A client with multiple medical issues has the following ABG results: pH: 7.50 PCO2: 41 HCO3: 32 PO2: 96 What is your interpretation of this result?
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- A patient with COPD for 30 years is admitted to the hospital He has severe shortness of breath His ABGs are as follows pH: 7.25 pCo2: High HCO3: High Identify the disorder O Metabolic acidosis O Metabolic alkalosis O Respiratory alkalosis O Respiratory acidosisA patient exhibits the following blood characteristics. pH = 7.49 P co2 = 50 HCO3- = 29 mEq/L What is the likely condition? respiratory acidosis respiratory alkalosis metabolic acidosis metabolic alkalosisThe normal pH of blood is 7.35-4.45. The normal pCO2 level is 35-45mmHg. John has blood work performed. His recorded pH is 7.1. His recorded PCO2 is 20mmHg. Based on this describe the acid base state of John. (ie, metabolic acidosis, metabolic alkalosis, respiratory acidosis, and respiratory alkalosis). Support your answer.
- Metabolic alkalosis refers to a process whereupon decreased hydrogen ion, or increased bicarbonate, concentrations occur in the body, and the blood pH becomes too basic. Answer the following questions: How does the body regain its acid-base equilibria/balance? What happens when that balance does not happen? Will a buffer system still work under these conditions?1)dentify the lab value of Corbin's bicarbonate ion level in mEq/Liter. Only type in numbers no letters (type out your number to zero places after the decimal point. i.e 8 or 18) pH = 7.52 PaCO2 = 48 mm 2) Corbin's condition is determined to be> 3 answers required: respiratory or metabolic acidosis or alkalosis uncompensated or partial compensation Group of answer choices respiratory metabolic acidosis alkalosis uncompensated partial compensationWhich of the following is incorrect regarding the bicarbonate buffer system: A B C D an increase in proton will lower blood pH carbonic anhydrase catalyzes the formation of carbonic acid from proton and bicarbonate ion the purpose of the buffer system is to resist changes in blood pH alkalosis is defined as a pH of > 7.45
- A patient suffers from hypokalaemia, and is prescribed an intravenous infusion of 0.15% potassium chloride (KCl) to correct this imbalance. She is to receive 50 mL 0.15% KCl over 4 hours. How many mmol/hour of potassium is she receiving? (0.15% KCl contains 20 mmol potassium per litre)Mary is severely dehydrated from multiple and prolonged bouts of diarrhea. Her labs are returned. pH - 7.3 (normal 7.4) PACO2 = 33mmHg (normal 40mmHg) [Na} - 140mEq/L -normal HCO3- = 16mEq/L (normal) metabolic acidosis O metabolic akalosis respiratory acidosis O respiratory alkalosisAn unconscious patient is delivered to emergency room. His blood gases are obtained: pH = 7.09, HCO3- = 15 mEq/L, pCO2 = 50mmHg. What type of acid-base disorder this patient has? Why is he unconscious?
- Mr. Jones has COPD, an obstructive respiratory disorder. An arterial blood gas (ABG) sample was taken and she had an elevated arterial PCO2. Answer the following questions: What happens to H+ concentrations? What happens to pH? What type of acid-base imbalance is created? (Hint: Select one of these choices: metabolic acidosis, metabolic alkalosis, respiratory acidosis, or respiratory alkalosis) What type of compensation occurs? What does the body do during this type of compensation?During the treatment for COVID-19, one complication includes an increase of CO2 in the lungs. This buildup of CO2 can result in a serious condition called respiratory acidosis if the level of H+ significantly changes. If the pH drops by 1 unit, what has happened to the H+ concentration?The following data was obtained from an arterial blood sample drawn from a hospital patient. pH= 7.55 (7.35-7.45) PaCO2=25mmHg (33-45mmHg) HCO3-= 22.5mEq/L (22-28mEq/L The patient’s arterial findings are consistent with a diagnosis of which of the following? metabolic acidosis respiratory alkalosis metabolic alkalosis mixed acidosis respiratory acidosis