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Risk-treatment paradox in the selection of transradial access for percutaneous coronary intervention
Neil J Wimmer1, Frederic S Resnic, Laura Mauri
1Division of Cardiovascular Medicine, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.
Insights
A new model predicts complications from femoral artery access during percutaneous coronary intervention (PCI). High-risk patients were paradoxically less likely to receive safer transradial access.
Area of Science:
- Cardiology
- Interventional Cardiology
- Medical Devices & Technology
Background:
- Access site complications are a significant concern in percutaneous coronary intervention (PCI).
- Transradial arterial access offers a lower risk of complications compared to transfemoral arteriotomy.
- Predicting and mitigating these complications is crucial for patient safety.
Purpose of the Study:
- To develop a predictive model for access site complications in patients undergoing PCI via femoral arteriotomy.
- To evaluate if transradial access is preferentially used in high-risk patients.
Main Methods:
- Analysis of 17,509 patients undergoing PCI without circulatory support (2008-2011).
- Development of a prediction model using preprocedural clinical and demographic data.
- Internal validation of the model using bootstrap resampling.
Main Results:
- A prediction model for femoral access site complications was generated, identifying key risk factors (age, female gender, troponin, renal function, emergent PCI, prior PCI, diabetes, peripheral artery disease).
- The model demonstrated moderate predictive discrimination (c-statistic=0.72).
- Patients with a higher predicted risk of femoral access complications were less likely to receive transradial access.
Conclusions:
- A validated model for predicting transfemoral access site complications during PCI has been developed.
- There is a paradoxical trend where patients at highest risk for transfemoral complications, who would most benefit from transradial access, are least likely to receive it.
Background:
Access site complications contribute to morbidity and mortality during percutaneous coronary intervention (PCI). Transradial arterial access significantly lowers the risk of access site complications compared to transfemoral arteriotomy. We sought to develop a prediction model for access site complications in patients undergoing PCI with femoral arteriotomy, and assess whether transradial access was selectively used in patients at high risk for complications.
Methods And Results:
We analyzed 17 509 patients who underwent PCI without circulatory support from 2008 to 2011 at 5 institutions. Transradial arterial access was used in 17.8% of patients. In those who underwent transfemoral access, 177 (1.2%) patients had access site complications. Using preprocedural clinical and demographic data, a prediction model for femoral arteriotomy complications was generated. The variables retained in the model included: elevated age (P<0.001), female gender (P<0.001), elevated troponin (P<0.001), decreased renal function or dialysis (P=0.002), emergent PCI (P=0.01), prior PCI (P=0.005), diabetes (P=0.008), and peripheral artery disease (P=0.003). The model showed moderate discrimination (optimism-adjusted c-statistic=0.72) and was internally validated via bootstrap resampling. Patients with higher predicted risk of complications via transfemoral access were less likely to receive transradial access (P<0.001). Similar results were seen in patients presenting with and without ST-segment myocardial infarction and when adjusting for individual physician operator.
Conclusions:
We generated and validated a model for transfemoral access site complications during PCI. Paradoxically, patients most likely to develop access site complications from transfemoral access, and therefore benefit from transradial access, were the least likely to receive transradial access.
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