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Updated: Jul 4, 2025

Transradial Access Chemoembolization for Hepatocellular Carcinoma Patients
Published on: September 20, 2020
A simple and easy technique to overcome anatomic challenges of transradial access in STEMI patients
Isabel Durães Campos1, Carlos Galvão Braga2, João Costa2
1Department of Intensive Care Medicine of Centro Hospitalar Universitário São João, Porto, Portugal.
Background:
Transradial access (TRA) is associated with fewer access-related complications, earlier discharge and lower mortality than transfemoral access (TFA), being the preferred route to perform primary percutaneous coronary interventions (PPCIs) in STEMI patients. However, the radial artery is smaller, more superficial and thinner than the femoral artery, which may make PPCIs difficult.
Purpose:
This study describes a practical solution to overcome several of the anatomical difficulties during the TRA, demonstrating its outcomes during clinical practice.
Methods:
The authors reviewed the clinical records of 1510 STEMI patients who underwent PPCIs over seven years. Of these, 95 (6.3%) patients experienced problems in advancing a 6F guiding catheter and underwent to STR technique. This technique consists in the use of a longer 5Fr STR flush catheter, which can be used as a "child" type rapid exchange catheter inside the 6Fr guiding catheter, adopting a 5-in-6 Fr technique and creating a smooth distal tip transition of the 6Fr guiding catheter.
Results:
In 89/95 patients (93.7%), this new technique was successful. The majority of these patients were female (51; 53.7%) and the mean age was 67 ± 14.3 years. The mean reperfusion time since arrival at the catheterization laboratory with STR technique was 24.5 ± 9.9 min, being statistically shorter than when a crossover to TFA was used (29.3 ± 9.5 min; p < 0.017). PPCIs were successfully completed in all different coronary arteries, without complications related to the procedure.
Conclusions:
The STR technique is a simple and useful approach that allowed more successful passage of guiding catheters through difficult TRA, allowing a reduction of crossover to TFA in this study to 2.4 %, which translates into a shorter reperfusion time.
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