The C-FLOW study: catheter-induced changes in flow dynamics in thromboaspiration

Background Super large-bore 0.088” aspiration catheters (SLAC) are increasingly used for endovascular stroke treatment. Prior in-vitro studies suggest that maximizing the catheter-to-vessel ratio improves distal flow control and may reduce distal embolization. However, the hemodynamic consequences of catheter insertion – particularly changes in local flow velocity – are unknown. We evaluated the relationship between catheter size, volumetric flow, and tip velocity using controlled bench-top models.Methods Two flow systems were built: Setup #1 with a single-path taper and Setup #2 with a proximal bypass simulating collaterals. Four catheters (Zoom 88, Sofia 88, HiPoint 88, RED 72) were tested. Flow was recorded under open and catheter-in-place conditions. Volumetric flow was measured downstream across five runs per configuration, and catheter tip velocity was calculated from flow and effective annular area.Results In Setup #1, SLAC produced modest reductions in volumetric flow (−4.5% to −6.1%), while RED 72 reduced flow by −3.2%. Despite these limited flow changes, calculated tip velocities increased markedly with the larger catheters: HiPoint 88 + 573%, Zoom 88 + 488%, Sofia 88 + 434%, compared with +102% for RED 72. In Setup #2 SLAC caused substantial reductions in volumetric flow (−55.2% to −58.6%), whereas RED 72 reduced flow by −18.5%. Velocity amplification remained disproportionate: HiPoint 88 + 197%, Zoom 88 + 159%, Sofia 88 + 151%, versus +70% for RED 72.Conclusion In an experimental model, SLAC produce modest reductions in bulk flow but generate marked increases in the local estimated mean annular velocity at the catheter tip. Future translational and clinical studies should confirm and investigate potential implications of these findings.

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Publication Details

Journal
Neurological Research
Published
2026-09-21
DOI
https://doi.org/10.1080/01616412.2026.2733670
Primary Topic
Trauma, Hemostasis, Coagulopathy, Resuscitation
Type
article
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article

The C-FLOW study: catheter-induced changes in flow dynamics in thromboaspiration

Thinesh Sivapatham, David Volders, Marios‐Nikos Psychogios, Vitor Mendes Pereira et al.
Neurological Research
Trauma, Hemostasis, Coagulopathy, Resuscitation
article

The C-FLOW study: catheter-induced changes in flow dynamics in thromboaspiration

Thinesh Sivapatham, David Volders, Marios‐Nikos Psychogios, Vitor Mendes Pereira, João André Sousa, Johanna M. Ospel, Pascal J. Mosimann, Eef Hendriks, Charles Matouk
article en

Abstract

Background Super large-bore 0.088” aspiration catheters (SLAC) are increasingly used for endovascular stroke treatment. Prior in-vitro studies suggest that maximizing the catheter-to-vessel ratio improves distal flow control and may reduce distal embolization. However, the hemodynamic consequences of catheter insertion – particularly changes in local flow velocity – are unknown. We evaluated the relationship between catheter size, volumetric flow, and tip velocity using controlled bench-top models.Methods Two flow systems were built: Setup #1 with a single-path taper and Setup #2 with a proximal bypass simulating collaterals. Four catheters (Zoom 88, Sofia 88, HiPoint 88, RED 72) were tested. Flow was recorded under open and catheter-in-place conditions. Volumetric flow was measured downstream across five runs per configuration, and catheter tip velocity was calculated from flow and effective annular area.Results In Setup #1, SLAC produced modest reductions in volumetric flow (−4.5% to −6.1%), while RED 72 reduced flow by −3.2%. Despite these limited flow changes, calculated tip velocities increased markedly with the larger catheters: HiPoint 88 + 573%, Zoom 88 + 488%, Sofia 88 + 434%, compared with +102% for RED 72. In Setup #2 SLAC caused substantial reductions in volumetric flow (−55.2% to −58.6%), whereas RED 72 reduced flow by −18.5%. Velocity amplification remained disproportionate: HiPoint 88 + 197%, Zoom 88 + 159%, Sofia 88 + 151%, versus +70% for RED 72.Conclusion In an experimental model, SLAC produce modest reductions in bulk flow but generate marked increases in the local estimated mean annular velocity at the catheter tip. Future translational and clinical studies should confirm and investigate potential implications of these findings.

Neurological Research
Christiana Care Health System (US), University Health Network (CA), University of Calgary (CA), University of Toronto (CA), University Hospital of Basel (CH), Health Net (US), Yale University (US)
Openalex Percentile: Top 10%
Trauma, Hemostasis, Coagulopathy, Resuscitation
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