Sensitivity of digital thermal monitoring parameters to reactive hyperemia

Mohammad W Akhtar1, Stanley J Kleis, Ralph W Metcalfe

  • 1Department of Mechanical Engineering, University of Houston, Houston, TX 77204, USA. mwakhtar3@uh.edu

Insights

Digital thermal monitoring (DTM) assesses vascular reactivity to predict cardiovascular disease (CVD). This study simulated finger blood flow to link DTM measurements with reactive hyperemia (RH), finding temperature rebound (TR) best predicts vascular health.

Area of Science:

  • Biomedical Engineering
  • Cardiovascular Research
  • Medical Diagnostics

Background:

  • Endothelial dysfunction is an early indicator of cardiovascular disease (CVD).
  • Functional assessments like vascular reactivity are superior to structural measures for predicting endothelial health.
  • Digital thermal monitoring (DTM) is a noninvasive technique evaluating fingertip temperature recovery after occlusion to assess reactive hyperemia (RH).

Purpose of the Study:

  • To establish the relationship between DTM measurements and RH using numerical simulations.
  • To evaluate the sensitivity of DTM parameters to RH.
  • To determine criteria for predicting cardiovascular health based on DTM data.

Main Methods:

  • A numerical model of a human finger, including bone, tissue, vasculature, and skin, was developed.
  • Time-dependent Navier-Stokes and energy equations were solved to simulate temperature distribution.
  • Blood flow waveform postocclusion was modeled as RH followed by exponential decay.

Main Results:

  • Simulation results closely matched clinical DTM temperature profiles.
  • Temperature rebound (TR) demonstrated the strongest correlation and sensitivity to RH.
  • Both TR and equilibrium start temperature are crucial for quantifying RH and assessing cardiovascular health.

Conclusions:

  • DTM, particularly TR, shows significant potential as an early predictor of CVD.
  • Numerical modeling provides valuable insights into the physiological basis of DTM.
  • Combined DTM parameters can establish criteria for predicting patient cardiovascular health.