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  2. Carboplatin - Wikipedia

    en.wikipedia.org/wiki/Carboplatin

    However, toxicity from treatment was variable, and therefore Professor Hillary Calvert (University of Newcastle) developed a formula to dose carboplatin based on renal function. Calvert's formula considers the creatinine clearance and the desired area under curve. [13] After 24 hours, close to 70% of carboplatin is excreted in the urine unchanged.

  3. Clearance (pharmacology) - Wikipedia

    en.wikipedia.org/wiki/Clearance_(pharmacology)

    In these cases, clearance is almost synonymous with renal clearance or renal plasma clearance. Each substance has a specific clearance that depends on how the substance is handled by the nephron. Clearance is a function of 1) glomerular filtration , 2) secretion from the peritubular capillaries to the nephron , and 3) reabsorption from the ...

  4. Area under the curve (pharmacokinetics) - Wikipedia

    en.wikipedia.org/wiki/Area_under_the_curve...

    In pharmacology, the area under the plot of plasma concentration of a drug versus time after dosage (called “area under the curve” or AUC) gives insight into the extent of exposure to a drug and its clearance rate from the body. [2]

  5. Talk:Carboplatin - Wikipedia

    en.wikipedia.org/wiki/Talk:Carboplatin

    the main page says "Formula C6H14N2O4Pt" and "Mol. mass 371.249 g/mol", however in the picture shown I see only 12 hydrogen atom white balls, and if you add up the weight of all atoms, 14 H's gives you 2 higher than the 371 weight.

  6. Renal clearance ratio - Wikipedia

    en.wikipedia.org/wiki/Renal_clearance_ratio

    The renal clearance ratio or fractional excretion is a relative measure of the speed at which a constituent of urine passes through the kidneys. [ 1 ] [ 2 ] It is defined by following equation: c l e a r a n c e r a t i o o f X = C x C i n {\displaystyle clearance\ ratio\ of\ X={\frac {C_{x}}{C_{in}}}}

  7. Kt/V - Wikipedia

    en.wikipedia.org/wiki/Kt/V

    where C is the concentration [mol/m 3]; t is the time [s]; K is the clearance [m 3 /s]; V is the volume of distribution [m 3]; From the above definitions it follows that is the first derivative of concentration with respect to time, i.e. the change in concentration with time.

  8. Hedges Amicus Brief FINAL.pdf - HuffPost

    images.huffingtonpost.com/2013-02-01-ThreeAmigos...

    Nos. 12-3176, 12-3644 IN THE UNITED STATES COURT OF APPEALS FOR THE SECOND CIRCUIT CHRISTOPHER HEDGES, et al., Plaintiffs-Appellees, v. BARACK OBAMA, individually and as

  9. Standardized Kt/V - Wikipedia

    en.wikipedia.org/wiki/Standardized_Kt/V

    Kt/V and standardized Kt/V are not the same. Kt/V is a ratio of the pre- and post-dialysis urea concentrations. Standardized Kt/V is an equivalent clearance defined by the initial urea concentration (compare equation 8 and equation 10).