Evaluating the role of graft angle on cerebral hemodynamics following direct cerebral bypass for moyamoya disease.

Peng, Cheng; Church, Ephraim W; Brindise, Melissa C · PLoS One · 2026

basic_science · Level V

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Abstract

Direct cerebral bypass is a key treatment for moyamoya disease (MMD). This surgery grafts a donor vessel onto a recipient cerebral artery to boost blood flow to hypoperfused brain regions. Unlike coronary bypass, which restores downstream flow around a blockage, cerebral bypass for MMD reverses flow in the recipient vessel to perfuse the upstream network. Surgical decisions-such as donor vessel choice and anastomosis angle-significantly affect graft hemodynamics and outcomes. Yet these choices still rely on neurosurgeons' experience, lacking quantitative guidance. This study addresses that gap by examining how anastomosis angle shapes post-surgical perfusion and wall shear stress. We created idealized cerebral bypass models with graft angles of 30°, 60°, and 90°. Each model's flow field was assessed under varying inflow and graft-flow combinations using computational fluid dynamics. The 30° angle produced the strongest reverse flow but also the largest WSS imbalance, potentially driving long-term complications. The 60° angle achieved adequate reverse flow with a more uniform WSS profile, making it the most favorable. Overall, our results show graft angle must be carefully considered in cerebral bypass planning.

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