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Diffusion MRI derived free-water imaging measures in patients with schizophrenia and their non-psychotic siblings
Xiao Chang1, René C W Mandl2, Ofer Pasternak3
1Department of Psychiatry, University Medical Center Utrecht (UMCU), UMCU Brain Center, Utrecht, the Netherlands; Social, Genetic and Developmental Psychiatry, Institute of Psychiatry, Psychology & Neuroscience, King's College London, London, UK; Institute of Science and Technology for Brain-Inspired Intelligence, Fudan University, Shanghai, China.
Abstract:
Free-water imaging is a diffusion MRI technique that separately models water diffusion hindered by fiber tissue and water that disperses freely in the extracellular space. Studies using this technique have shown that schizophrenia is characterized by a lower level of fractional anisotropy of the tissue compartment (FAt) and higher free-water fractional volume (FW). It is unknown, however, whether such abnormalities are an expression of pre-existing (genetic) risk for schizophrenia or a manifestation of the illness. To investigate the contribution of familial risk factors to white matter abnormalities, we used the free-water imaging technique to assess FAt and FW in a large cohort of 471 participants including 161 patients with schizophrenia, 182 non-psychotic siblings, and 128 healthy controls. In this sample, patients did not show significant differences in FAt as compared to controls, but did exhibit a higher level of FW relative to both controls and siblings in the left uncinate fasciculus, superior corona radiata and fornix / stria terminalis. This increase in FW was found to be related to, though not solely explained by, ventricular enlargement. Siblings did not show significant FW abnormalities. However, siblings did show a higher level of FAt as compared to controls and patients, in line with results of a previous study on the same data using conventional DTI. Taken together, our findings suggest that extracellular free-water accumulation in patients is likely a manifestation of established disease rather than an expression of familial risk for schizophrenia and that super-normal levels of FAt in unaffected siblings may reflect a compensatory process.
Insights
Free-water imaging reveals that increased extracellular free water in schizophrenia patients is a disease manifestation, not a genetic risk. Unaffected siblings show higher tissue fractional anisotropy, possibly a compensatory mechanism.
Area of Science:
- Neuroimaging
- Psychiatric Disorders
- White Matter Integrity
Background:
- Schizophrenia is associated with white matter abnormalities, including reduced fractional anisotropy of the tissue compartment (FA sub n) and increased free-water fractional volume (FW).
- It remains unclear if these changes reflect genetic predisposition or are consequences of the illness.
Purpose of the Study:
- To investigate the role of familial risk factors in white matter abnormalities in schizophrenia.
- To differentiate between pre-existing risk and illness-related changes using free-water imaging.
Main Methods:
- Employed free-water imaging to assess FA sub n and FW in 471 participants: 161 schizophrenia patients, 182 non-psychotic siblings, and 128 healthy controls.
- Analyzed diffusion MRI data to quantify white matter microstructure.
Main Results:
- Schizophrenia patients exhibited higher FW in specific white matter tracts (uncinate fasciculus, superior corona radiata, fornix/stria terminalis) compared to controls and siblings.
- Increased FW in patients was associated with ventricular enlargement.
- Siblings did not show significant FW abnormalities but displayed higher FA sub n than both controls and patients.
Conclusions:
- Extracellular free-water accumulation in schizophrenia is likely a manifestation of the disease itself, not a marker of familial risk.
- Elevated FA sub n in unaffected siblings may indicate a compensatory neural process.
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