Related Experiment Video
Updated: Jun 17, 2026

Interventional Diagnostic Procedure: A Practical Guide for the Assessment of Coronary Vascular Function
Published on: March 15, 2022
Impact of catheter insertion using the radial approach on vasodilatation in humans
Ellen A Dawson1, Sudhir Rathore, N Timothy Cable
1Research Institute for Sport and Exercise Sciences, Liverpool John Moores University, Liverpool L3 2ET, UK. e.dawson@ljmu.ac.uk
Insights
Catheter sheath insertion temporarily reduces flow-mediated dilatation (FMD) and nitric oxide (NO)-mediated function in the radial artery. However, vascular function, including FMD, recovers within three months, suggesting an endothelium-independent component to FMD.
Area of Science:
- Cardiovascular Physiology
- Endothelial Function Research
- Vascular Biology
Background:
- Endothelial disruption from catheter sheath insertion is a human model for studying vascular response.
- Flow-mediated dilatation (FMD) assesses endothelial function, relying on nitric oxide (NO) release.
- Transradial catheterization provides a unique opportunity to study acute and chronic vascular changes.
Purpose of the Study:
- To determine the impact of catheter sheath insertion on radial artery FMD in vivo.
- To assess changes in endothelium-dependent and independent NO-mediated function following catheterization.
- To investigate the recovery of vascular function after sheath removal.
Main Methods:
- Seventeen subjects undergoing transradial catheterization were assessed before, immediately after, and 3-4 months post-procedure.
- Radial artery FMD and glyceryl trinitrate (GTN)-mediated function were measured in both arms.
- Measurements were taken at the sheath site, catheter site, and distally, with the non-catheterized arm serving as a control.
Main Results:
- Catheter sheath insertion significantly reduced FMD from baseline (9.0% to 4.5% at sheath site) and GTN responses (14.8% to 7.9%).
- These reductions were temporary, with FMD and GTN responses returning to baseline levels by 3 months post-catheterization.
- No complete abolition of FMD was observed, despite significant endothelial disruption likely caused by sheath placement.
Conclusions:
- Catheter sheath insertion causes transient impairment of endothelial-dependent and independent vasodilation.
- The FMD response may involve mechanisms independent of a fully intact endothelium and nitric oxide release.
- Radial artery vascular function demonstrates significant recovery within three months following transradial catheterization.
Abstract:
The aim of this study was to determine the impact of catheter sheath insertion, a model of endothelium disruption in humans, on the conventional FMD (flow-mediated dilatation) response in vivo. Seventeen subjects undergoing transradial catheterization were recruited and assessed prior to, the day after, and 3-4 months postcatheterization. The catheter sheath's external diameter was 2.7 mm, and the average preprocedure internal radial artery diameter was 2.8 mm, indicating a high likelihood of endothelial denudation as a consequence of sheath placement. Radial artery flow-mediated and endothelium-derived NO (nitric oxide)-dependent function (FMD) was assessed within the region of sheath placement (sheath site) and also above the sheath (catheter site). GTN (glyceryl trinitrate) endothelium-independent NO-mediated function was also assessed distally. Measurements were made in both arms at all time points; the non-catheterized arm provided an internal control. Neither sheath (4.5+/-0.9%) nor catheter (4.4+/-0.9%) insertion abolished FMD, although both significantly decreased FMD from preintervention levels (9.0+/-0.8% sheath segment; 8.4+/-0.8% catheter segment; P<0.05). The impact of sheath and catheter placement on FMD was no longer evident after approximately 3 months recovery (8.0+/-1.5 and 8.1+/-1.7%, sheath and catheter, respectively). GTN responses also decreased from 14.8+/-1.7 to 7.9+/-1.0% (P<0.05) as a result of sheath placement, but values returned to baseline at approximately 3 months (13.0+/-1.8%). These results suggest that the presence of an intact, functional endothelial layer and consequent NO release may not be obligatory for some component of the FMD response. This raises the possibility of an endothelium-independent contribution to the flow-induced vasodilatation in humans.
More Related Videos
Related Concept Videos
Assessment of radial pulse
The radial pulse, located at the wrist, is often the preferred site for assessing peripheral pulse because of its accessibility and dependability. The process of determining the radial pulse involves several steps:
Cardiac Catheterization IV: Nursing Management
Cardiac Catheterization I: Pre-Procedure Overview

