Fluid Dynamic and in Vitro Blood Study to Understand Catheter-Related Thrombosis

Hannah Palahnuk1, Boyang Su1, Thaddeus Harbaugh2

  • 1Department of Biomedical Engineering, The Pennsylvania State University, 122 Chemical and Biomedical Engineering Building, University Park, PA, USA.

Insights

A high catheter-to-vein ratio (CVR) combined with specific flow conditions significantly increases catheter-related thrombosis (CRT) risk, particularly at the device tip. Careful device placement considering CVR and flow is crucial for patient safety.

Area of Science:

  • Biomedical Engineering
  • Medical Device Hemodynamics
  • Thrombosis Research

Background:

  • Central venous catheters (CVCs) are essential for venous access but carry a risk of catheter-related thrombosis (CRT).
  • A high catheter-to-vein ratio (CVR) is a known risk factor for CRT, indicating a large catheter diameter relative to the vein size.

Purpose of the Study:

  • To investigate the impact of CVR on CVC hemodynamics and its subsequent effect on CRT.
  • To analyze the combined influence of CVR, flow conditions (Reynolds number), and device geometry on thrombosis development.

Main Methods:

  • In vitro flow loops with particle image velocimetry and human blood were used to characterize hemodynamics and investigate CRT.
  • Numerical computation of wall shear rate around CVCs was performed.
  • Evaluated CVRs (0.20, 0.33, 0.49) and Reynolds numbers (200, 800, 1300) under conditions modeling chronic indwelling catheters (no lumen flow).

Main Results:

  • CVR ≥ 0.33 significantly promotes platelet-rich clot growth at the CVC tip due to high wall shear rate gradients and distal wake formation.
  • CRT risk is influenced by the interplay between CVR and Reynolds number; high CVR (≥ 0.33) and high flow (≥ 1300) present the highest tip thrombosis risk.
  • Device geometry and flow conditions are critical for thrombus and fibrin sheath formation, with thrombosis occurring along the entire catheter at CVR = 0.49, irrespective of flow.

Conclusions:

  • CVR, flow dynamics, and device geometry are key determinants of CRT.
  • Close monitoring of the CVC tip for clot formation is recommended for clinical cases with CVR ≥ 0.33 and/or Re ≥ 1300.
  • Strategic device placement considering the combined effects of Reynolds number and CVR is essential to mitigate thrombosis risks.
Abstract

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