Kristan Schneider How often are you hit by an infection ...

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Kristan Schneider How often are you hit by an infection? - A likelihood approach to determine the multiplicity of infection ROeS 2013, Sept. 12, 2013 What is malaria? Infectious disease caused by parasites (genus Plasmodium; eukaryote) 40% of the world’s population at malaria risk Worldwide 200 - 300 million infections & 1-3 million deaths per year Enormous economic damage every year

Transcript of Kristan Schneider How often are you hit by an infection ...

Page 1: Kristan Schneider How often are you hit by an infection ...

KristanSchneider

Howoftenareyouhitbyaninfection?-Alikelihood

approachtodeterminethemultiplicityofinfection

ROeS2013,Sept.12,2013

Whatismalaria?

•Infectiousdiseasecausedbyparasites(genus

Pla

sm

od

ium;eukaryote)

•40%oftheworld’spopulationatmalariarisk

•Worldwide200-300millioninfections&1-3milliondeathsperyear

•Enormouseconomicdamageeveryyear

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Transmissioncycle

Transmissioncycle

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Transmissioncycle

Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

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Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Q:Howtomeasureefficiencyofcontrolinterventions?

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Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Q:Howtomeasureefficiencyofcontrolinterventions?

A:Multiplicityofinfection=metricfortransmissionintensity

Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Q:Howtomeasureefficiencyofcontrolinterventions?

A:Multiplicityofinfection=metricfortransmissionintensity

→co-infectionsmightincreasediseaseseverity

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Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Q:Howtomeasureefficiencyofcontrolinterventions?

A:Multiplicityofinfection=metricfortransmissionintensity

→co-infectionsmightincreasediseaseseverity

→metrictransmissionintensity

Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Q:Howtomeasureefficiencyofcontrolinterventions?

A:Multiplicityofinfection=metricfortransmissionintensity

→co-infectionsmightincreasediseaseseverity

→metrictransmissionintensity

→impactstatisticsbasedongeneticdata

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Malariacontrol

•Goalofmalariacontrol:

◦reducedeceaseburden⇒drugtreatments

◦reducetransmission⇒bednets,vectorcontrol,...

Q:Howtomeasureefficiencyofcontrolinterventions?

A:Multiplicityofinfection=metricfortransmissionintensity

→co-infectionsmightincreasediseaseseverity

→metrictransmissionintensity

→impactstatisticsbasedongeneticdata

Multiplicityofinfection-Whyisitimportant?

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Multiplicityofinfection-Whyisitimportant?

Multiplicityofinfection-Whyisitimportant?

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Multiplicityofinfection-Whyisitimportant?

Multiplicityofinfection-Whyisitimportant?

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Multiplicityofinfection-Whyisitimportant?

Multiplicityofinfection-Whyisitimportant?

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Multiplicityofinfection-Whyisitimportant?

Multiplicityofinfection-Whyisitimportant?

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Multiplicityofinfection-Whyisitimportant?

•Largenumberofco-infections=hightransmission

Multiplicityofinfection-Whyisitimportant?

•Largenumberofco-infections=hightransmission

•Hightransmission=moregeneticvariation

→Multiplicityofinfection=keyquantityingeneticstudies

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Approach

Approach

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Approach

•Nbloodsamples

Approach

•Nbloodsamples

•nstrains(versionsofageneticmarkers)

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Approach

•Nbloodsamples

•nstrains(versionsofageneticmarkers)

•n ii iobservednumbersampleswithconfigurationii i(0-1vector;lengthn)

Approach

•Nbloodsamples

•nstrains(versionsofageneticmarkers)

•n ii iobservednumbersampleswithconfigurationii i(0-1vector;lengthn)

•Qii iexpectedfrequencysampleswithconfigurationii i

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Approach

•Nbloodsamples

•nstrains(versionsofageneticmarkers)

•n ii iobservednumbersampleswithconfigurationii i(0-1vector;lengthn)

•Qii iexpectedfrequencysampleswithconfigurationii i

Likelihood:

ii i

Qn ii iii i

Log-likelihood:

L=

ii i

n ii ilogQii i

HowtoderiveQii i?

•Assumptions:

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HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

◦Infectionsrare&independentevents

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HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

◦Infectionsrare&independentevents

•Implications:

◦Numberofinfectingstrains∼positivePoissondistribution(parameterλ)

HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

◦Infectionsrare&independentevents

•Implications:

◦Numberofinfectingstrains∼positivePoissondistribution(parameterλ)

P(X=m)=

1eλ−1λm

m!

m>1

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HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

◦Infectionsrare&independentevents

•Implications:

◦Numberofinfectingstrains∼positivePoissondistribution(parameterλ)

P(X=m)=

1eλ−1λm

m!

m>1

◦InfectionconditionedonX=mstrainsmultinomiallydistributed∼Mult(m,pp p)

HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

◦Infectionsrare&independentevents

•Implications:

◦Numberofinfectingstrains∼positivePoissondistribution(parameterλ)

P(X=m)=

1eλ−1λm

m!

m>1

◦InfectionconditionedonX=mstrainsmultinomiallydistributed∼Mult(m,pp p)

◦Quantityofinterest=

λ1−e−λ(meanofpositivePoissondistr.)

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HowtoderiveQii i?

•Assumptions:

◦pp p=(p1,...,pn)...frequencyvectorofstrain

◦Infectionsrare&independentevents

•Implications:

◦Numberofinfectingstrains∼positivePoissondistribution(parameterλ)

P(X=m)=

1eλ−1λm

m!

m>1

◦InfectionconditionedonX=mstrainsmultinomiallydistributed∼Mult(m,pp p)

◦Quantityofinterest=

λ1−e−λ(meanofpositivePoissondistr.)

◦Likelihood:

L=L(λ,pp p)=−Nlog(eλ−1)+

n∑ k=1

Nklog(eλpk−1)

◦Nk...numberofsampleswithstraink

Results •Aims:

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Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

→multidimensionalNewtonmethod(nindependentparameters)

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Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

→multidimensionalNewtonmethod(nindependentparameters)

◦Existence,uniqueness,numericaleffort?

Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

→multidimensionalNewtonmethod(nindependentparameters)

◦Existence,uniqueness,numericaleffort?

•Results:

◦θ̂θ θ=(λ̂,p̂p p)existsandisunique

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Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

→multidimensionalNewtonmethod(nindependentparameters)

◦Existence,uniqueness,numericaleffort?

•Results:

◦θ̂θ θ=(λ̂,p̂p p)existsandisunique

◦Eθ̂θ θNk=Nkexpected=observednumberofsamplescontainingstraink

Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

→multidimensionalNewtonmethod(nindependentparameters)

◦Existence,uniqueness,numericaleffort?

•Results:

◦θ̂θ θ=(λ̂,p̂p p)existsandisunique

◦Eθ̂θ θNk=Nkexpected=observednumberofsamplescontainingstraink

◦λ̂foundbyiterating

λt+1=λt−

λt+

n∑ k=1

log(

1−NkN(1−e−λt))

1−

n∑ k=1

Nk

Neλt−Nk(e−λt−1)

,

convergesfromallstartingvaluesλ0>λ̂

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Results •Aims:

◦MLestimateofparametersθ̂θ θ=(λ̂,p̂p p)?

→multidimensionalNewtonmethod(nindependentparameters)

◦Existence,uniqueness,numericaleffort?

•Results:

◦θ̂θ θ=(λ̂,p̂p p)existsandisunique

◦Eθ̂θ θNk=Nkexpected=observednumberofsamplescontainingstraink

◦λ̂foundbyiterating

λt+1=λt−

λt+

n∑ k=1

log(

1−NkN(1−e−λt))

1−

n∑ k=1

Nk

Neλt−Nk(e−λt−1)

,

convergesfromallstartingvaluesλ0>λ̂

◦p̂k=−1 λ̂log(

1−NkN(1−e−λ̂))

.

Results

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Results

•Cameroon

Results

•Cameroon

•331bloodsample

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Results

•Cameroon

•331bloodsample

Results

•Cameroon

•331bloodsample

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Results

•Cameroon

•331bloodsample

Results

•Cameroon

•331bloodsample

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Results

•Cameroon

•331bloodsample

•8microsatellitemarkers

Results

•Cameroon

•331bloodsample

•8microsatellitemarkers

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Results •Aims:

◦Confidenceintervalls

Results •Aims:

◦Confidenceintervalls

◦Testingtheestimates

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Results •Aims:

◦Confidenceintervalls

◦Testingtheestimates

•Approach:ProfileLikelihood

◦λfixedL(λ,pp p)→max?

Results •Aims:

◦Confidenceintervalls

◦Testingtheestimates

•Approach:ProfileLikelihood

◦λfixedL(λ,pp p)→max?

◦2(maxλ,pp pL(λ,pp p)

︸︷︷

︸max.LH

−max pp pL(λ0,pp p)

︸︷︷

︸profileLH

)∼χ2 1

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Results •Aims:

◦Confidenceintervalls

◦Testingtheestimates

•Approach:ProfileLikelihood

◦λfixedL(λ,pp p)→max?

◦2(maxλ,pp pL(λ,pp p)

︸︷︷

︸max.LH

−max pp pL(λ0,pp p)

︸︷︷

︸profileLH

)∼χ2 1

◦Findλ,λwith:max pp pL(λ,pp p)=max pp pL(λ,pp p)=maxλ,pp pL(λ,pp p)−χ2 1(1−α)/2=ℓ∗

Results •Aims:

◦Confidenceintervalls

◦Testingtheestimates

•Approach:ProfileLikelihood

◦λfixedL(λ,pp p)→max?

◦2(maxλ,pp pL(λ,pp p)

︸︷︷

︸max.LH

−max pp pL(λ0,pp p)

︸︷︷

︸profileLH

)∼χ2 1

◦Findλ,λwith:max pp pL(λ,pp p)=max pp pL(λ,pp p)=maxλ,pp pL(λ,pp p)−χ2 1(1−α)/2=ℓ∗

◦Trick:maximizeconditionedonL(λ,pp p)=ℓ∗

→Lagrangemultiplies&(n+1)-dimensionalNewtonmethod

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Results

Results:

◦1−αconfidenceintervalsexist&uniquelydefined

Results

Results:

◦1−αconfidenceintervalsexist&uniquelydefined

◦Boundsfoundbyiterating2-dimrecursion

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Results

Results:

◦1−αconfidenceintervalsexist&uniquelydefined

◦Boundsfoundbyiterating2-dimrecursion

◦Approachconverges(locally)quadratically

Results

Results:

◦1−αconfidenceintervalsexist&uniquelydefined

◦Boundsfoundbyiterating2-dimrecursion

◦Approachconverges(locally)quadratically

◦TestforH0:λ=λ0vs.HA:λ6=λ0

rejectH0ifλ06∈[λ,λ]

p-value:

χ2 1

(

2(maxλ,pp pL(λ,pp p)−max pp pL(λ0,pp p)))

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Results

Results:

◦1−αconfidenceintervalsexist&uniquelydefined

◦Boundsfoundbyiterating2-dimrecursion

◦Approachconverges(locally)quadratically

◦TestforH0:λ=λ0vs.HA:λ6=λ0

rejectH0ifλ06∈[λ,λ]

p-value:

χ2 1

(

2(maxλ,pp pL(λ,pp p)−max pp pL(λ0,pp p)))

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Results

Results:

◦1−αconfidenceintervalsexist&uniquelydefined

◦Boundsfoundbyiterating2-dimrecursion

◦Approachconverges(locally)quadratically

◦TestforH0:λ=λ0vs.HA:λ6=λ0

rejectH0ifλ06∈[λ,λ]

p-value:

χ2 1

(

2(maxλ,pp pL(λ,pp p)−max pp pL(λ0,pp p)))

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Results (θ̂θ θ−θθ θ0)∼N(00 0,I−1N(θθ θ0))

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Results

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Results

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mean±sd

Conclusions

•MLestimatefornumberofco-infections

(keyparameterinmalaria)

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Conclusions

•MLestimatefornumberofco-infections

(keyparameterinmalaria)

•ML-approachworkswell

Conclusions

•MLestimatefornumberofco-infections

(keyparameterinmalaria)

•ML-approachworkswell

•Robustnessstudy→futurework

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Conclusions

•MLestimatefornumberofco-infections

(keyparameterinmalaria)

•ML-approachworkswell

•Robustnessstudy→futurework

•Includingseveralmarkersatthesametime

Conclusions

•MLestimatefornumberofco-infections

(keyparameterinmalaria)

•ML-approachworkswell

•Robustnessstudy→futurework

•Includingseveralmarkersatthesametime

McCollumetal,2012

MalariaJ

Schneider&Kim,2010,

Theo.Pop.Biol.

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Conclusions

•MLestimatefornumberofco-infections

(keyparameterinmalaria)

•ML-approachworkswell

•Robustnessstudy→futurework

•Includingseveralmarkersatthesametime

McCollumetal,2012

MalariaJ

Schneider&Kim,2010,

Theo.Pop.Biol.