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APEX: MISCELLANEOUS TOPICS |QUESTIONS & ANSWERS | 100% VERIFIED SOLUTIONS |QUESTIONS WITH CORRECT ANSWERS 2026 LATEST UPDATE!!

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Voorbeeld 4 van de 62 pagina's

APEX: MISCELLANEOUS TOPICS |QUESTIONS & ANSWERS | 100% VERIFIED SOLUTIONS |QUESTIONS WITH CORRECT ANSWERS 2026 LATEST UPDATE!!

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APEX: MISCELLANEOUS TOPICS |QUESTIONS & ANSWERS | 100% VERIFIED SOLUTIONS |QUESTIONS WITH CORRECT ANSWERS 2026 LATEST
UPDATE!!

What is the best method of minimizing intraoperative heat loss?

- forced air warmer

- circulating water mattress

- warm blankets

- fluid warmer ✔️A

Hypothermia is defined as a core body temperature < 36 degrees C.



Patients at extremes of age are at the greatest risk of developing perioperative hypothermia. ✔️

The body regulates core temperature between 36.7 and 37.1 degrees C.



You should think of temperature regulation as a reflex, with an afferent limb, control center, and efferent response. ✔️

Afferent limb = Thermoreceptors

- Skin

- Deep tissue

- Spinal cord ✔️

Control Center =

- hypothalamus (preoptic region)

- brainstem ✔️

Efferent Response:



Too Cold:

- vasoconstriction

- piloerection

- shivering

- non-shivering thermogenesis



Too Hot:

- vasodilation

- diaphoresis ✔️

The law of conservation of energy states that energy cannot be created nor destroyed. Therefore, heat "loss" is a misnomer, and this
phenomenon is more accurately termed heat "transfer."



We use both terms interchangeable, as one could argue that heat is lost from the patient to the environment. ✔️

,Radiation ~ Infrared (60%)



- Radiation is the #1 source of heat loss.

- Heat follows a temperature gradient. If the patient is warmer than the environment, then heat is lost to the environment in the form of
infrared radiation.

- Most heat is lost through the skin.

- Covering the patient reduces radiant heat loss. ✔️

Convection ~ Air (30%)

- Convection is the #2 source of heat loss.

- It's the transfer of heat by the movement of matter.

- Think of convection as "wind chill." Air movement over the body whisks away the heat that has radiated from the body. The body radiates
more heat to replace what was taken away by the airflow, and the cycle continues.

- LAMINAR flow increases the amount of heat lost to convection. ✔️

Evaporation ~ Water Loss (20%)

- It takes a significant amount of energy to vaporize water; this is called the "latent heat of vaporization."

- The rate of this process is a function of the exposed surface area and the relative humidity of the environment.

- Water can be lost by evaporation from respiration, wounds, and exposure of internal organs during surgery. ✔️

Conduction ~ Contact (< 5%)

- Heat is lost when the patient comes into direct contact with a cooler object.

- The amount of conductive heat loss is a function of the temperature gradient and the thermal conductivity of the object.

- Examples include a cold OR table, IV fluids, and irrigation fluids. ✔️

When no attempts are made to maintain normothermia, heat transfer follows a triphasic curve.



Phase 1: Heat redistribution from the core to periphery.



Phase 2: Heat transfer > Heat production.



Phase 3: Heat transfer ~ Heat production. ✔️

Phase 1: (Redistribution) Occurs during the first hour of anesthesia.



- With general, spinal, or epidural anesthesia, there is a redistribution of heat from the central compartment (thorax, abdomen) to the
peripheral compartment (extremities and skin).



- Anesthetic agents impair the thermoregulatory response in the hypothalamus, prevent shivering, and cause vasodilation.



- Only a nominal amount of heat is lost to the environment during Phase 1. Again, heat redistribution is way more important during this phase!

,- Simple intervention, such as placing a warm blanket on the patient before entering the OR can help preserve core temperature. ✔️

Phase 2:

- Heat loss to the environment exceeds heat production.



Phase 3:

- An equilibrium develops between heat lost to the environment and heat production. ✔️

Perioperative Events Contributing to Heat Loss:

- Re-calibration of the hypothalamic set point

- Drug induced vasodilation

- Impaired shivering

- Core to peripheral temperature redistribution

- Cool ambient temperature

- Cold operating room table

- Administration of room temperature fluids and cold blood products ✔️

Hypothermia is defined as a core body temperature < than:



Heat lamp =

Warm blankets =

Irrigation fluid =

IV fluid =

Respiration =

Laminar flow =

Open wound =

Sweating =

Cold OR table = ✔️36 C



Radiation

Radiation

Conduction

Conduction

Evaporation

Convection

Evaporation

Evaporation

, Conduction

Which temperature monitoring site offers the best combination of accuracy and safety over an extended period of time?

- rectal

- esophageal

- tympanic membrane

- pulmonary artery ✔️B

Perioperative hypothermia increases the risk of morbidity and mortality.



Cardiovascular:

- SNS stimulation (myocardial ischemic and dysrhythmias)

- Shifts OHDC left (decreased O2 available to tissues)

- Vasoconstriction + decreased tissue PO2 (surgical site infection)

- Coagulopathy + platelet dysfunction (increased blood loss)

- Sickling of hemoglobin S (risk of sickle cell crises)



Pharmacologic:

- Slowed drug metabolism (prolonged effects of anesthetic agents)

- Increased solubility of v ✔️

Shivering increases oxygen consumption by up to 500%. This increases the risk of myocardial ischemia and infarction.



Pharmacologic modalities used to treat postoperative shivering include:

- meperidine

- clonidine

- dexmedetomidine ✔️

Although there are many reasons why perioperative hypothermia contributes to poor outcomes, there are several circumstances where it can
improve outcomes.



How does hypothermia help?

- Oxygen consumption is reduced by 5-7% for every 1 degree C reduction in body temperature. Induced hypothermia is useful during:

- cerebral ischemia (stroke)

- cerebral aneurysm clipping

- traumatic brain injury

- CPB

- cardiac arrest

- aortic cross-clamping

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