions.

Explanation:

In 2-rescuer CPR on an adult victim with an advanced airway, the compression rate stays the same as in 1-rescuer CPR, which is 100 to 120 compressions per minute. However, the difference is in the ventilation. When an advanced airway is in place, you don’t need to pause compressions to give ventilations. Instead, one rescuer performs chest compressions while the other rescuer gives one breath every 6 seconds (about 10 breaths per minute).

The idea behind this rhythm is to increase the circulation of blood within the heart and avoid carbon dioxide buildup in the alveoli. The emphasis is on combining high-quality chest compressions with adequate artificial respiration constantly throughout the procedure.

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Final answer:

In 2-rescuer adult CPR with an advanced airway device, the compression rate should be 100 compressions per minute and the ventilation rate should be one breath every 6 seconds, or 10 breaths per minute. Proper training is essential for effective CPR.

Explanation:

In 2-rescuer CPR on an ADULT victim with an advanced airway device, the compression rate should be 100 compressions per minute, and each compression should be at least 5 cm deep. These compressions help manually push blood within the heart into the systemic and pulmonary circuits. Importantly, emphasis is on high-quality chest compressions rather than artificial respiration.

With regards to ventilation, when an advanced airway device is in place, the rate should be one breath every 6 seconds, or roughly 10 breaths per minute. This is irrespective of ongoing chest compressions. These breaths provide necessary oxygen and ventilate carbon dioxide.

These steps could help replace the sufficient blood flow to crucial organs, primarily the brain, and minimize potential damage from loss of oxygenated blood. Proper training is essential for the effective delivery of CPR to ensure the correct techniques are applied and minimize the risk of harm.

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