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Updated: Feb 17, 2026

Developing a Rat Model for Bipolar Disorder
Published on: May 2, 2025
Patients with chronic bipolar disorder exhibit widespread increases in extracellular free water
Carissa Tuozzo1, Amanda E Lyall1,2, Ofer Pasternak1,3
1Psychiatry Neuroimaging Laboratory, Department of Psychiatry, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.
Objectives:
Bipolar disorder (BP) is a debilitating psychiatric disease that is not well understood. Previous diffusion magnetic resonance imaging (dMRI) studies of BP patients found prominent microstructural white matter (WM) abnormalities of reduced fractional anisotropy (FA). Because FA is a nonspecific measure, relating these abnormalities to a specific pathology is difficult. Here, dMRI specificity was increased by free water (FW) imaging, which allows identification of changes in extracellular space (FW) from neuronal tissue (fractional anisotropy of tissue [FA-t]). Previous studies identified increased FW in early schizophrenia (SZ) stages which was replaced by widespread decreased FA-t in chronic stages. This is the first analysis utilizing this method to compare BP patients and controls.
Methods:
3 Tesla diffusion weighted imaging (3T DWI) data were acquired for 17 chronic BP and 28 healthy control (HC) participants at Oxford University. Tract-based spatial statistics was utilized to generate a WM skeleton. FW imaging deconstructed the diffusion signal into extracellular FW and tissue FA-t maps. These maps were projected onto the skeleton and FA, FA-t, and FW were compared between groups.
Results:
We found significantly lower FA in BP patients when compared to HC in areas that overlapped with extensive FW increases. There were no FA-t differences.
Conclusions:
Our study suggests that chronic BP shows similar WM changes to early SZ, suggesting that extracellular FW increases could be a transient indication of recent psychotic episodes. Since FW increase in SZ has been suggested to be related to neuroinflammation, we theorize that neuroinflammation might be a shared pathology between chronic BP and early SZ.
Insights
Bipolar disorder (BP) shows white matter (WM) abnormalities, specifically increased free water (FW) and decreased fractional anisotropy (FA), similar to early schizophrenia. This suggests neuroinflammation may be a shared pathology in these conditions.
Area of Science:
- Neuroimaging
- Psychiatry
- White Matter Imaging
Background:
- Bipolar disorder (BP) is a severe psychiatric condition with poorly understood white matter (WM) abnormalities.
- Previous diffusion magnetic resonance imaging (dMRI) studies indicate reduced fractional anisotropy (FA) in BP patients, but FA is a non-specific measure.
- Free water (FW) imaging offers increased specificity by differentiating extracellular space (FW) from neuronal tissue (FA-t).
Purpose of the Study:
- To investigate white matter (WM) microstructural changes in bipolar disorder (BP) using advanced free water (FW) imaging.
- To compare FW and fractional anisotropy of tissue (FA-t) in BP patients and healthy controls (HC).
- To explore potential shared pathologies between BP and schizophrenia (SZ) based on WM imaging findings.
Main Methods:
- Acquired 3 Tesla diffusion weighted imaging (3T DWI) data from 17 chronic BP patients and 28 HC participants.
- Employed tract-based spatial statistics and FW imaging to analyze WM microstructure.
- Compared fractional anisotropy (FA), FA-t, and FW maps between BP patients and HC.
Main Results:
- BP patients exhibited significantly lower FA compared to HC.
- These FA reductions in BP patients overlapped with areas of increased FW.
- No significant differences in FA-t were observed between BP patients and HC.
Conclusions:
- Chronic BP demonstrates WM changes, specifically increased FW, mirroring early schizophrenia (SZ) findings.
- Elevated FW may indicate transient psychotic episodes and potentially neuroinflammation.
- Neuroinflammation is theorized as a possible shared pathological mechanism in both chronic BP and early SZ.
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