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Andersons pediatric cardiology 140

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AnnotatedReferences
Arraez-AybarLA,Turrero-NoguesA,MarantosGamarraDG.Embryoniccardiacmorphometry
incarnegiestages15-23,fromthecomplutense
universityofmadridinstituteofembryology
humanembryocollection.CellsTissuesOrgans.
2008;187:211–220.
Acarefulanddetailedanatomicanalysisof50
embryosrangingfromCarnegiestage15to23,
illustratingmanyofthebasictechniquesusedin
classicalembryologytodeterminetheoriginsof
organfunction..
MeilhacSM,LescroartF,BlanpainC,Buckingham
ME.Cardiaccelllineagesthatformtheheart.
ColdSpringHarbPerspectMed.
2014;4:a013888.
Acomprehensivedescriptionoftheearlyevents
underlyingthedeterminationofmajorcardiac
celltypesandthedifferentgeneticmarkersthat
areusedtoidentifythem..
KrishnanA,SamtaniR,DhanantwariP,etal.A
detailedcomparisonofmouseandhuman
cardiacdevelopment.PediatrRes.2014;76:500–
507.
Anup-to-datereviewofearlyhumancardiac


development,includinghowthedifferent
morphogenicfieldscomeintoplayandtheir
fatesduringcardiacdevelopmentand
maturation..
PintoAR,IlinykhA,IveyMJ,etal.Revisiting


cardiaccellularcomposition.CircRes.
2016;118:400–409.
Thispaperusesstate-of-the-artlineagetracing
techniquestoprovidedefinitiveestimatesofthe
cellcompositionofthemammalianheart..
PossKD,WilsonLG,KeatingMT.Heart
regenerationinzebrafish.Science.
2002;298:2188–2190.
Thefirstseminalobservationthataresected
ventricularwallcould,undercertain
circumstances,regenerateafunctionally
integratedmyocardium..
BurridgePW,SharmaA,WuJC.Geneticand
epigeneticregulationofhumancardiac
reprogramminganddifferentiationin
regenerativemedicine.AnnuRevGenet.
2015;49:461–484.
Theauthorsreviewrecentadvancesinthegenetic
andepigeneticcontrolofhumancardiogenesis,
cardiacdifferentiation,andtheinduced
reprogrammingofsomaticcellsto
cardiomyocytes.Theyexplorethenecessary


geneticprogramsneededforinducing
proliferationofwhatappeartobepostmitotic
cardiomyocytes..
LiN,WangHX,HanQY,etal.Activationofthe
cardiacproteasomepromotesangiotensionIIinducedhypertrophybydown-regulationof
atrap.JMolCellCardiol.2015;79:303–314.

Thisreviewoutlinestherolethatproteinquality
controlmechanismshaveinmaintainingnormal
cardiachomeostasisandtheconsequencesof
theirdysfunctioninthedevelopmentofcardiac
disease..
HuxleyHE.Gettingtogripswithcontraction:the
interplayofstructureandbiochemistry.Trends
BiochemSci.1998;23:84–87.
Ashortsummaryoutliningtheexperimentsthatled
tothefundamentalmodelofmusclecontraction..
Geisterfer-LowranceAA,KassS,TanigawaG,et
al.Amolecularbasisforfamilialhypertrophic
cardiomyopathy:abetacardiacmyosinheavy
chaingenemissensemutation.Cell.
1990;62:999–1006.
Theoriginalmanuscriptestablishingagenetic
basisforfamilialhypertrophiccardiomyopathy
andshowingthatitisadiseaseofthe
sarcomere..
SolaroRJ.Sarcomerecontrolmechanismsandthe



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