← 返回

The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.

The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.

期刊: Brain and behavior 日期: 2026-06-01 PMID: 42348298 DOI: 10.1002/brb3.71559 浏览: 25
作者: Has Silemek AC, Wertheimer JC, Wei J, Xie Y, Gonzales M, Li D, Dumitrascu O, Kremen S, Tan ZS, Nelson MD
AC, H.S., JC, W., J, W., Y, X., M, G., D, L., O, D., S, K., ZS, T., & MD, N. (2026). The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.. Brain and behavior. https://doi.org/10.1002/brb3.71559
AC HS, JC W, J W, Y X, M G, D L, et al. The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.. Brain and behavior. 2026; doi: 10.1002/brb3.71559
AC HS, JC W, J W, et al. The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.[J]. Brain and behavior. 2026. DOI: 10.1002/brb3.71559.
@article{ac2026,
  author = {Has Silemek AC and Wertheimer JC and Wei J and Xie Y and Gonzales M and Li D and Dumitrascu O and Kremen S and Tan ZS and Nelson MD},
  title = {The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.},
  journal = {Brain and behavior},
  year = {2026},
  doi = {10.1002/brb3.71559},
  note = {PMID: 42348298},
}
TY  - JOUR
AU  - Has Silemek AC
AU  - Wertheimer JC
AU  - Wei J
AU  - Xie Y
AU  - Gonzales M
AU  - Li D
AU  - Dumitrascu O
AU  - Kremen S
AU  - Tan ZS
AU  - Nelson MD
TI  - The "Brain's Traffic Map" Reveals Neural Pathways Linked to Coronary Microvascular Dysfunction in Women.
T2  - Brain and behavior
PY  - 2026
DO  - 10.1002/brb3.71559
AN  - PMID:42348298
ER  - 

摘要

BACKGROUND: The brain-heart axis is central to vascular health, yet no imaging biomarkers capture integrated dysfunction across neural and coronary microvascular networks. Although coronary microvascular dysfunction links to cognitive decline, neural correlates connecting cerebral efficiency with coronary physiology remain unclear. OBJECTIVES: To determine whether the Unified Structural and Functional Connectivity (USFC)-a multimodal magnetic resonance imaging (MRI) "traffic map" of brain network efficiency-predicts coronary endothelial function and cognition in women with ischemia and no obstructive coronary artery disease (INOCA). METHODS: Thirty-three women with suspected INOCA from the Women's Ischemia Syndrome Evaluation (WISE) study (NCT03876223) underwent invasive coronary function testing, cardiac MRI, cognitive evaluation, and multimodal brain MRI. USFC, structural connectivity (SC), and functional connectivity (FC) were computed for predefined 10 backbone pathways. Support vector regression and logistic classification assessed predictive performance. RESULTS: USFC explained 16%-20% more variance in coronary endothelial function, myocardial perfusion reserve, and cognition than SC or FC alone (p < 0.05). Connectivity between the left caudate-superior medial orbital gyrus and right calcarine-inferior occipital gyrus emerged as robust predictors of crystallized cognition (r = -0.78, pFDR < 0.05) and coronary endothelial function (r = 0.70, pFDR < 0.05), respectively. USFC also best discriminated low versus high coronary blood flow (area under the ROC curve [AUC]: USFC 0.622 vs. SC 0.349 and FC 0.425; p < 0.05). CONCLUSIONS: USFC identifies neuro-cardiac pathways linking cerebral efficiency with coronary endothelial function. These results introduce a sensitive biomarker of systemic vulnerability, highlighting occipital and frontostriatal pathways as shared substrates of dysfunction. USFC offers a mechanistic framework for detecting vascular risk across metabolically demanding tissues. TRIAL REGISTRATION: ClinicalTrials.gov identifier: NCT03876223.

AI 智能解读

相关文献

返回分类: 心血管 查看原文 (DOI)
已选择 0 篇文献