36 research outputs found

    Dynamique cérébrale et réserve cognitive en situation d’attention sélective dans le vieillissement normal et les troubles de la cognition : approche neurofonctionnelle

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    Réalisée en cotutelle avec l'Unité de Formation à la Recherche Lettres Arts et Sciences Humaines - Université Nice-Sophia Antipolis.La survenue de modifications cérébrales issues du vieillissement normal ou provoquées par la maladie d’Alzheimer entraîne un certain bouleversement de l’attention visuelle sélective, soit la capacité à centrer volontairement les mécanismes de perception sur un stimulus particulier en négligeant les stimuli non pertinents. A ces modifications viennent s’ajouter des phénomènes de réorganisations cérébrales qui peuvent s’illustrer sur l’axe inter-hémisphérique par une réduction de la latéralisation cérébrale dans le vieillissement normal et sur l’axe intra-hémisphérique par un accroissement de l’engagement des régions frontales et préfrontales dans le vieillissement normal et la maladie d’Alzheimer. Toutefois, les mécanismes sur lesquels reposent ces phénomènes de réorganisations cérébrales dans le vieillissement normal et la maladie d’Alzheimer dans le contexte de l’attention visuelle restent peu compris. Ce travail de thèse s’intéresse à la nature de la réorganisation cérébrale dans le vieillissement normal (inter-hémisphérique vs. intra-hémisphérique) en condition d’attention visuelle sélective et s’inscrit dans le modèle de la réserve cognitive afin de préciser la nature des mécanismes sous-jacents de la réorganisation cérébrale (réserve neurale vs. compensation neurale). Concernant la maladie d’Alzheimer, ce travail met l’emphase sur la dynamique inter-hémisphérique et son principal substrat anatomique, le corps calleux, afin d’étudier l’efficience des mécanismes inter-hémisphériques. Dans l’ensemble de cette thèse, le substrat (fonctionnel et anatomique) de la réorganisation cérébrale est étudié en manipulant la complexité, ce qui permet d’identifier le mode d’adaptation face à l’accroissement de la demande cognitive soit, les mécanismes qui permettent de faire face au vieillissement normal et aux troubles de la cognition mais aussi d’étudier l’efficience de ces mécanismes. Le premier chapitre présente l’attention sélective, ses modifications neuro-fonctionnelles et les divers phénomènes de réorganisations cérébrales connus au cours du vieillissement normal et dans la maladie d’Alzheimer. Le cadre théorique dans lequel s’inscrit cette thèse, celui de la réserve cognitive, et la problématique du travail de recherche sont également décrits en fin de chapitre. La recherche effectuée est ensuite rapportée sous forme de 5 chapitres distincts. Enfin, les concepts théoriques évoqués par la revue de la littérature et les résultats des expérimentations font l’objet d’une discussion générale. Le deuxième chapitre de cette thèse (Article 1), visant à effectuer une revue de la littérature concernant les aspects inter-hémisphériques, permet de préciser, pour la première fois dans le domaine, le rôle du couplage inter-hémisphérique des ressources cérébrales dans la réorganisation au cours du vieillissement normal, mais aussi de considérer l’effet du découplage dans la maladie d’Alzheimer. Le troisième chapitre (Article 2) explore les mécanismes de réorganisation cérébrale dans le vieillissement normal face à l’accroissement de la charge attentionnelle au niveau perceptif de l’attention sélective (i.e., appariement perceptuel, A-A). Les résultats montrent un patron de réorganisation intra-hémisphérique chez les âgés, sous-tendu en situation de faible charge attentionnelle (i.e., 3 lettres) par la compensation neurale mais qui se voit associée à l’implication concomitante de la réserve neurale en situation de charge attentionnelle élevée (i.e., 5 lettres). Ce travail montre, par conséquent, une certaine flexibilité dans le déploiement de ces mécanismes qui apparaît modulé par la demande cognitive de la tâche. Le quatrième chapitre (Article 3) examine ces mêmes mécanismes de réorganisation dans le vieillissement normal, dans le même contexte attentionnel en ayant recours à un niveau de charge attentionnelle faible (i.e., 3 lettres) et à un niveau de charge attentionnelle élevé (i.e., 5 lettres), mais à un niveau plus complexe de l’attention sélective du fait qu’il implique une opération d’appariement basée sur le nom de la lettre (i.e., appariement nominatif, a-A). Les résultats montrent une amplification du renversement postéro-antérieur avec l’âge sur l’axe intra-hémisphérique face à l’accroissement de la charge attentionnelle (i.e., 5 lettres), suggérant ainsi que ce renversement est exclusivement lié à l’âge et qu’il repose principalement sur le mécanisme de compensation neurale. Le cinquième chapitre (Article 4) présente deux études dans lesquelles la présentation d’une tâche d’appariement de lettres en champ visuel divisé et l’IRM morphologique du corps calleux ont été couplées. L’objectif de cette étude était d’examiner la relation entre les variations de volume du corps calleux et la dynamique inter-hémisphérique chez des participants âgés atteints de la Maladie d’Alzheimer, de troubles cognitifs légers ou qui connaissent un vieillissement normal. La première étude se situait au niveau perceptuel et concernait 3 groupes de participants (Maladie d’Alzheimer vs trouble cognitif léger vs vieillissement normal). La deuxième étude concernait les participants atteints de trouble cognitif léger et des participants âgés contrôles sains et comportait deux tâches avec deux conditions de complexité chacune, une tâche dans laquelle la complexité varie selon le type de jugement - appariement perceptuel (e.g., A-A) vs. nominatif (e.g., a-A) - et une dans laquelle la complexité varie selon la charge attentionnelle (i.e., 3 lettres vs. 5 lettres). Les mesures IRM correspondent au volume total du corps calleux et à cinq volumes régionaux : C1-Rostrum, Genou et partie antérieure du tronc, C2-partie médiane, C3-partie caudale, C4-Isthme et C5-Splenium. Ces deux études montrent que le volume du corps calleux semble affecter la mise en jeu de l’effet facilitateur du traitement inter-hémisphérique selon l’état cognitif des participants et la nature de la demande cognitive mise en jeu. Cet impact modulateur semble partiellement déterminé dans la maladie d’Alzheimer par les portions plus antérieures du corps calleux (C2) et, via l’ensemble du corps calleux dans le vieillissement normal (C2, C3, C4). En revanche cette modulation semble déficitaire chez les participants atteints de trouble cognitif léger et reliée à une atrophie du corps calleux chez les participants atteints de trouble cognitif léger. Enfin, le chapitre 6 constitue la discussion générale de la thèse. L’ensemble des résultats est résumé et discuté en rapport aux différents modèles de la réorganisation cérébrale, de la réserve cognitive et de la dynamique hémisphérique.Normal aging and disrupt selective visual attention – the ability to focus perceptual mechanisms on target stimuli by neglecting irrelevant stimuli. These modifications are accompanied by brain reorganization on both interhemispheric (hemispheric asymmetry reduction) and intrahemispheric (posterior-anterior shift) dimensions. However, the mechanisms underlying this brain reorganization in the context of visual attention in normal aging and Alzheimer’s disease remain largely unknown. The goal of this dissertation is to better understand the nature of brain reorganization for visual selective attention, as well as the functional neural changes and the anatomical modification in normal aging and in cognitive impairment in nthe ederly. In normal aging, this research focuses on the nature of the brain reorganization (interhemispheric vs. intrahemispheric) in the context of visual selective attention and based on the cognitive reserve model to differentiate the underlying mechanisms (neural reserve vs. neural compensation). It also focuses on Alzheimer’s disease in the context of interhemispheric dynamics and its main anatomical substrate, the corpus callosum. Throughout this dissertation, the substrate (functional and anatomical) of brain reorganization is examined by manipulating the cognitive demand associated with the tasks to better understand the mechanisms applied to cope with normal aging and cognitive impairment. The first chapter introduces the concepts of selective attention, neurofunctional changes in normal aging and cognitive impairment, and the cognitive reserve model before introducing the present research topic. The second chapter (Article 1) reviews the contribution of hemispheric coupling to the preservation of cognitive abilities with age and its uncoupling in Alzheimer’s disease. In this review, the variable contribution of the adaptive callosal mechanism is discussed with reference to successful aging and Alzheimer’s disease. The third (Article 2) and fourth chapters (Article 3) report studies conducted with functional magnetic resonance imaging (fMRI). The purpose of these studies was to investigate to what extent and how the neural reserve and neural compensation mechanisms contribute to coping with normal aging in two contexts of visual selective attention: simple perceptual processing and more complex naming processing. In both studies, the complexity of processes was also manipulated by varying the attentional load related to the number of stimuli to be processed (low: 3 letters vs. high: 5 letters). The results for the perceptual matching study, reported in the third chapter, support the neural compensation hypothesis of cognitive reserve, as the activations regions underlying task performance differed in the younger and older groups. The older group recruited bilateral frontal superior gyri more than the younger one, as in the PASA (posterior-anterior shift in aging) phenomenon, from the lowest attentional load level. In addition, the elderly were found to use compensation and neural reserve concurrently to cope with increasing attentional load for perceptual processing. The results for the naming matching study, reported in the fourth chapter, indicate a load-dependant PASA, supporting the hypothesis that an enhancement of compensatory mechanism is required for the most complex processing. The fifth chapter (Article 4) presents studies investigating the interhemispheric dynamic, using variants of the letter matching paradigm, where cognitive demand is parametrically varied, along with 3D callosal total and regional volume measured, in individuals with Alzheimer disease and amnestic-mild cognitive impairment as well as age-matched healthy individuals. The results show that the relationship between the corpus callosum volume and the across-field advantage emerges for the lowest cognitive demand level in participants with Alzheimer disease but exclusively at high cognitive demand levels in normal aging; this suggests the existence of an interhemispheric compensation mechanism in Alzheimer disease based on the integrity of the corpus callosum and similar processes to those that allow the normal aging brain to cope with cognitive demand. These mechanisms are deficient in amnestic-mild cognitive impairment individuals in the high attentional load condition, due to callosal atrophy. In chapter six the nature of mechanisms to cope with aging and cognitive impairment is discussed, addressing the two main dimensions of brain reorganization: intrahemispheric and interhemispheric. In normal aging, cerebral reorganization of visual selective attention implies an intrahemispheric PASA phenomenon based on neural compensation. To cope with increased cognitive demand, neural reserve can also be recruited in basic perceptual processing, while the recruitment of compensation mechanisms increases in more complex processing of visual selective attention. Our study suggests that compensation and reserve are flexible, adaptive and deployed according to the cognitive demand and the type of processing required. In cognitive impairment, our study suggests the existence of an interhemispheric compensation mechanism in Alzheimer’s disease based on integrity of the corpus callosum and similar processes to those that allow the normal aging brain to cope with cognitive demand. This study provides evidence that interhemispheric interactions, supported by the corpus callosum, constitute a flexible mechanism that can improve the brain’s ability to handle processing demands and thus may compensate for the neural decline in Alzheimer’s disease in low cognitive demand situations

    Functional MRI evidence for the decline of word retrieval and generation during normal aging

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    International audienceThis fMRI study aimed to explore the effect of normal aging on word retrieval and generation. The question addressed is whether lexical production decline is determined by a direct mechanism, which concerns the language operations or is rather indirectly induced by a decline of executive functions. Indeed, the main hypothesis was that normal aging does not induce loss of lexical knowledge, but there is only a general slowdown in retrieval mechanisms involved in lexical processing , due to possible decline of the executive functions. We used three tasks (verbal fluency, object naming , and semantic categorization). Two groups of participants were tested (Young, Y and Aged, A), without cognitive and psychiatric impairment and showing similar levels of vocabulary. Neuropsychological testing revealed that older participants had lower executive function scores, longer processing speeds, and tended to have lower verbal fluency scores. Additionally, older participants showed higher scores for verbal automa-tisms and overlearned information. In terms of behav-ioral data, older participants performed as accurate as younger adults, but they were significantly slower for the semantic categorization and were less fluent for verbal fluency task. Functional MRI analyses suggested that older adults did not simply activate fewer brain regions involved in word production, but they actually showed an atypical pattern of activation. Significant correlations between the BOLD (Blood Oxygen Level Dependent) signal of aging-related (A > Y) regions and cognitive scores suggested that this atypical pattern of the activation may reveal several compensatory mechanisms (a) to overcome the slowdown in retrieval, due to the decline of executive functions and processing speed and (b) to inhibit verbal automatic processes. The BOLD signal measured in some other aging-dependent regions did not correlate with the behavioral and neuro-psychological scores, and the overactivation of these uncorrelated regions would simply reveal dedifferentia-tion that occurs with aging. Altogether, our results suggest that normal aging is associated with a more difficult access to lexico-semantic operations and representations by a slowdown in executive functions, without any conceptual loss

    Chapitre 2. Croissance cérébrale et neurodéveloppement à l’adolescence

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    Durant les deux dernières décennies, le nombre d’études ayant utilisé la neuroimagerie pour comprendre la croissance du cerveau s’est considérablement accru. C’est principalement à l’aide de l’imagerie par résonance magnétique (IRM) qui permet de visualiser en trois dimensions le cerveau vivant qu’ont été acquises les principales connaissances sur la croissance cérébrale. L’objectif de ce chapitre est de décrire les changements qui surviennent dans le cerveau durant l’adolescence, période de ..

    Age-Related Shift in Neuro-Activation during a Word-Matching Task

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    Growing evidence from the neuroscience of aging suggests that executive function plays a pivotal role in maintaining semantic processing performance. However, the presumed age-related activation changes that sustain executive semantic processing remain poorly understood. The aim of this study was to explore the executive aspects of semantic processing during a word-matching task with regard to age-related neuro-functional reorganization, as well as to identify factors that influence executive control profiles. Twenty younger and 20 older participants underwent fMRI scanning. The experimental task was based on word-matching, wherein visual feedback was used to instruct participants to either maintain or switch a semantic-matching rule. Response time and correct responses were assessed for each group. A battery of cognitive tests was administrated to all participants and the older group was divided into two subgroups based on their cognitive control profiles. Even though the percentage of correct responses was equivalent in the task performance between both groups and within the older groups, neuro-functional activation differed in frontoparietal regions with regards to age and cognitive control profiles. A correlation between behavioral measures (correct responses and response times) and brain signal changes was found in the left inferior parietal region in older participants. Results indicate that the shift in age-related activation from frontal to parietal regions can be viewed as another form of neuro-functional reorganization. The greater reliance on inferior parietal regions in the older compared to the younger group suggests that the executive control system is still efficient and sustains semantic processing in the healthy aging brain. Additionally, cognitive control profiles underlie executive ability differences in healthy aging appear to be associated with specific neuro-functional reorganization throughout frontal and parietal regions. These findings demonstrate that changes in neural support for executive semantic processing during a word-matching task are not only influenced by age, but also by cognitive control profile

    The cognitive and neural expression of semantic memory impairment in mild cognitive impairment and early Alzheimer's disease.

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    International audienceSemantic deficits in Alzheimer's disease have been widely documented, but little is known about the integrity of semantic memory in the prodromal stage of the illness. The aims of the present study were to: (i) investigate naming abilities and semantic memory in amnestic mild cognitive impairment (aMCI), early Alzheimer's disease (AD) compared to healthy older subjects; (ii) investigate the association between naming and semantic knowledge in aMCI and AD; (iii) examine if the semantic impairment was present in different modalities; and (iv) study the relationship between semantic performance and grey matter volume using voxel-based morphometry. Results indicate that both naming and semantic knowledge of objects and famous people were impaired in aMCI and early AD groups, when compared to healthy age- and education-matched controls. Item-by-item analyses showed that anomia in aMCI and early AD was significantly associated with underlying semantic knowledge of famous people but not with semantic knowledge of objects. Moreover, semantic knowledge of the same concepts was impaired in both the visual and the verbal modalities. Finally, voxel-based morphometry analyses revealed that semantic impairment in aMCI and AD was associated with cortical atrophy in the anterior temporal lobe (ATL) region as well as in the inferior prefrontal cortex (IPC), some of the key regions of the semantic cognition network. These findings suggest that the semantic impairment in aMCI may result from a breakdown of semantic knowledge of famous people and objects, combined with difficulties in the selection, manipulation and retrieval of this knowledge

    Adult norms for the decision-making MindPulse Digital Test

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    International audienceWe present adult normalized data for MindPulse (MP), a new tool evaluating attentional and executive functioning (AEF) in decision-making. We recruited 722 neurotypical participants (18-80 years), with 149 retested. The MP test includes three tasks: Simple Reaction Time (SRT), Go/No-go, and complex Go/No-go, involving perceptual components, motor responses, and measurements of reaction time (RT) and correctness. We compare responses, evaluating 14 cognitive indices (including new composite indices to describe AEF: Executive Speed and Reaction to Difficulty). We adjust for age/sex effects, introduce a difficulty scale, and consider standard deviations, aberrant times, and Spearman Correlation for speed-accuracy balance. Wilcoxon unpaired rank test is used to assess sex effects, and linear regression is employed to assess the age linear dependency model on the normalized database. The study demonstrated age and sex effects on RTs, in all three subtests, and the ability to correct it for individual results. The test showed excellent validity (Cronbach Alpha for the three subtasks is 92, 87, 95%) and high internal consistency (p < 0.001 for each subtask significantly faster than the more complex subtask) of the MP across the wide age range. Results showed correlation within the three RT parts of the test (p < .001 for each) and the independence of SRT, RD, and ES indices. The Retest effect was lower than intersubject variance, showing consistency over time. This study highlights the MP test's strong validity on a homogeneous, large adult sample. It emphasizes assessing AEF and Reaction to Difficulty dynamically with high sensitivity
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