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Richard H C Lazeron

Publications and source records attributed to Richard H C Lazeron.

5 recordsLinked to original sources

Neurophysiological correlates of increased verbal working memory in high-dissociative participants: a functional MRI study.

BACKGROUND: Dissociation, defined as a disruption in usually integrated mental functions, is found not only in DSM-IV dissociative disorders, but also in post-traumatic stress disorder and eating disorders. Dissociative phenomena are also common in the general population, and may reflect a constitutionally determined cognitive style rather than a pathological trait acquired through experiencing adverse life events. In pathological dissociation, evidence has been presented for episodic memory dysfunction. In contrast, in high-dissociative subjects increased performance has been found for episodic memory and dual task performance. These findings have been linked to changes in working memory capacity. METHOD: In the present study, the authors sought to extend these findings by using functional magnetic resonance imaging during performance of two parametric working memory tasks. We tested 21 healthy low- and high-dissociative participants. RESULTS: High-dissociative participants performed slightly better during both tasks. Imaging data showed that both groups activated similar networks for both tasks, i.e. (bilateral) dorsolateral (DL) and ventrolateral prefrontal cortex (PFC), parietal cortex, and supplementary motor area. Group x task interactions were found in the high-dissociative group in L DLPFC and L parietal cortex; in the low-dissociative group in R fusiform gyrus. The differences in the high-dissociative group were independent from performance differences, implying that high-dissociative subjects generally recruit this network to a greater extent. CONCLUSIONS: These results confirm earlier findings using a verbal WM task in high-dissociative participants, and are compatible with the conceptualization of non-pathological dissociation as an information-processing style, characterized by distinct attentional and mnemonic abilities.

Adult↗

An fMRI study of planning-related brain activity in patients with moderately advanced multiple sclerosis.

INTRODUCTION: Cognitive impairment occurs in a substantial number of multiple sclerosis (MS) patients and often includes frontal lobe dysfunction. We used functional magnetic resonance imaging (fMRI) to study planning, an executive function, in moderately impaired MS patients. METHODS: An fMRI version of the Tower of London (ToL) test was used to study patterns of brain activation in 23 MS patients and 18 healthy controls. The median score on the Expanded Disability Status Scale (EDSS) for the MS patients was 4. fMRI data were analysed using whole brain random effects analysis as well as region of interest (ROI)-based methods to assess group effects. Within the MS group, associations with behavioural data and measures of disease severity (lesion load from structural MRI) were examined. RESULTS: Test performance in MS patients was significantly worse than in controls. Group analysis for the MS patients and the controls showed for both groups globally the same areas of activation, located in the frontal and parietal lobes bilaterally and the cerebellum. Although visual inspection suggested a larger extent of activation in the MS group, no statistically significant differences between groups were found. In the ROI analysis, statistically significant larger extent of activation was only found in the cerebellum. No association between disease severity and brain activity could be determined in the MS group. CONCLUSION: In MS patients with moderate disability and structural damage, the pattern and extent of brain activation during planning were maintained despite poorer performance. In contrast to other studies showing increased activity, the failure to do so in our group may reflect exhaustion of adaptive mechanisms.

Adult↗

A paced visual serial addition test for fMRI.

BACKGROUND AND PURPOSE: The Paced Auditory Serial Attention Task (PASAT) is an attention and information processing task used in patients with diffuse brain disorders, like cerebral trauma and multiple sclerosis (MS). Based on the PASAT we used a adapted version of the test to assess several cognitive functions with fMRI. In this study we investigated the activation pattern on a group and individual level and upon parametric stimulation. METHODS: Nine young, healthy, right-handed subjects (mean age 24 years) were studied. The test contrasts an adding-and-memory stage with a control stage in a block design, at two different speeds. Group average maps (random effects analysis, p=0.05) were created to identify the brain areas subserving this task. For each area found active in the group map, the percentage of individuals showing activation in that same anatomical area was calculated. RESULTS: Group activation was localized in the superior and inferior parietal lobe bilaterally, the superior frontal gyrus bilaterally, the left medial frontal gyrus, the left inferior frontal gyrus and adjacent part of the insula, the anterior part of the cingulate gyrus and some cerebellar areas. For the main activated areas, 78-100% of the individual subjects showed activation in that same area. Contrasting the low speed with the high speed condition yielded activation with a considerable individual variation. CONCLUSION: The group mean activated areas were located mainly in the frontal and parietal lobes and those areas were also activated in the majority of the subjects, indicating limited inter-individual variation, rendering this test suitable for clinical applications in a variety of neurological disorders.

Adult↗

Frontostriatal system in planning complexity: a parametric functional magnetic resonance version of Tower of London task.

In the present study, we sought to investigate which brain structures are recruited in planning tasks of increasing complexity. For this purpose, a parametric self-paced pseudo-randomized event-related functional MRI version of the Tower of London task was designed. We tested 22 healthy subjects, enabling assessment of imaging results at a second (random effects) level of analysis. Compared with baseline, planning activity was correlated with increased blood oxygenation level-dependent (BOLD) signal in the dorsolateral prefrontal cortex, striatum, premotor cortex, supplementary motor area, and visuospatial system (precuneus and inferior parietal cortex). Task load was associated with increased activity in these same regions. In addition, increasing task complexity was correlated with activity in the left anterior prefrontal cortex, a region supposed to be specifically involved in third-order higher cognitive functioning.

Adult↗

Medial temporal lobe activity during semantic classification using a flexible fMRI design.

In this study, we evaluated the use of a self-paced fMRI design, to allow a flexible speed of responding with only four alternating stimulus blocks to minimize the influence of task switching on a group of young subjects. This was done in view of our intention to use such a design on groups of elderly and demented subjects in the near future. In addition, the hypothesis was tested that the medial temporal lobe is involved in semantic memory similar to episodic memory using a semantic retrieval task. In line with previous imaging studies that compared a semantic (living/nonliving) to a perceptual (alphabetically ascending/descending) classification condition, activity was seen in lateral temporal and inferior frontal regions, indicating the applicability of our design. Additional activity was seen in the right, and, at a slightly lower threshold, also in the left MTL, providing support for the involvement of the MTL in retrieval from semantic memory.

Adolescent↗