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Association of Corticospinal Tract Asymmetry With Ambulatory Ability After Intracerebral Hemorrhage

  • Yasmin N. Aziz
  • , Carl D. Langefeld
  • , Mary E. Comeau
  • , Miranda C. Marion
  • , Tyler P. Behymer
  • , Lee A. Gilkerson
  • , Padmini Sekar
  • , Weihong Yuan
  • , Vivek Khandwala
  • , Brady J. Williamson
  • , Thomas Maloney
  • , Achala Vagal
  • , Pierce Boyne
  • , Kari Dunning
  • , Matthew L. Flaherty
  • , Steven J. Kittner
  • , Prachi Mehndiratta
  • , Gunjan Y. Parikh
  • , Michael L. James
  • , David Roh
  • Fernando D. Testai, Farhaan S. Vahidy, James Thornton, Ranjit Bagga, Daniel Woo, Stacie L. Demel
  • University of Cincinnati
  • Wake Forest University
  • Cincinnati Children's Hospital Medical Center
  • University of Maryland, Baltimore
  • Duke University
  • Columbia University
  • University of Illinois at Chicago
  • Houston Methodist
  • Baptist Hospital Louisville

Research output: Contribution to journalArticlepeer-review

Abstract

Background: Ambulatory ability after intracerebral hemorrhage (ICH) is important to patients. We tested whether asymmetry between ipsi- and contra-lesional corticospinal tracts (CSTs) assessed by diffusion tensor imaging (DTI) is associated with post-ICH ambulation. Methods: Patients with spontaneous supratentorial ICH were recruited from 8 US sites between 2017 and 2024. For each patient, fractional anisotropy (FA) asymmetry index (AI) was computed for the whole CST and on a subset of fibers restricted to the cerebral peduncle (CP). Clinical and radiographic features were collected. The primary outcome was Barthel Index Mobility Score (BIMS) at 3 months (dichotomized outcome [DO]: BIMS 15 = good [independent ambulation]; BIMS < 15 = poor [non-independent ambulation]; ordinal outcome [OO]: BIMS 0, 5, 10, 15). Two imputation-based multiple logistic regression analyses accounted for whether ICH prevented tracking of CSTs. Odds ratios (ORs) were reported for a change of 0.1 and 95% confidence intervals (CIs). Results: At 3 months, 124 patients were eligible for inclusion. In addition to known clinical variables, CST and CP FA AI were associated with poor BIMS (OR 2.97, CI 1.12–7.90, p = 0.029; OR 3.80, CI 1.63–8.84, p = 0.002). In Model 1, unresolved FA (FA zero) was not correlated with lower BIMS (DO: OR 3.25, CI 0.62–17.07, p = 0.163; ordinal outcomes: OR 2.02, CI 0.48–8.55, p = 0.341). In Model 2, the combination of CST FA AI and FA zero correlated with lower BIMS (DO: joint p-value =0.041; OO: p = 0.030). CP FA asymmetry was associated with lower BIMS (DO: OR 3.96, CI 1.25–12.55, p = 0.019; OO: OR 3.39, CI 1.24–9.27, p = 0.017). Conclusion: DTI-assessed CST integrity may be an additional tool physicians can utilize to guide post-ICH ambulatory expectations.

Original languageEnglish
Pages (from-to)948-957
Number of pages10
JournalAnnals of Clinical and Translational Neurology
Volume13
Issue number5
DOIs
StatePublished - May 2026

Keywords

  • diffusion tensor imaging
  • hemorrhage
  • mobility

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