Automated volumetry of the mesiotemporal structures in antibody-associated limbic encephalitis
Jan Wagner1, Juri-Alexander Witt2, Christoph Helmstaedter2
1Department of Epileptology, University of Bonn, Bonn, Germany Department of NeuroCognition/Imaging, Life & Brain Center, Bonn, Germany.
Objective:
Limbic encephalitis (LE) is an autoimmune mediated disease leading to temporal lobe epilepsy, mnestic and psychiatric symptoms. In recent years, several LE subforms defined by serum antibody findings have been described. MRI usually shows volume changes of the amygdala and hippocampus. However, studies quantifying longitudinal volume changes in the acute disease stage are lacking.
Methods:
The aim of this retrospective observational study was to evaluate and quantify these volume changes by applying a fully automated volumetric approach to serial MRIs of 28 patients with antibody-associated LE. The results were compared with those of 28 age-matched and gender-matched healthy controls and analysed separately for the different antibody profiles and correlated with clinical parameters. Antibody profile analyses were exploratory due to the relatively small sample sizes.
Results:
We found distinct volumetric and clinical courses depending on the associated antibody. While LE associated with voltage-gated potassium channel-complex antibodies (VGKC-LE) showed highly significant larger volumes of both the amygdala and the hippocampus within the first 12 months after disease onset, LE associated with glutamic acid decarboxylase antibodies (GAD-LE) only displayed greater amygdala volumes at this disease stage. Both subgroups showed a reduction of the amygdala and hippocampus volumes during follow-up with higher volume changes in VGKC-LE.
Conclusions:
These differences in the volumetric evolution corresponded to distinct clinical courses in terms of a more severe initial symptomatology regarding seizure, mnestic and psychiatric disturbances in VGKC-LE, which improved rapidly, corresponding to the evolution of the volumetric changes. In contrast to this, patients with GAD-LE were less severely affected at disease onset, showing a more unmodulated and chronic disease course during follow-up.
Insights
Limbic encephalitis (LE) shows distinct brain volume changes based on antibody type. Voltage-gated potassium channel-complex antibody-associated LE has larger initial amygdala and hippocampus volumes, unlike GAD-antibody LE.
Area of Science:
- Neurology
- Immunology
- Radiology
Background:
- Limbic encephalitis (LE) is an autoimmune disorder causing temporal lobe epilepsy and cognitive/psychiatric issues.
- MRI typically reveals amygdala and hippocampus volume changes in LE.
- Longitudinal volumetric changes in acute LE are not well-documented.
Purpose of the Study:
- To quantify longitudinal MRI volume changes in the acute stage of antibody-associated LE.
- To compare volumetric changes between LE subtypes and healthy controls.
- To correlate volumetric findings with clinical symptoms and antibody profiles.
Main Methods:
- Retrospective observational study of 28 LE patients with serial MRIs.
- Fully automated volumetric analysis of amygdala and hippocampus.
- Comparison with 28 age- and gender-matched healthy controls.
- Exploratory analysis of antibody profiles and clinical parameters.
Main Results:
- Voltage-gated potassium channel-complex antibody-associated LE (VGKC-LE) showed significantly larger amygdala and hippocampus volumes within 12 months of onset.
- Glutamic acid decarboxylase antibody-associated LE (GAD-LE) showed larger amygdala volumes only.
- Both LE subgroups exhibited amygdala and hippocampus volume reduction during follow-up, with greater changes in VGKC-LE.
Conclusions:
- Volumetric evolution in LE differs by antibody type, correlating with distinct clinical courses.
- VGKC-LE presents with severe initial symptoms that improve rapidly, mirroring volumetric changes.
- GAD-LE patients experience less severe onset and a more chronic, unmodulated disease course.
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