Related Experiment Video
Updated: Dec 27, 2025

A Murine Model of Hemodialysis Access-Related Hand Dysfunction
Published on: May 31, 2022
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.
Abstract:
Central venous catheter (CVC) related thrombosis is a major cause of CVC dysfunction in patients under hemodialysis. The aim of our study was to investigate the impact of CVC insertion on hemodynamics in the central veins and to examine the changes in hemodynamic environments that may be related to thrombus formation due to the implantation of CVC. Patient-specific models of the central veins with and without CVC were reconstructed based on computed tomography images. Flow patterns in the veins were numerically simulated to obtain hemodynamic parameters such as time-averaged wall shear stress (TAWSS), oscillating shear index (OSI), relative residence time (RRT), and normalized transverse wall shear stress (transWSS) under pulsatile flow. The non-Newtonian effects of blood flow were also analyzed using the Casson model. The insertion of CVC caused significant changes in the hemodynamic environment in the central veins. A greater disturbance and increase of velocity were observed in the central veins after the insertion of CVC. As a result, TAWSS and transWSS were markedly increased, but most parts of OSI and RRT decreased. Newtonian assumption of blood flow would overestimate the increase in TAWSS after CVC insertion. High wall shear stress (WSS) and flow disturbance, especially the multidirectionality of the flow, induced by the CVC may be a key factor in initiating thrombosis after CVC insertion. Accordingly, approaches to decrease the flow disturbance during CVC insertion may help restrain the occurrence of thrombosis. More case studies with pre-operative and postoperative modeling and clinical follow-up need to be performed to verify these findings. Non-Newtonian blood flow assumption is recommended in computational fluid dynamics (CFD) simulations of veins with CVCs.
More Related Videos
08:51Author Spotlight: Hickman Catheter Use for Long-Term Vascular Access in a Preclinical Swine Model
Published on: March 31, 2023
09:05Catheterization of the Carotid Artery and Jugular Vein to Perform Hemodynamic Measures, Infusions and Blood Sampling in a Conscious Rat Model
Published on: January 30, 2015
Related Concept Videos
Hemodialysis I: Introduction
Hemodialysis II: Procedure and Complications
Hemodialysis III: Nursing Management
Cardiac Catheterization IV: Nursing Management
Cardiac Catheterization I: Pre-Procedure Overview
Cardiac Catheterization II: Right Heart Catheterization