Jul 2026· Advancement of science· 0 citations· 54 references
Medicine
TL;DR
An integrative multiscale circuit‐level analysis in 250 patients with TLE delineates a multiscale circuit architecture underlying memory dysfunction and provides a biologically grounded basis for understanding cognitive vulnerability and may inform individualized risk assessment in epilepsy surgery.
Abstract
ABSTRACT Memory impairment is a major source of disability in temporal lobe epilepsy (TLE), yet how focal pathology relates to distributed circuit alterations underlying memory dysfunction remains unclear. We performed an integrative multiscale circuit‐level analysis in 250 patients with TLE to characterize memory dysfunction across focal structural damage, white matter disconnection, and distributed metabolic network organization, and to estimate individualized deviations in relation to memory performance. Auditory memory impairment was associated with damage to medial temporal structures centered on the hippocampus and parahippocampal cortex, as well as disruption of a key hippocampo‐cingulate white matter pathway. Memory deficits were linked to abnormal metabolic organization within a limbic‐centered network, with greater metabolic deviation associated with more severe global memory impairment. Spatial correspondence analyses showed that memory‐related hypometabolism aligns with serotonergic, GABAergic, and synaptic receptor distributions, with additional associations observed for inhibitory interneuron and mitochondrial signatures. Together, these findings delineate a multiscale circuit architecture underlying memory dysfunction. This framework provides a biologically grounded basis for understanding cognitive vulnerability and may inform individualized risk assessment in epilepsy surgery.
The multimodal findings suggest that increased hippocampal connectivity in the epileptogenic hemisphere may reflect pathological hypersynchronization that disrupts efficient memory network coordination in TLE and highlight hippocampal connectivity as a promising candidate biomarker for characterizing individual memory...
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Objective. Temporal lobe epilepsy (TLE) is associated with disrupted functional integrity in the amygdala-hippocampus complex. Cortico-cortical evoked potentials (CCEPs) can characterize this disruption and have been proposed as biomarkers of the epileptogenic zone (EZ), but their study is typically limited by the spat...
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Differential associations of age and AD pathology with mesoscale MTL-connectivity patterns show differential associations of age and AD pathology with mesoscale MTL-connectivity patterns, which may support memory function in the short term while contributing to subsequent memory decline.
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