Machine Learning to Understand Genetic and Clinical Factors Associated With the Pulse Waveform Dicrotic Notch

Jonathan W Cunningham1,2, Paolo Di Achille3, Valerie N Morrill2

  • 1Cardiovascular Division, Brigham & Women's Hospital, Boston (J.W.C., V.N., S.D.S.).

Insights

The absence of a dicrotic notch on photoplethysmography, a digital phenotype, is heritable and linked to cardiovascular disease risk genes. Increased notch smoothness predicts higher risk of incident cardiovascular events.

Area of Science:

  • Cardiovascular Genetics
  • Digital Phenotyping
  • Biomedical Engineering

Background:

  • Absence of a dicrotic notch on photoplethysmography is an easily measurable trait linked to cardiovascular disease.
  • The genetic basis and prognostic value of the dicrotic notch continuum for incident cardiovascular disease are not well understood.

Purpose of the Study:

  • To investigate the heritability and genetic underpinnings of the dicrotic notch trait.
  • To explore the prognostic value of dicrotic notch smoothness for incident cardiovascular disease.

Main Methods:

  • Utilized UK Biobank data from 169,787 participants.
  • Identified absent dicrotic notch and developed a machine learning-based continuous trait for notch smoothness.
  • Conducted genome-wide association studies and calculated polygenic risk scores.

Main Results:

  • Notch smoothness heritability was 7.5%; 15 significant loci were identified, including NT5C2, IGFBP3, and PHACTR1.
  • Greater notch smoothness stratified risk for myocardial infarction, coronary artery disease, stroke, heart failure, and aortic stenosis.
  • A polygenic risk score for notch smoothness predicted incident cardiovascular disease and all-cause mortality.

Conclusions:

  • A machine learning-derived continuous trait of dicrotic notch smoothness is heritable and associated with vascular stiffness genes.
  • Increased notch smoothness is linked to a higher risk of incident cardiovascular disease.
  • Digital phenotyping of the dicrotic notch may identify individuals at risk through specific genetic pathways.
Abstract

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