Influence of Hemodialysis Catheter Insertion on Hemodynamics in the Central Veins

Min-Hyuk Park1, Yue Qiu1, Haoyao Cao1

  • 1Department of Applied Mechanics, Sichuan University, Chengdu 610065, China.

Insights

Central venous catheter (CVC) insertion disrupts blood flow, increasing wall shear stress and potentially causing thrombosis in hemodialysis patients. Reducing flow disturbance during CVC placement may prevent clot formation.

Area of Science:

  • Biomedical Engineering
  • Medical Imaging
  • Computational Fluid Dynamics

Background:

  • Central venous catheters (CVCs) are crucial for hemodialysis but often dysfunction due to thrombosis.
  • Understanding the hemodynamic impact of CVCs is vital for preventing catheter-related complications.

Purpose of the Study:

  • To investigate how CVC insertion affects central vein hemodynamics.
  • To identify hemodynamic changes linked to thrombus formation after CVC implantation.

Main Methods:

  • Patient-specific models of central veins with/without CVCs were created from CT scans.
  • Numerical simulations analyzed blood flow patterns and hemodynamic parameters (TAWSS, OSI, RRT, transWSS).
  • Non-Newtonian blood flow (Casson model) and Newtonian assumptions were compared.

Main Results:

  • CVC insertion significantly altered hemodynamics, increasing velocity and flow disturbance.
  • Time-averaged wall shear stress (TAWSS) and transverse WSS (transWSS) increased markedly.
  • Newtonian models overestimated TAWSS increases compared to non-Newtonian models.

Conclusions:

  • High wall shear stress and flow disturbance induced by CVCs are key factors in thrombosis.
  • Minimizing flow disturbance during CVC insertion may reduce thrombosis risk.
  • Non-Newtonian CFD simulations are recommended for CVC-related hemodynamic studies.

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