Cardiovascular Issues in Pregnancy

CT Coronary Angiography Identifies a Shear-Stress Signature of Spontaneous Coronary Artery Dissection: A Case-Control Study

Mingzi Zhang, Lucy McGrath‐Cadell, Stephanie Hesselson, Ramtin Gharleghi and 5 more

medRxiv | Aug 18, 2026

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SCAD was associated with a reproducible multi-scale signature of smaller vessel caliber and higher, more variable endothelial shear stress supporting a hemodynamic contribution to SCAD clustering in specific coronary arteries and segments.

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Background: Spontaneous coronary artery dissection (SCAD) causes acute coronary syndrome that predominantly affects women. It is not known why SCAD occurs in specific coronary artery segments. We aimed to identify anatomical and hemodynamic factors that lead to SCAD. Methods: We studied 36 women with angiographically-confirmed SCAD from more than 20 hospital sites and 75 sex- and ethnicity-matched control participants with normal coronary anatomy. Coronary arteries were reconstructed from computed tomography coronary angiography (CTCA) to quantify vessel geometry (curvature, diameter, torsion) and flow-derived metrics (time-averaged endothelial shear stress [TAESS], topological shear variation index [TSVI], oscillatory shear index [OSI], and relative residence time [RRT]) at the tree (left/right), territory (LAD, LCx, RCA), and lesion levels. Results: Compared with controls, SCAD-affected coronary arteries had greater curvature and higher TAESS and TSVI at the whole-tree level (all p?0.007). At the vessel (territory) level, SCAD-affected arteries were smaller in average diameter and showed higher curvature, TAESS, and TSVI than matched control vessels (all p?0.047). Within the same patient, SCAD lesion segments were characterized by smaller diameter, lower torsion, and higher TAESS and TSVI than non-affected segments from the same coronary tree (all p?0.001; curvature borderline). A model combining curvature, TAESS, and TSVI discriminated SCAD from controls with AUC 0.95 (left tree) and 0.97 (right tree); adding diameter yielded AUCs >0.91 at the territory level. Conclusions: SCAD was associated with a reproducible multi-scale signature of smaller vessel caliber and higher, more variable endothelial shear stress supporting a hemodynamic contribution to SCAD clustering in specific coronary arteries and segments.

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Mingzi Zhang

first | UNSW Sydney | ORCID 0000-0002-0118-1160

Lucy McGrath‐Cadell

middle | Victor Chang Cardiac Research Institute | ORCID 0000-0001-6627-3739

Stephanie Hesselson

middle | Victor Chang Cardiac Research Institute | ORCID 0000-0002-4521-5086

Ramtin Gharleghi

middle | UNSW Sydney | ORCID 0000-0001-7478-2920

Nicholas Collins

middle | John Hunter Hospital | ORCID 0000-0003-4722-0214

David W. Muller

middle | St Vincent's Hospital Melbourne | ORCID 0000-0002-5281-0166

Jason C. Kovacic

middle | Victor Chang Cardiac Research Institute | ORCID 0000-0003-4555-769X

Robert M. Graham

middle | Victor Chang Cardiac Research Institute | ORCID 0000-0002-1042-2587

susan beier

last | UNSW Sydney

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Citation

BibTeX

@article{Zhang2026Coronary,
  title = {CT Coronary Angiography Identifies a Shear-Stress Signature of Spontaneous Coronary Artery Dissection: A Case-Control Study},
  author = {Mingzi Zhang and Lucy McGrath‐Cadell and Stephanie Hesselson and Ramtin Gharleghi and Nicholas Collins and David W. Muller and Jason C. Kovacic and Robert M. Graham and susan beier},
  journal = {medRxiv},
  year = {2026},
  doi = {10.64898/2026.08.12.26360329},
  url = {https://doi.org/10.64898/2026.08.12.26360329}
}

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