NIRS-integrated radiofrequency ablation catheters accurately predicted irrigated lesion depth (R=0.968), width (R=0.971), and depth percentage (R=0.924) in swine models.
NIRS-integrated RFA catheters can accurately monitor irrigated lesion progression and catheter-tissue contact in real-time in swine models, potentially offering intraprocedural feedback to optimize ablation efficacy.
Effect estimate: Pearson's R 0.968
There are currently limited means by which lesion formation can be confirmed during radiofrequency ablation procedures. The purpose of this study was to evaluate the use of NIRS-integrated RFA catheters for monitoring irrigated lesion progression, ex vivo and in vivo. Open-irrigated NIRS-ablation catheters with optical fibers were fabricated to sample tissue diffuse reflectance. Spectra from 44 irrigated lesions and 44 non-lesion sites from ex vivo swine hearts (n = 15) were used to train and evaluate a predictive model for lesion dimensions based on key spectral features. Additional studies were performed in diluted blood to assess NIRS signatures of catheter-tissue contact status. Finally, the potential of NIRS-RFA catheters for guiding lesion delivery was evaluated in a set of in vivo pilot studies conducted in healthy pigs (n = 4). Model predictions for lesion depth (R = 0.968), width (R = 0.971), and depth percentage (R = 0.924) correlated well with measured lesion dimensions. In vivo deployment in preliminary trials showed robust translational consistency of contact discrimination (P < 0.0001) and lesion depth parameters (< 3% error). NIRS empowered catheters are well suited for monitoring myocardial response to RF ablation and may provide useful intraprocedural feedback for optimizing treatment efficacy alongside current practices.
Park et al. (Mon,) conducted a other in Healthy swine (Radiofrequency ablation monitoring) (n=19). NIRS-integrated open-irrigated radiofrequency ablation (RFA) catheter vs. TTC vital stain measurements (actual dimensions) was evaluated on Correlation between model predictions and measured lesion depth (Pearson's R 0.968). NIRS-integrated radiofrequency ablation catheters accurately predicted irrigated lesion depth (R=0.968), width (R=0.971), and depth percentage (R=0.924) in swine models.
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