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Updated: Feb 12, 2026

Advanced Diffusion Imaging in The Hippocampus of Rats with Mild Traumatic Brain Injury
Published on: August 14, 2019
Glymphatic System Dysfunction and DTI along the Perivascular Space in Traumatic Brain Injury: A Systematic Review and
Nima Broomand Lomer1, Amir Mahmoud Ahmadzadeh2, Mohammad Amin Ashoobi3
1From the Department of Radiology (N.B.L., R.V.), Perelman School of Medicine, Diffusion and Connectomics in Precision Healthcare Research (DiCIPHR) Lab, University of Pennsylvania, Philadelphia, Pennsylvania.
Background:
The glymphatic system, essential for metabolic waste clearance and brain homeostasis, is vulnerable to disruption following traumatic brain injury (TBI). There is a pressing need for practical and robust methods to assess glymphatic function after TBI, as well as for other neurologic disorders. DTI along the perivascular space (DTI-ALPS) might have value in quantifying glymphatic dysfunction.
Purpose:
Our aim was to consolidate existing evidence to determine differences in DTI-ALPS values between patients with TBI and healthy controls (HCs).
Data Sources:
All studies using the DTI-ALPS index and reporting its mean and SD in both patients with TBI and HCs were identified through searches of PubMed, EMBASE, Scopus, and the Web of Science from inception to August 8, 2025.
Study Selection:
Eleven studies comprising 694 patients with TBI and 503 HCs were included.
Data Analysis:
Meta-analysis was conducted using a random-effects model. Standardized mean differences (Hedges g) were used as the effect size measure. Pooled correlations between DTI-ALPS indices and demographic variables were evaluated. Heterogeneity was assessed using the Higgins I2 statistic. Subgroup analyses, meta-regression, and sensitivity analyses were performed to identify potential sources of heterogeneity, and publication bias was examined using funnel plots and the Begg test.
Data Synthesis:
DTI-ALPS values were found to be significantly reduced in patients with TBI compared with HCs (Hedges g = -0.77; 95% CI, -1.38 to -0.15; I2 = 93%). DTI-ALPS showed no significant correlation with age or Glasgow Coma Scale scores. Subgroup analyses revealed larger effect sizes in single-shell studies and those with higher methodologic rigor. Meta-regression showed a larger decrease in DTI-ALPS values in patients with TBI with time (β = -0.01, P = .03). No substantial publication bias was detected (P = .12).
Limitations:
Our meta-analysis is limited by substantial heterogeneity and the small number of included studies.
Conclusions:
TBI is associated with significantly reduced DTI-ALPS values, with more prominent deteriorations over the long term, supporting its potential as a biomarker of glymphatic impairment. However, methodologic heterogeneity emphasizes the need for standardized protocols and longitudinal studies to establish clinical utility.
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