AACN CCRN-ADULT - Questions & Answers
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A nurse has responded to a rapid response call on a medical-surgical floor in the hospital. The nurse finds the patient with the following data:
BP72/30
HR132
RR24
T102.3°F (39.0°C)
SpO295%
Ph7.13
PaCO234 mm Hg
PaO288 mm Hg
HCO3 14 mEq/L
Na+ 142 mEq/L
The nurse should anticipate an order to administer which of the following?
8.4% sodium bicarbonate
phenylephrine (Neo-Synephrine)
0.9% sodium chloride
amiodarone (Cordarone)
The patient's data indicate that the patient is in shock, which is a life-threatening condition characterized by inadequate tissue perfusion and organ dysfunction. The patient has a low blood pressure, a high heart rate, a fever, and a metabolic acidosis, which suggest that the patient may have septic shock, which is caused by a severe infection that triggers a systemic inflammatory response. The nurse should anticipate an order to administer phenylephrine (Neo-Synephrine), which is a vasopressor agent that constricts the blood vessels and increases the blood pressure and tissue perfusion. Phenylephrine is recommended as a first-line agent for septic shock by the Surviving Sepsis Campaign guidelines 1. 8.4% sodium bicarbonate is not indicated for the treatment of septic shock, as it may worsen the acid-base balance and increase the risk of complications 2. 0.9% sodium chloride is a normal saline solution that may be used for fluid resuscitation, but it may not be sufficient to restore the blood pressure and may cause fluid overload, hyperchloremia, and kidney injury 3. Amiodarone (Cordarone) is an antiarrhythmic drug that is used to treat ventricular tachycardia or fibrillation, but it is not effective for septic shock and may cause hypotension, bradycardia, and other adverse effects 4.
References:
Surviving Sepsis Campaign. (2020). Surviving Sepsis Campaign: Guidelines on the Management of Critically Ill Adults with Coronavirus Disease 2019 (COVID-
19). Retrieved from 1, p. 16.
Marik,
P. E., & Bellomo,
R. (2013). A rational approach to fluid therapy in sepsis. British Journal of Anaesthesia, 110(3), 323-329. Retrieved from 2, p. 327. Semler,
M. W., & Rice,
T.
W. (2019). Saline versus balanced crystalloids for intravenous fluid therapy in the emergency department: study protocol for a cluster-randomized, multiple-crossover trial. Trials, 20(1), 1-10. Retrieved from 3, p. 2-3.
Lexicomp Online. (2021). Amiodarone. Retrieved from 4, p. 1-2.
Family members have been complaining about limited visiting hours. To facilitate a potential change in practice, a nurse should first
schedule an interdisciplinary team meeting to discuss visiting hours.
begin a literature search on family visitation practices.
consult with medical staff to change visiting hours.
draft a new policy regarding visitation practices for the unit.
The initial step in facilitating a change in practice regarding visiting hours should involve a literature search on family visitation practices. This allows the nurse to gather evidence-based information that can support any proposed changes. After gathering sufficient evidence, the nurse can then schedule an interdisciplinary team meeting to discuss the findings, consult with medical staff, and draft a new policy if necessary.
References:
CCRN Exam Handbook, AACN, page 35, section on Professional Caring and Ethical Practice.
The intended effects of medications for a patient in acute CHF are to
reduce CVP and increase SVR.
reduce CVP and reduce SVR.
increase CVP and reduce SVR.
increase CVP and increase SVR.
The intended effects of medications for a patient in acute CHF are to reduce CVP and reduce SVR, as this would decrease the preload and afterload on the failing heart and improve the cardiac output and tissue perfusion. CVP (central venous pressure) is a measure of the pressure in the right atrium and reflects the volume status of the patient. SVR (systemic vascular resistance) is a measure of the resistance in the systemic circulation and reflects the tone of the blood vessels. Medications that can reduce CVP and SVR in acute CHF include diuretics, nitrates, angiotensin-converting enzyme inhibitors, angiotensin receptor blockers, and vasodilators 12. Increasing CVP and reducing SVR would increase the preload and decrease the afterload, which may be beneficial for some patients with low cardiac output and low filling pressures, but not for patients with acute CHF and volume overload 3. Reducing CVP and increasing SVR would decrease the preload and increase the afterload, which would worsen the cardiac function and oxygen demand in acute CHF3. Increasing CVP and increasing SVR would increase both the preload and the afterload, which would also worsen the cardiac function and oxygen demand in acute CHF3.
References:
1: Acute decompensated heart failure: Management - UpToDate4, p. 5-6.
2: Acute heart failure: diagnosis and management | Guidance | NICE, p. 8-9.
3: Hemodynamic monitoring in acute heart failure - UpToDate, p. 3-4.
An unconscious patient in hepatic failure secondary to alcoholism becomes acutely hypoglycemic.
Glucagon administration is contraindicated for this patient because glucagon
interferes with lactulose (Cephulac) therapy.
produces additional sedative effects.
is ineffective when hepatocytes are damaged.
causes rebound hyperglycemia.
Glucagon is a hormone that stimulates the liver to release glucose from glycogen stores or from gluconeogenesis. However, when the hepatocytes are damaged by alcoholism or other causes of hepatic failure, glucagon is ineffective because the liver cannot respond to its signal. Glucagon administration is contraindicated for hypoglycemic patients with hepatic failure because it will not raise their blood glucose levels and may worsen their acidosis and electrolyte imbalance123 References: Hypoglycemia in Patients With Hepatic Failure - PubMed Glucagon - Wikipedia Frontiers | Glucagon Receptor Signaling and Lipid Metabolism
Appropriate outcomes for a patient with status asthmaticus include
increased PaCO2 and decreased FEV1.
decreased peak flow rates and decreased wheezing.
paradoxical breathing and increased FEV1.
normal PaCO2 and increased FEV1.
The appropriate outcomes for a patient with status asthmaticus are normal PaCO2 and increased FEV1.
Status asthmaticus is a severe and life-threatening asthma exacerbation that does not respond to conventional treatment. It causes severe bronchoconstriction, air trapping, and mucus plugging, leading to hypoxemia, hypercapnia, and respiratory failure. The goals of treatment are to reverse the airway obstruction, improve gas exchange, and prevent complications. PaCO2 is the partial pressure of carbon dioxide in the blood, which reflects the adequacy of ventilation. FEV1 is the forced expiratory volume in one second, which measures the amount of air that can be forcefully exhaled in the first second of a breath. It reflects the degree of bronchoconstriction and airflow limitation. A patient with status asthmaticus typically has elevated PaCO2 and reduced FEV1 due to poor ventilation and severe obstruction.
Therefore, normalizing PaCO2 and increasing FEV1 indicate improvement in the patient's condition and response to treatment.
References:
Status Asthmaticus: Symptoms, Causes, Diagnosis, and Treatment - Healthline: This article states that "Status asthmaticus is a severe form of asthma with symptoms similar to a typical asthma attack. But for status asthmaticus, symptoms may worsen as the asthma attack continues. Status asthmaticus is an older, less precise term for what's now more commonly known as acute severe asthma or a severe asthma exacerbation. It refers to an asthma attack that doesn't improve with traditional treatments, such as inhaled bronchodilators. These attacks can last for several minutes or even hours."
Status Asthmaticus (Severe Acute Asthma) - WebMD: This article states that "Status asthmaticus is a severe asthma attack that doesn't get better with your usual treatments. It can be life-threatening and needs urgent medical attention. If you have a bad asthma attack and your rescue inhaler or your nebulizer doesn't help, you need medical care right away. If an attack comes on quickly and it doesn't respond to
regular treatment, it can lead to status asthmaticus." Management of Status Asthmaticus | SpringerLink:
This article states that "Status asthmaticus is a life-threatening condition characterized by progressive respiratory failure despite aggressive treatment. It is defined as an acute exacerbation of asthma that remains unresponsive to initial treatment with bronchodilators. Status asthmaticus can vary in severity from mild to fatal. The pathophysiology of status asthmaticus is complex and involves airway inflammation, bronchospasm, airway edema, mucus plugging, and increased airway resistance. The clinical manifestations of status asthmaticus include dyspnea, wheezing, cough, chest tightness, tachypnea, tachycardia, hypoxemia, and hypercapnia. The diagnosis of status asthmaticus is based on history, physical examination, and laboratory tests, such as arterial blood gas analysis, spirometry, and chest radiography. The management of status asthmaticus consists of oxygen therapy, inhaled beta-2 agonists, systemic corticosteroids, and adjunctive therapies, such as anticholinergics, magnesium sulfate, ketamine, and noninvasive or invasive mechanical ventilation. The goals of treatment are to relieve bronchoconstriction, reduce airway inflammation, correct hypoxemia, normalize or reduce carbon dioxide levels, and avoid or treat complications."
A patient who had a liver resection now has a copious amount of serous drainage from the surgical incision.
Which of the following should a nurse anticipate when caring for this patient?
preparing for an incision and debridement of the wound
applying several abdominal dressings
administering antibiotics
applying a drainage pouch to the site
A copious amount of serous drainage from a liver resection incision may indicate a bile leak, which can cause pain, infection, and delayed healing. The nurse should anticipate applying several abdominal dressings to absorb the fluid and protect the wound. The nurse should also monitor the patient for signs of infection, such as fever, increased white blood cell count, and foul-smelling drainage. The nurse should notify the surgeon of the excessive drainage and follow the orders for further interventions, such as imaging studies, drainage catheter placement, or surgical repair. Antibiotics may be prescribed, but they are not the first-line treatment for a bile leak. Incision and debridement of the wound may be necessary if there is necrotic tissue or infection, but it is not the initial action. Applying a drainage pouch to the site may not be sufficient to contain the large amount of fluid and may increase the risk of skin breakdown.
References:
Problems after cancer surgery to remove part of your liver: This article states that "The bile ducts connect the liver and gallbladder to the small bowel. There is a risk of bile leaking from the ducts on the cut surface of the liver. This may cause pain, sickness and a high temperature. Rarely, you might need another operation to repair the leak."
Understanding Liver Abscess Treatment - Saint Luke's Health System: This article states that "The provider uses CT scan or ultrasound to help place the wire in the right spot. A thin, flexible tube (catheter) is then placed over the wire and into the abscess. The tube is left in place for 5 to 7 days to drain the fluid.
In some cases, surgery may be done to cut into the liver abscess and drain it." How Much Time Does it
Take to Recover from Liver Surgery?: This article states that "If you have any drainage from your incision or if the area around your incision is puffy or red, visit your surgeon. Take a shower every day with warm water. When you are ready to take solid foods, make sure to eat 4 to 6 small meals every day. Do not lift heavy weights for 8 weeks after your surgery."
A patient post-surgical externalized ventricular drain placement has treatment orders that include continuous cerebrospinal fluid (CSF) drainage at 10 mm Hg.
Which of the following should the nurse anticipate with an increase in the ICP above 25 mm Hg?
a decrease in the pulse pressure
a change in CSF drainage from clear to pink
the amplitude of P2 greater than P1 on the waveform morphology
an increase in the cerebral perfusion pressure from 65 to 70
An increase in intracranial pressure (ICP) above 25 mm Hg often results in changes in the waveform morphology observed in the monitoring of intracranial pressure. Specifically, the amplitude of P2 becomes greater than P1, which is indicative of decreased intracranial compliance. This pattern is known as the "pathological waveform," suggesting increased intracranial pressure and decreased ability of the brain to accommodate the pressure changes.
References:
CCRN Exam Handbook, AACN, page 23, section on Neurological.
In a patient with a chest tube, an air leak in the pleural space is indicated by which of the following conditions in the water-seal chamber?
fluctuation increases
bubbling increases
fluctuation is absent
bubbling stops
In a patient with a chest tube, an air leak in the pleural space is indicated by an increase in bubbling in the water-seal chamber. Bubbling in this chamber occurs when air escapes from the pleural space into the chest drainage system. An increase in bubbling signifies an ongoing air leak, indicating that air is still entering the pleural space, often due to a bronchopleural fistula or lung injury.
References:
CCRN Exam Handbook, page 36
A patient's IV with norepinephrine (Levophed) infusing is red, swollen, and the IV pump is alarming. A nurse should anticipate
administering phentolamine (Regitine).
providing a warm compress.
lowering the extremity below heart level.
removing the IV immediately.
Phentolamine (Regitine) is the antidote for norepinephrine extravasation, which is the leakage of the vasopressor from the vein into the surrounding tissue. Phentolamine reverses the vasoconstriction and ischemia caused by norepinephrine by blocking the alpha-adrenergic receptors. Phentolamine should be administered intradermally around the site of extravasation as soon as possible, and the infusion should be stopped but the IV catheter should not be removed until some of the norepinephrine is aspirated. A warm compress may worsen the tissue damage by increasing the absorption of norepinephrine, and lowering the extremity may increase the edema and pain. Removing the IV immediately may prevent the aspiration of norepinephrine and the administration of phentolamine.
References:
Episode 240: What to do with norepinephrine extravasation: This article explains the steps to take when norepinephrine extravasates, including the use of phentolamine, and the reasons to avoid cold compress, lowering the extremity, and removing the IV.
What are current recommendations for treatment of drug extravasation?: This article summarizes the latest recommendations for treatment of extravasation, and lists phentolamine as the immediate topical therapy for norepinephrine extravasation.
Which of the following assessment findings would be found in a patient with pulmonary hypertension?
crackles in the bases bilaterally
rhonchi in the apices bilaterally
pink frothy sputum
distended neck veins
Pulmonary hypertension leads to increased pressure in the pulmonary circulation, which can cause right ventricular hypertrophy and failure. This results in systemic venous congestion, presenting as distended neck veins. Crackles, rhonchi, and pink frothy sputum are more indicative of pulmonary edema or other respiratory conditions rather than pulmonary hypertension.
References:
AACN Adult CCRN Certification Review Course, AACN CCRN Exam Handbook.
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