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May 17, 2026Diagnostics0 citationsOpen Access

Longitudinal Diffusion MRI Characterizes Persistent Perivascular Diffusivity Asymmetry and White Matter Abnormalities After Cranioplasty for Decompressive Craniectomy

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XXX J XuLYLulu YangJGJiuyu Gao

Key Points

  • This research aims to investigate the use of diffusion tensor imaging analysis as a marker for perivascular diffusivity changes after cranioplasty.
  • Forty-three adults undergoing cranioplasty and thirty-four healthy controls were assessed using diffusion MRI and neuropsychological tests before the procedure and at a 3-month follow-up.
  • DTI-ALPS was quantified to evaluate perivascular diffusivity, examining hemispheric asymmetry in patients after surgery.
  • White matter microstructure was analyzed using tract-based spatial statistics and automated fiber quantification.
  • Global DTI-ALPS values were significantly lower in patients compared to controls both before surgery and at the 3-month follow-up, without significant improvement.
  • Persistent hemispheric asymmetry was noted, with lower values on the affected side, and widespread white matter abnormalities were observed prior to cranioplasty and at follow-up.
  • No significant associations between imaging markers and cognitive performance were found after correcting for multiple comparisons.

Abstract

Background/Objectives: Delayed neurological deficits after decompressive craniectomy may improve after cranioplasty, but quantitative imaging markers for postoperative monitoring remain limited. This study evaluated diffusion tensor imaging analysis along the perivascular space (DTI-ALPS) as an exploratory diffusion-based marker of defect-referenced perivascular diffusivity asymmetry and examined its relationship with white matter microstructure. Methods: Forty-three adults undergoing first-time cranioplasty after decompressive craniectomy and thirty-four matched healthy controls underwent diffusion magnetic resonance imaging and neuropsychological assessment before cranioplasty; twenty-five patients were reassessed at 3 months. DTI-ALPS was quantified globally and according to defect laterality. The white matter microstructure was assessed using tract-based spatial statistics and automated fiber quantification. The associations between imaging measures and cognitive performance were also examined. Results: Global DTI-ALPS was significantly lower in patients than in controls both before cranioplasty and at 3-month follow-up, with no significant longitudinal increase. Defect-referenced hemispheric asymmetry persisted, with lower ALPS values on the affected side, and white matter abnormalities were widespread before cranioplasty and remained evident at follow-up. Associations between imaging measures and cognitive performance were not significant after multiple-comparison correction. Conclusions: DTI-ALPS may capture persistent defect-related hemispheric diffusion asymmetry after cranioplasty and provide complementary information to conventional white matter metrics. However, in patients with substantial postoperative anatomical and fiber-orientation changes, ALPS should be interpreted cautiously as an exploratory proxy of perivascular diffusivity rather than as a direct measure of glymphatic function or physiological recovery.

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Cite This Study

Xu et al. (2026) studied this question.

synapsesocial.com/papers/6a095af37880e6d24efe0c3chttps://doi.org/10.3390/diagnostics16101502
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