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Wurdack, K.

Publications and source records attributed to Wurdack, K..

2 recordsLinked to original sources

Spatial navigation impairment beyond episodic memory in autoimmune encephalitis

NMDAR and LGI1 encephalitis are the two most common forms of autoimmune encephalitis and are associated with persistent cognitive sequelae, particularly episodic memory impairment. Patients also report lasting difficulties with spatial orientation and navigation, yet these symptoms remain poorly characterized. Both disorders affect neural systems supporting spatial navigation, including prominent hippocampal pathology alongside cingulate, temporo-parietal, thalamic and cerebellar alterations identified in advanced neuroimaging studies. Here, we therefore investigated the frequency and clinical relevance of spatial navigation impairment in post-acute NMDAR and LGI1 encephalitis, its relationship with episodic memory dysfunction, and its structural correlates. We included 80 post-acute patients from the autoimmune encephalitis outpatient clinic at Charite - Universitatsmedizin Berlin: 50 with NMDAR encephalitis (mean age 35.0 years, range 19-71; 90% female; median 6.9 years from onset) and 30 with LGI1 encephalitis (mean age 63.6 years, range 33-84; 67% male; median 2.7 years from onset). Spatial navigation was assessed using a passive map-assisted task (VIENNA Young) and an active wayfinding task (Sea Hero Quest), and its relationship with verbal episodic memory was examined using the Rey Auditory Verbal Learning Test. Structural MRI analyses assessed cortical thickness, subcortical volumes and diffusion measures in preselected navigation- and memory-related regions. Patients with NMDAR and LGI1 encephalitis performed worse than matched controls on map-assisted navigation, and navigation performance showed strong convergence across the two navigation paradigms. Norm-referenced navigation impairment affected 57% of patients with NMDAR encephalitis and 70% with LGI1 encephalitis. In NMDAR encephalitis, selective navigation impairment was more common than selective memory impairment (41% versus 14%; {chi}2 = 6.26, p = .012), supporting partial dissociation. In LGI1 encephalitis, navigation and memory impairments were similarly frequent and strongly overlapping, with 53% of patients impaired in both domains. Older age was a shared risk factor for navigation impairment. Structurally, NMDAR encephalitis showed partly distinct navigation- and memory-related alteration patterns, with navigation-specific parietal-paracentral and cerebellar abnormalities and memory-specific temporal-hippocampal-thalamic involvement. LGI1 encephalitis showed more widespread, predominantly memory-related alterations without a robust navigation-specific structural signature. Our findings identify spatial navigation as a frequently affected but under-assessed cognitive domain in post-acute NMDAR and LGI1 encephalitis. They provide clinical evidence that navigation and episodic memory are partially dissociable yet overlapping functions whose degree of separability varies with the extent and distribution of network pathology. Incorporating norm-referenced navigation assessment into longitudinal follow-up could improve the characterization of cognitive profiles and related support needs, while reducing the risk that impairments relevant to everyday functioning and long-term quality of life remain undetected.

neuroscience↗

Memory dysfunction and psychiatric outcomes in anti-NMDA receptor encephalitis are linked to altered structural brain complexity

IntroductionMost patients with anti-N-methyl-D-aspartate receptor encephalitis (NMDARE) experience long-term neuropsychiatric sequelae despite immunotherapy. However, how these residual symptoms relate to structural brain changes in the post-acute phase remains unclear. Recently, fractal dimensionality (FD) has emerged as a sensitive imaging marker of structural brain complexity in related conditions but has not been explored in autoimmune encephalitis. MethodsThis cross-sectional study combined clinical, cognitive, and neuroimaging analyses in 70 patients with post-acute NMDARE (median time from onset: 22 months), and 70 healthy controls matched for age (t=-0.57, p=0.57) and sex ({chi}2=0, p=1). High-resolution T1-weighted magnetic resonance imaging (MRI) data were analyzed with FreeSurfer and computational fractal analysis. Clinical outcomes were assessed with the modified Rankin Scale (mRS) and Clinical Assessment Scale in Autoimmune Encephalitis (CASE). Psychiatric manifestations underwent phenotypical analyses, and memory performance was assessed with standardized neuropsychological tests. ResultsPatients with NMDARE were severely affected at peak illness but showed substantial overall improvement in the post-acute stage (median mRS at peak=5, post-acute=1, z=-7.2, p<0.001; median CASE at peak=11, post-acute=1, z=-7.2, p<0.001). However, 67% of patients showed residual CASE symptoms, with memory dysfunction (61%) and psychiatric symptoms (36%) representing the most prevalent domains. Therein, psychiatric symptoms showed a phenotypical shift from a schizophrenia-like phenotype at peak illness to an affective phenotype in the post-acute stage. Neuroimaging uncovered a characteristic pattern of reduced structural brain complexity, including the hippocampus bilaterally and a fronto-cingulo-temporal cluster in cortical gray matter and cerebral white matter. Importantly, normative modeling revealed that patients with residual symptoms showed stronger alterations of brain complexity than those without (psychiatric: t=-2.65, p=0.010; memory: t=-3.98, p<0.001; both vs. no symptoms: t=-5.46, p<0.001). Similarly, patients with stronger alterations of brain complexity showed lower scores of visuospatial and verbal memory (all pFDR<0.015). DiscussionPost-acute NMDARE is characterized by systematic reductions in structural brain complexity, consistently involving previously implicated regions while identifying changes in the cingulate cortex as a new morphological correlate. These changes are linked to residual psychiatric symptoms and memory dysfunction, highlighting FD as a promising new imaging marker of long-term outcomes. Our findings suggest that current treatment strategies may be insufficient to fully address the residual symptom burden after the acute phase of NMDARE.

neuroscience↗