Equation Review Flashcards

1
Q

Sensitivity

A

Sensitivity = TP / (TP + FN)

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2
Q

Specificity

A

Specificity = TN / (TN + FP)

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3
Q

Positive predictive value

A

PPV = TP / (TP + FP)

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4
Q

Negative predictive value

A

NPV = TN / (FN + TN)

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5
Q

Odds ratio (for case-control studies)

A

OR = (a/c) / (b/d) = ad / bc

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6
Q

Relative risk

A

RR = (a/(a+b) / (c/(c+d)

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7
Q

Relative risk reduction

A

RRR = 1 - RR

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8
Q

Absolute risk reduction

A

ARR = (c/c+d) - (a/a+b)

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9
Q

Number needed to treat

A

NNT = 1/ARR

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10
Q

Number needed to harm

A

NNH = 1/AR

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11
Q

Hardy-Weinberg equilibrium

A

p^2 + 2pq + q^2 = 1 OR p + q = 1

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12
Q

Volume of distribution

A

Vd = amount of drug in the body / plasma drug concentration

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13
Q

Half-life

A

t1/2 = 0.693 x Vd / CL

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14
Q

Drug clearance

A
CL = rate of elimination of drug / plasma drug concentration = Vd x Ke 
(Ke = elimination constant)
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15
Q

Loading dose

A

LD = Cp x Vd / F

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16
Q

Maintenance dose

A

D = Cp x CL x tau / F

17
Q

Cardiac output

A

CO = rate of O2 consumption / arterial O2 content - venous O2 content

OR

CO = stroke volume x heart rate

18
Q

Mean arterial pressure

A

MAP = cardiac output x total peripheral resistance

OR

MAP = 2/3diastolic + 1/3systolic

19
Q

Stroke volume

A

SV = EDV - ESV

20
Q

Ejection fraction

A

EF = SV/EDV = (EDV - ESV)/EDV

21
Q

Resistance

A

Resistance = driving pressure (ΔP) / flow (Q) = 8η (viscosity) x length / πr^4

22
Q

Capillary fluid exchange

A

Jv = net fluid flow = Kf[(Pc-Pi) - ς(πc - πi)]

23
Q

Renal clearance

A
Cx = UxV/Px
Cx: clearance of X (mL/min)
Ux: Urine concentration of X (mg/mL)
Px: Plasma concentration of X (mg/mL)
V: Urine flow rate (mL/min)

if Cx > GFR: net tubular secretion of X
if Cx < GFR: net tubular absorption of X
If Cx = GFR: no net secretion or reabsorption

24
Q

Glomerular filtration rate

A
GFR = [Xurine]*V /[Xplasma]
GFR = excretion rate/plasma concentration
25
Q

Effective renal plasma flow

A

eRPF = CPAH = [PAHurine] * V/ [PAHplasma]

26
Q

Renal blood flow

A

RBF = RPF / (1 - Hct)

27
Q

Filtration fraction

A

FF = GFR/RPF

28
Q

Henderson-Hasselbach equation (for extracellular pH)

A

pH = 6.1 + log ([HCO3-] / 0.03 Pco2)

29
Q

Winters formula

A

Pco2 = 1.5 [HCO3-] + 8 +or- 2

30
Q

Physiologic dead space

A

Vd = Vt x (Paco2 - Peco2) / Paco2

31
Q

Pulmonary vascular resistance

A

PVR = (Ppulm artery - P L. atrium) / Cardiac output

32
Q

Alveolar gas equation

A

PAO2 = PIO2 - (PaCO2/R)

33
Q

Normal GFR

A

~ 100 mL/min

34
Q

Urine anione gap

A

Na + K - Cl

35
Q

Plasma anion gap

A

Na - Cl + HCO3