EXPRESS: High-resolution three-dimensional characterization of clot evolution in experimental intracerebral hemorrhage using diceCT

BACKGROUND: MRI is widely used to monitor experimental intracerebral hemorrhage (ICH), but T2*-weighted lesion volume may reflect both clot components and blood degradation products during hematoma evolution. We utilized diffusible iodine-based contrast-enhanced CT (diceCT) to examine diceCT-visible clot changes in relation to MRI-defined lesions. METHODS: ICH was induced in 102 mice via collagenase or autologous blood infusion. DiceCT was performed at 4 hours, 1, 3, 7 and 28 days post-ICH. In paired MRI-diceCT cohorts, diceCT-visible clots were compared with T2*-weighted MRI lesions. RESULTS: DiceCT enabled volumetric assessment of clot components and erythrolysis-associated intralesional hypodense regions after ICH. High-resolution imaging revealed vascular-associated clot extensions toward the brain surface. Multimodal analysis revealed an early shift in hemorrhagic lesion composition: the fraction of the MRI-defined T2* lesion represented by diceCT-visible clot decreased markedly by day 7 (16.92% in the autologous blood model and 2.59% in the collagenase model). CONCLUSION: DiceCT provides high-resolution ex vivo visualization of clot structures after experimental ICH. Combined MRI-diceCT analysis indicates that MRI-defined lesions and diceCT-visible clot structures diverge over time, supporting the use of complementary imaging readouts to characterize hematoma evolution and persistent blood-derived signals after ICH.

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Journal
Journal of Cerebral Blood Flow & Metabolism
Published
2026-09-25
DOI
https://doi.org/10.1177/0271678x261494761
Primary Topic
Intracerebral and Subarachnoid Hemorrhage Research
Type
article
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article

EXPRESS: High-resolution three-dimensional characterization of clot evolution in experimental intracerebral hemorrhage using diceCT

Xin Hu, Bang Teng, Mei Fang, Fan Xia et al.
Journal of Cerebral Blood Flow & Metabolism
Intracerebral and Subarachnoid Hemorrhage Research
article

EXPRESS: High-resolution three-dimensional characterization of clot evolution in experimental intracerebral hemorrhage using diceCT

Xin Hu, Bang Teng, Mei Fang, Fan Xia, Jiayan Wang, Lu Ma, Chuanyuan Tao, Tianjie Zhang, Zexu Wang, Dingke Wen
article en

Abstract

BACKGROUND: MRI is widely used to monitor experimental intracerebral hemorrhage (ICH), but T2*-weighted lesion volume may reflect both clot components and blood degradation products during hematoma evolution. We utilized diffusible iodine-based contrast-enhanced CT (diceCT) to examine diceCT-visible clot changes in relation to MRI-defined lesions. METHODS: ICH was induced in 102 mice via collagenase or autologous blood infusion. DiceCT was performed at 4 hours, 1, 3, 7 and 28 days post-ICH. In paired MRI-diceCT cohorts, diceCT-visible clots were compared with T2*-weighted MRI lesions. RESULTS: DiceCT enabled volumetric assessment of clot components and erythrolysis-associated intralesional hypodense regions after ICH. High-resolution imaging revealed vascular-associated clot extensions toward the brain surface. Multimodal analysis revealed an early shift in hemorrhagic lesion composition: the fraction of the MRI-defined T2* lesion represented by diceCT-visible clot decreased markedly by day 7 (16.92% in the autologous blood model and 2.59% in the collagenase model). CONCLUSION: DiceCT provides high-resolution ex vivo visualization of clot structures after experimental ICH. Combined MRI-diceCT analysis indicates that MRI-defined lesions and diceCT-visible clot structures diverge over time, supporting the use of complementary imaging readouts to characterize hematoma evolution and persistent blood-derived signals after ICH.

Journal of Cerebral Blood Flow & Metabolism
Sichuan University (CN), West China Hospital of Sichuan University (CN)
Openalex Percentile: Top 12%
Intracerebral and Subarachnoid Hemorrhage Research
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EXPRESS: High-resolution three-dimensional characterization of clot evolution in experimental intracerebral hemorrhage using diceCT — Xin Hu, Bang Teng, et al. · Journal of Cerebral Blood Flow & Metabolism (2026) | TGRS Research Map | TGRS