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Optical Coherence Tomography Based Biomechanical Fluid-Structure Interaction Analysis of Coronary Atherosclerosis Progression
Published on: January 15, 2022
Sonographic findings associated with stenosis progression and vascular complications in moyamoya disease
Woo-Jin Lee1, Keun-Hwa Jung1,2, Keon-Joo Lee1
1Department of Neurology, Seoul National University Hospital;
Abstract:
OBJECT The progression of arterial stenosis in patients with moyamoya disease (MMD) has variable courses and an unclear mechanism. The authors hypothesized that elevated wall shear stress (WSS) at the terminal internal carotid artery (ICA) and proximal middle cerebral artery (MCA) may facilitate MMD progression. They indirectly evaluated the relative magnitude of WSS (WSS value [WSSV]) with MR angiography (MRA) and transcranial Doppler to determine its predictive value for stenosis progression (SP) and the development of vascular complications. METHODS Thirty-one medically treated patients (58 hemispheres and 95 nonoccluded vessels) were analyzed with serial MRA (median follow-up 23 months). The parameters studied were SP, SP rates (SPRs) for individual ICAs/MCAs, and their mean values from the ipsilateral hemispheres as mean SP (MSP) and MSP rates (MSPRs). Significant progression was defined as decrements of ≥ 20% for SP and MSP and ≥ 10%/year for SPR and MSPR. The development of vascular complications in relevant hemispheres was also recorded. The WSSV (dyne/cm(2)) was defined as the shear rate multiplied by blood viscosity. RESULTS After adjusting the initial stenosis degree and MRA stage of MMD, an SP of ≥ 20% and an SPR of ≥ 10%/year were associated with the highest-quartile WSSVs for all individual vessels and for MCAs and ICAs separately. For each hemisphere, an MSP of ≥ 20% and an MSPR of ≥ 10%/year were associated with the highest-quartile mean WSSVs. Furthermore, significant SP was highly correlated with vascular complications, and the highest-quartile mean WSSV was independently associated with vascular complications in relevant hemispheres. CONCLUSIONS An elevated WSSV is an independent predictor for SP and vascular complications in nonoccluded MMD.
Insights
Elevated wall shear stress (WSS) in moyamoya disease (MMD) predicts arterial stenosis progression and vascular complications. This finding offers insights into MMD progression mechanisms.
Area of Science:
- Neurology
- Medical Imaging
- Fluid Dynamics
Background:
- Moyamoya disease (MMD) presents variable arterial stenosis progression with unclear mechanisms.
- Elevated wall shear stress (WSS) is hypothesized to drive MMD progression.
Purpose of the Study:
- To evaluate the predictive value of WSS for stenosis progression (SP) and vascular complications in MMD patients.
- To indirectly assess WSS magnitude using MR angiography (MRA) and transcranial Doppler.
Main Methods:
- Serial MRA analysis of 31 medically treated MMD patients over a median 23-month follow-up.
- Quantification of SP, SP rates (SPRs), mean SP (MSP), and mean SPRs (MSPRs).
- Correlation analysis between WSS value (WSSV) and SP, SPRs, MSP, MSPRs, and vascular complications.
Main Results:
- Higher WSSV quartiles were significantly associated with increased SP and SPRs in individual vessels and specific arteries (ICA/MCA).
- Elevated mean WSSV correlated with greater hemispheric SP and MSPRs.
- Significant SP strongly correlated with vascular complications; highest WSSV independently predicted these complications.
Conclusions:
- Elevated WSSV is an independent predictor of stenosis progression in MMD.
- Increased WSSV is also an independent predictor of vascular complications in nonoccluded MMD vessels.
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