Canonical Question
Therm – Responses
Master answer
- Temperature
- average kinetic energy of the atoms and molecules that make up a substance
- Mild hypothermia
- Temp <35 degrees
- Interthreshold range
- the range of core temperature over which no autonomic thermoregulatory responses occur.
- Under normal conditions: 36.8 ~37.2 degrees
- Under anaesthesia
- Lower threshold decreases 2.5 degrees and upper threshold increases 1.3 degrees
- Therefore decreased ability to maintain core normothermia
Physiology
Cardiovascular system
- Decreased cardiac output
- Peripheral vasoconstriction
- Increased afterload
- Decreased diastolic relaxation
- Decreased preload
- Decreased contractility
- Increased blood viscosity
- Haemoconcentration
- Cold diuresis: Due to decreased responsiveness to ADH and shunting of peripheral blood to central circulation
- Extravasation of intravascular H2O
- Haemoconcentration
- Increased risk of myocardial ischaemia
- Peripheral vasoconstriction
- Coagulopathy
- PT and aPTT increase 9% at 34c compared to 37c
- Increase incidence of atrial arrythmias → ventricular fibrillation at severe hypothermia
- Every degree decrease in temp increases pH 0.015 and decreases pCO2 4.4%
Respiratory
- Initially tachypnoea due to sympathetic stimulation
- Decreased responsiveness to CO2
- Oxyhaemoglobin dissociation curve shifts to left → decreased tissue O2 delivery
CNS
- CMRO2 decreases 7% per 1 degree decrease in core body temperature
GI
- Decreased GI motility
Other
- Post-operative shivering increases total body O2 consumption
- Decreased enzyme activity
- Decreased temperature decreases rate constant in Arrhenius equation
- Decreasesd neutrophil degranulation
- Impaired macrophage phagocytosis
Pharmacology
Pharmacodynamics
\[ k \; = \; Ae^{{-Ea} \over {RT}} \]
- Arrhenius equation for rate constant K
- Where T = temperature
- Therefore as T decreases, the rate constant decreases
- Drug-Receptor interactions are slowed as temperature decreases
- Where T = temperature
Pharmacokinetics
- Decreased absorption of drugs due to delayed gut transit times
- Metabolism of drugs reduced → slow offset of sedative agents given in anaesthesia
- Decreased cardiac output → decreased renal filtration à decreased drug elimination of unchanged drugs → slow offset
- Specific drugs
- Prolonged muscle relaxation from non-depolarizing
- Opioids blunt shivering thermogenesis mechanism → decreased ability to thermoregulate
Sakurai 2016
Exam appearances
| Exam | Exact wording | Relationship | Success |
|---|---|---|---|
| 2010B Q18 | Outline the consequences of mild hypothermia in a patient following major surgery | historical_member | — |
| 2015B Q02 | Describe the consequence of mild hypothermia in the early post-operative setting | historical_member | — |