PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 1, 2026Journal of Magnetic Resonance Imaging2 citations

Association Between the Systemic Immune‐Inflammation Index and Aneurysmal Wall Enhancement on High‐Resolution Magnetic Resonance Vessel Wall Imaging in Unruptured Intracranial Aneurysms

View Full Paper
JHJiwan HuangRGRunze GeCLChang Li

Key Points

  • To determine the relationship between the systemic immune-inflammation index and aneurysmal wall enhancement in intracranial aneurysms.
  • Performed high-resolution vessel wall imaging on 418 intracranial aneurysms.
  • Calculated systemic immune-inflammation index from admission blood counts.
  • Analyzed data using multivariable logistic regression and propensity score matching.
  • Conducted longitudinal analysis on a subset of patients to evaluate aneurysm growth.
  • 34.0% of aneurysms exhibited aneurysmal wall enhancement.
  • Elevated SII had an odds ratio of 1.93 for the presence of aneurysmal wall enhancement.
  • In a longitudinal analysis, elevated SII was significantly associated with aneurysm growth (OR = 20.519).
  • Strongest association between SII and aneurysmal wall enhancement was observed in the internal carotid artery.

Abstract

ABSTRACT Background Inflammation is a critical driver of intracranial aneurysm (IA) instability. The systemic immune‐inflammation index (SII), a novel composite inflammatory biomarker, may reflect the local mural changes observed on vessel wall imaging (VWI). Purpose/Hypothesis To investigate the association between the SII and aneurysmal wall enhancement (AWE) on high‐resolution vessel wall imaging (HRVWI), and to evaluate SII as a potential biomarker for aneurysm instability. Study Type Prospective cross‐sectional study. Population Four hundred and eighteen intracranial aneurysms in 311 patients (65.3% female, median age 58.0 years) underwent HRVWI. A sub‐cohort of 67 patients with 84 aneurysms was included for longitudinal analysis of aneurysm growth (median follow‐up 7.0 months). Field Strength/Sequence Field strength/sequence: A 3.0T MR scanner; 3D time‐of‐flight magnetic resonance angiography (TOF‐MRA); 3D black‐blood T1‐weighted volumetric turbo spin echo acquisition (T1‐VISTA); and post‐contrast vessel wall imaging using a 3D fast field echo sequence. Assessment AWE defined as aneurysm‐to‐pituitary stalk contrast ratio (CR stalk ) ≥ 0.60. SII was calculated from admission blood counts as (platelet count * neutrophil count)/(lymphocyte count * 1000). Statistical Tests Multivariable logistic regression and propensity score matching evaluated the association between SII and AWE. Longitudinal analysis was performed using Firth's logistic regression. Subgroup analyses were stratified by clinical and aneurysmal characteristics. p < 0.05 was considered significant. Results AWE was present in 142/418 (34.0%) aneurysms. In multivariable analysis, elevated SII was independently associated with AWE (odds ratio OR = 1.93). This association remained significant after PSM (median SII: 0.60 in AWE group vs. 0.42 in non‐AWE group). SII was also independently associated with aneurysm growth in the longitudinal sub‐cohort (OR = 20.519). Subgroup analysis showed a significant interaction with aneurysm location, with the strongest association in the internal carotid artery (OR = 3.55; 95% CI: 1.63–7.71). Data Conclusion Elevated SII is independently associated with the presence of AWE and aneurysm growth. Evidence Level 3. Technical Efficacy Stage 2.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/69cd79915652765b073a66cdhttps://doi.org/10.1002/jmri.70307
Ask AI
Helpful
Bookmark
Share
View Full Paper