Chronic Total Occlusion Crossing Approach Based on Plaque Cap Morphology: The CTOP Classification
Fadi Saab1, Michael R Jaff2, Larry J Diaz-Sandoval1
11 Metro Health-University of Michigan Health, Wyoming, MI, USA.
Insights
The plaque cap morphology (CTOP) classification system helps predict chronic total occlusion (CTO) crossing success. Type I CTOs are easiest to cross antegrade, while type IV is most difficult, benefiting from retrograde tibiopedal access.
Area of Science:
- Vascular Surgery
- Interventional Cardiology
- Medical Imaging
Background:
- Chronic total occlusions (CTOs) present challenges in endovascular interventions.
- Predictive tools for successful CTO crossing are crucial for optimizing treatment strategies.
Purpose of the Study:
- To introduce the plaque cap morphology (CTOP) classification system for chronic total occlusions (CTOs).
- To evaluate the CTOP system's efficacy in predicting successful lesion crossing during endovascular interventions.
Main Methods:
- Retrospective analysis of 142 CTO interventions in 114 patients with peripheral artery disease.
- CTO cap morphology classified into four types (I-IV) based on angiography and duplex ultrasonography.
- Correlation of CTOP types with procedural success, crossing techniques, and access conversion.
Main Results:
- CTOP type I lesions were most amenable to antegrade crossing with less calcification.
- CTOP type IV lesions were most challenging for antegrade crossing, often requiring retrograde tibiopedal access.
- Lesion length >10 cm, severe calcification, and CTOP types II, III, and IV were associated with increased need for alternate access strategies.
Conclusions:
- The CTOP classification system effectively predicts CTO crossing difficulty and guides procedural approach.
- Retrograde tibiopedal access is beneficial for complex CTOs (types II-IV), long lesions, and severe calcification.
- CTOP classification aids in selecting optimal strategies for endovascular CTO treatment.
Purpose:
To present the chronic total occlusion (CTO) crossing approach based on plaque cap morphology (CTOP) classification system and assess its ability to predict successful lesion crossing.
Methods:
A retrospective analysis was conducted of imaging and procedure data from 114 consecutive symptomatic patients (mean age 69±11 years; 84 men) with claudication (Rutherford category 3) or critical limb ischemia (Rutherford category 4-6) who underwent endovascular interventions for 142 CTOs. CTO cap morphology was determined from a review of angiography and duplex ultrasonography and classified into 4 types (I, II, III, or IV) based on the concave or convex shape of the proximal and distal caps.
Results:
Statistically significant differences among groups were found in patients with rest pain, lesion length, and severe calcification. CTOP type II CTOs were most common and type III lesions the least common. Type I CTOs were most likely to be crossed antegrade and had a lower incidence of severe calcification. Type IV lesions were more likely to be crossed retrograde from a tibiopedal approach. CTOP type IV was least likely to be crossed in an antegrade fashion. Access conversion, or need for an alternate access, was commonly seen in types II, III, and IV lesions. Distinctive predictors of access conversion were CTO types II and III, lesion length, and severe calcification.
Conclusion:
CTOP type I lesions were easiest to cross in antegrade fashion and type IV the most difficult. Lesion length >10 cm, severe calcification, and CTO types II, III, and IV benefited from the addition of retrograde tibiopedal access.
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