To critically assess the value of material-specific memory deficits in lateralizing temporal lobe dysfunction preoperatively, we compared the neuropsychological data of 50 consecutive patients with unilateral mesial temporal lobe epilepsy with hippocampal sclerosis (MTLE-HS; right: 31, left: 19) with those of 50 age- and education-matched healthy control subjects. On case-control comparison, both the subcohorts with left and right MTLE-HS performed poorly on intelligence tests, in addition to individual memory tests. However, comparison of the verbal and visual memory functions between subcohorts with right and left MTLE-HS revealed that learning trials and delayed word list recall were the only tests that hypothesized left temporal lobe dysfunction. We conclude that material-specific memory deficits are largely test driven, but there is a lateralizing role for task-specific deficits in left MTLE-HS. Although neuropsychological data help to define baseline neuropsychological impairment, caution should be exercised in interpreting the lateralizing value of material-specific memory deficits prior to surgery.
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http://dx.doi.org/10.1016/j.yebeh.2013.06.011 | DOI Listing |
Nat Commun
September 2024
Department of Neuropsychology, Institute of Cognitive Neuroscience, Faculty of Psychology, Ruhr University Bochum, 44801, Bochum, Germany.
Visual working memory depends on both material-specific brain areas in the ventral visual stream (VVS) that support the maintenance of stimulus representations and on regions in the prefrontal cortex (PFC) that control these representations. How executive control prioritizes working memory contents and whether this affects their representational formats remains an open question, however. Here, we analyzed intracranial EEG (iEEG) recordings in epilepsy patients with electrodes in VVS and PFC who performed a multi-item working memory task involving a retro-cue.
View Article and Find Full Text PDFAppl Neuropsychol Adult
May 2024
Institute of Cognitive and Translational Neuroscience (INCyT), Fundación INECO, Universidad Favaloro, CONICET, Buenos Aires, Argentina.
Unlabelled: The Aggie Figures Learning Test (AFLT) is a visual memory assessment tool, which was constructed as an analog to the Rey Auditory Verbal Learning Test (RAVLT). Since the test holds close resemblance to the RAVLT, it is possible to make meaningful comparisons between these two tests. These comparisons are notably relevant in the assessment of material-specific memory impairments in epilepsy.
View Article and Find Full Text PDFBrain Res
April 2024
Department of Rehabilitation Psychology, Daegu University, 201 Daegudae-ro, Gyeongsan-si, Gyeongsangbuk-do, 38453, Republic of Korea. Electronic address:
This study examined the extent to which neural activity during memory encoding demonstrates material-commonness or material-specificity. A meta-analysis of functional magnetic resonance imaging studies was conducted to compare the brain regions associated with subsequent memory effects for word and scene stimuli. The main results were as follows.
View Article and Find Full Text PDFEpilepsia Open
February 2024
Department of Psychology, Bielefeld University, Bielefeld, Germany.
Objective: Neuroimaging studies reveal frontal lobe (FL) contributions to memory encoding. Accordingly, memory impairments are documented in frontal lobe epilepsy (FLE). Still, little is known about the structural or functional correlates of such impairments.
View Article and Find Full Text PDFEpilepsy Behav
October 2023
National Institute of Neurological Disorders and Stroke, United States. Electronic address:
Objective: The relationship of preoperative memory deficits in patients with mesial temporal lobe epilepsy (mTLE) and hippocampal sclerosis (HS) to the distribution of neuronal loss is uncertain. Building on the material specificity theory, we tested the hypothesis that visual memory deficits are associated with posterior hippocampal atrophy, whereas verbal memory deficits are associated with anterior hippocampal atrophy.
Methods: We studied 22 adults with mTLE and HS, calculating hippocampal head, body, and tail volumes, correcting for estimated total intracranial volume, using automated segmentation.
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