Neurogenic Shock
Sepsis
Septic Shock
Cardiogenic Shock
Misc.
100

These cardiovascular findings are characteristic of neurogenic shock.

Hypotension and bradycardia

100

This population is at especially high risk for sepsis and rapid deterioration.

Older adults

100

This lab indicates poor tissue perfusion and should be monitored for trends.

Lactate

100

This is the primary physiologic problem in cardiogenic shock.

An ineffective cardiac pump.

100

These are the three stages of shock.

Compensatory, progressive, refractory/irreversible 

200

This is the underlying cause of neurogenic shock.

Loss of sympathetic nervous system tone causing widespread vasodilation.

200

These are three potential sources for hospital-acquired sepsis.

CAUTIs, CLABSIs, VAP

200

These are the two criteria that define septic shock.

Persistent hypotension Requires vasopressors to maintain MAP ≥65 mmHg

Lactate >2 mmol/L despite adequate fluid resuscitation

200

List a potential cause of cardiogenic shock other than MI.

•Heart failure, cardiomyopathy, dysrhythmias, valvular disease, cardiac tamponade

Other noncoronary causes of cardiogenic shock are related to conditions that stress the myocardium (e.g., severe hypoxemia, acidosis, hypoglycemia, hypocalcemia)

200

List the three sub-types of distributive shock.

Septic, neurogenic, anaphylactic

300

What would the nurse expect to find when performing a skin assessment on a patient with neurogenic shock?

Warm, dry skin.

300

Describe the immune system response in sepsis - what is being released by the body?

Releases large amounts of cytokines and inflammatory mediators

300

This is the first-line vasopressor for septic shock.

Norepinephrine

300

What occurs immediately after myocardial damage in the pathophysiology of cardiogenic shock?

Decreased contractility - decreased stroke volume and cardiac output - decreased tissue perfusion

300

This complication can develop from any form of shock but is mainly seen in patients with sepsis.

MODS - multiple organ dysfunction syndrome

the presence of altered function of two or more organs in an acutely ill patient such that interventions are necessary to support continued organ function

400

This bedside screening tool is used outside the ICU to rapidly identify patients at risk for sepsis.

qSOFA
400

List three potential findings characteristic of early sepsis (warm shock)

•Fever

•Tachycardia

•Tachypnea

•Warm flushed skin

•Bounding pulses

•Altered mental status

•Elevated lactate and inflammatory markers

•Decreased urine output

400

This is why nutritional therapy is important in management of septic shock patients.

Help address hypermetabolic state present with septic shock. Malnutrition further impairs the patient’s resistance to infection

400

List three pulmonary findings that are associated with cardiogenic shock

Tachypnea, crackles, dyspnea, pulmonary edema, and decreased oxygen saturation.

400

Fluids should be used cautiously in this kind of shock.

Cardiogenic - more fluid may worsen pulmonary edema

500

These four interventions are commonly used in management of neurogenic shock.

IV fluids, vasopressors (norepinephrine, dopamine), atropine (for significant bradycardia), and spinal stabilization when indicated

500

List the interventions included in the one-hour sepsis bundle.

Blood cultures, lactate level, broad-spectrum antibiotics, 30 mL/kg crystalloid bolus, and vasopressors if needed.

500

List three potential assessment findings in septic shock.

•Persistent hypotension MAP <65 mmHg

•Vasopressor requirement

•Cool, mottled skin

•Oliguria

•Rising lactate

•Worsening organ dysfunction

•MODS

500

List four diagnostics (labs or imaging) you would expect to see in cardiogenic shock - and give a reason for each.

•Evidence of Myocardial Injury - troponin, ECG changes

•Evidence of Heart Failure - BNP

•Evidence of Poor Perfusion - elevated lactate, increased creatinine, decreased urine output

•Cardiac Assessment - echocardiogram, continuous ECG monitoring

500

These are three ways in which the body attempts to compensate to maintain perfusion in shock.

•Sympathetic nervous system activation

•Increased heart rate

•Vasoconstriction

•Renin-Angiotensin-Aldosterone System (RAAS)

•Antidiuretic hormone (ADH) release