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Invasive Hemodynamic Characterization of the Portal-hypertensive Syndrome in Cirrhotic Rats
Published on: August 1, 2018
Hippocampal atrophy and functional connectivity disruption in cirrhotic patients with minimal hepatic encephalopathy
Weiwen Lin1, Xuhui Chen1, Yong-Qing Gao
1Department of Radiology, Fujian Medical University Union Hospital, Fuzhou, 350001, China.
Abstract:
The hippocampus is a crucial pathological node for minimal hepatic encephalopathy (MHE) and it is associated with various cognitive impairments. Investigations on alterations involving hippocampal morphology and functional connectivity (FC) in MHE are limited. This study aimed to simultaneously evaluate hippocampal volume and FC alterations and their association with cognitive decline in MHE. Twenty-two cirrhotic patients with MHE, 31 cirrhotic patients without MHE (NHE), and 43 healthy controls underwent high-resolution T1-weighted imaging, resting-state functional magnetic resonance imaging, and cognition assessment based on Psychometric Hepatic Encephalopathy Score (PHES). The structural images were preprocessed using a voxel-based morphometry method, during which hippocampal volume was measured. The hippocampal connectivity network was identified using seed-based correlation analysis. Hippocampal volume and FC strength were compared across the three groups and correlated against the PHES results of the cirrhotic patients. Compared to the controls, MHE patients exhibited a significantly lower bilateral hippocampal volume. A slight decrease in hippocampal volume was obtained from NHE to MHE, but it did not reach statistically significance. In addition, the average FC strength of the bilateral hippocampal connectivity network was significantly lower in the MHE patients. In particular, the MHE patients showed a decrease in FC involving the left hippocampus to bilateral posterior cingulate gyrus and left angular gyrus. The MHE patients also showed FC reduction between the right hippocampus and bilateral medial frontal cortex. A progressive reduction in hippocampal FC from NHE to MHE was also observed. The bilateral hippocampal FC strength (but not hippocampal volume) was positively correlated with the PHES results of the cirrhotic patients. Our assessment of MHE patients revealed decreased hippocampal volume, which suggests regional atrophy, and reduced hippocampal connectivity with regions that are primarily involved in the default-mode network, thereby suggesting a functional disconnection syndrome. These alterations reveal the mechanisms underlying cognitive deterioration with disease progression.
Insights
Minimal hepatic encephalopathy (MHE) is linked to reduced hippocampal volume and functional connectivity, impacting cognitive function. These brain changes worsen with disease progression, affecting memory and cognition.
Area of Science:
- Neuroscience
- Radiology
- Gastroenterology
Background:
- Minimal hepatic encephalopathy (MHE) is associated with cognitive impairments, with the hippocampus being a key affected brain region.
- Limited research exists on hippocampal morphology and functional connectivity (FC) alterations in MHE patients.
Purpose of the Study:
- To investigate hippocampal volume and FC changes in MHE patients.
- To correlate these brain alterations with cognitive decline using the Psychometric Hepatic Encephalopathy Score (PHES).
Main Methods:
- Utilized high-resolution T1-weighted imaging and resting-state fMRI in 22 MHE patients, 31 non-MHE cirrhotic patients (NHE), and 43 controls.
- Assessed cognition using PHES and analyzed hippocampal volume and FC using voxel-based morphometry and seed-based correlation analysis.
Main Results:
- MHE patients showed significantly lower bilateral hippocampal volume compared to controls.
- Hippocampal FC strength was significantly reduced in MHE patients, particularly involving connections to the posterior cingulate gyrus and angular gyrus.
- Hippocampal FC strength, not volume, positively correlated with PHES scores in cirrhotic patients.
Conclusions:
- MHE is characterized by hippocampal atrophy and reduced connectivity within the default-mode network, indicating a functional disconnection syndrome.
- These neuroimaging findings help elucidate the mechanisms of cognitive deterioration in MHE.
- The study highlights the progressive nature of these brain alterations in MHE.
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