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Vancomycin – Single Level Analysis Advanced
Vancomycin – Single Level Analysis Advanced
Vancomycin - Single Level Analysis [Advanced version]
Patient:
Location:
Drug
:
Vancomycin
Patient Age (yrs):
?
Weight:
Kg
Pounds
Current dose being given
:
mg
Current dosing interval
:
hrs
Current infusion time (hrs)
:
0.25
0.5
1
1.5
2
2.5
3
3.5
4
Single level drawn - Trough
Trough level obtained
:
mcg/ml
When was the trough drawn?
:
Enter number of hours before next dose
:
hrs
[
Hint
: 0.01 = <1 minute before next dose. 0.08 = ~5 minutes before next dose]
Desired peak
:
mcg/ml
Desired trough
:
mcg/ml
Select Vd Method:
Standard (select value from drop down below)
Ambrose Method
Volume of distribution
:
0.5
0.55
0.6
0.65
0.7 (Usual value)
0.75
0.8
0.85
0.9
0.95
L/kg
Range: 0.5 - 0.95 (Usual: 0.7 L/kg)
Background
Ambrose-Winter’s Single Trough Method
Principles
:
A population Vd is used to estimate the [Peak].
This calculated [Peak] and measured [Trough] are then used to calculate an elimination rate constant (kel).
[Peak]=measured [Trough] + Dose/Vd
kel = ln ([Peak]/[Trough])/Tau
Infusion equations are then used to calculate a new Tau and Dose.
Ambrose-Winter’s volume of distribution equation:
where Vd (L) = (0.17 × [age in years]) + (0.22 × [TBW in kg]) + 15
(Note: TBW even if obese)
Reference
Ambrose PJ, Winter ME. In: Winter ME. Basic clinical pharmacokinetics, 4th ed. Philadelphia: Lippincott Williams & Wilkins; 2004:451-76.
Alternate expression of kel equation
:
Normally kel = (Ln C1 / C2) / (t2 - t1)
C1= actual or extrapolated Peak; or post peak level
C2= actual or extrapolated trough; or random level
Drawn at least 1.5 x estimated half-life after first level.
(t2 - t1) = Time difference between levels.
Equation 15.5 page 455:
cmax = [cmin + dose (s) (f)] / Vd
Related pharmacokinetic calculators
Trough Calculators
Allows the user to estimate the actual (extrapolated) trough based on the elimination rate constant and the number of hours the level was drawn before the next scheduled dose. A supratherapeutic level may be actually therapeutic if it was drawn just before the next dose.
Trough drawn early? -Estimation Tool based on entered Kel
This new program can be used to determine when to administer the next dose of vancomycin after a supratherapeutic trough is obtained. An estimated elimination rate constant is generated from the creatinine clearance which is then used to determine the timing of the next dose based on the desired target trough concentration.
Vancomycin -Timing of next dose based on estimated Ke value
Use this program if the vancomcyin level is drawn early and you want to estimate the actual trough just before the next dose to determine if the current regimen is appropriate
Vancomycin – Predicted Trough-Level drawn early
Dosing by levels
Dosing by levels
(Full)
Dosing by levels – pharmacokinetics (quick)
Non-Steady State kinetics
Pharmacokinetics
Pharmacokinetics -Multiple Ke (Advanced version)
Pharmacokinetic dosing -aminoglycosides/Vanco Original program
Vancomycin – Single-level dosing
Vancomycin SINGLE Level-(dosing by levels) Original calc
If you would like to enter the time since the last dose was given, use this version. This new version may be especially useful if the trough was drawn late and thenext dose was delayed. Example: current regimen vanco 1 gram q12h. Trough wasdrawn 12.5 hours after the last dose.
Vancomycin single-level – dose infused early or late
The GlobalRPh vancomycin single-level calculator uses the Vd recommended in Bauer’s text: 0.7 L/kg. Use the advanced version if you wish to manipulate this value.
Vancomycin single level – Advanced version
Vancomycin – Empiric dosing
Vancomycin Empiric dosing - AUC/MIC