chapter 8 sir models. so=9998 io=2 ro=0 duration of infection= 2 days recoveries=(infected...

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Chapter 8 SIR Models

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Page 1: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

Chapter 8SIR Models

Page 2: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

So=9998 Io=2 Ro=0 duration of Infection= 2 days

Recoveries=(Infected Population)/(duration of infection)

Can use summer for Affected population

Page 3: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

Infectivity (rate)=0.25 per contactContacts per day=6 per infected personTotal contact per day=6 * Infected Population

Recoveries per day =Infected population / infection duration

Page 4: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 5: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 6: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 7: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

Sensitivity Analysis

• Contact number = (infectivity) (contacts per day) (infection duration)

Sometimes referred to at Ro the reproductivity number(The number of new infections) / (a single infected person)

R>1 epedemic R<1 disease dies out

Page 8: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

Sensitivity run Infectivity=1-50% 2-25% 3-12.5%

Page 9: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

Sensitivity run Infection duration = 1-4 days 2-2 days 3-1 day

Page 10: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

Policy analysis

• What can we do??

Page 11: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 12: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 13: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 14: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 15: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 16: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

1918 influenza pandemic

50 to 100 million died worldwide

Page 17: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 18: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected
Page 19: Chapter 8 SIR Models. So=9998 Io=2 Ro=0 duration of Infection= 2 days Recoveries=(Infected Population)/(duration of infection) Can use summer for Affected

1918 Influenza: the Mother of All PandemicsJeffery K. Taubenberger* and David M. MorensEmerging Infectious Diseases •

www.cdc.gov/eid Vol. 12, No. 1, January 2006