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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
41

Behavioral and Neural Mechanisms of Social Heterogeneity in Attention Deficit/Hyperactivity Disorder

MacNamara, Kailey 30 June 2017 (has links)
Attention-deficit/hyperactivity disorder (ADHD) is one of the most common child-onset neurodevelopment disorders, affecting 5% of children in the United States (American Psychiatric Association, 2013). Treatment matching in ADHD is difficult and unsatisfactory; the same general treatment algorithm is recommended for all children. It is therefore important to consider the development of specialized treatment programs based on a variety of behavioral and neurological biomarkers. Unfortunately, due to its multi-faceted classification, the heterogeneity of this behavioral disorder is under-investigated (Costa Dias et al., 2015). Scientific research in this area is especially limited as the severity of ADHD goes undiagnosed, children tend to have difficulties remaining still in MRI scanners, and the hyperactivity-impulsivity that is associated with ADHD may cause further challenges when trying to remain motionless in the scanner. Furthermore, tasks such as Facial Emotion Perception Task (FEPT) and Theory of Mind (ToM) have not been used to analyze social and behavioral deficits in children with ADHD. More research needs to be allocated to helping uncover the neural substrates underlying the inattention and hyperactivity traits of this disorder. For this reason, we acquired functional magnetic resonance imaging (fMRI) data from five children with ADHD performing the FEPT and ToM tasks. The results showed the children have an easier and quick time correctly identifying happy emotional states, as compared to the fearful, angry, and neutral conditions. Results from the FEPT task also revealed that the participants were thinking and reasoning more (i.e., taking longer to deduce an ending) when identifying emotions than identifying animals. The ToM task showed that the default mode network (DMN) may not be fully suppressed when the children are choosing the correct cartoon ending, and therefore the children may be having lapses in attention. These findings may assist the current hypothesis that the default mode network has reduced network homogeneity in people with ADHD. Overall, the findings presented in this thesis provide a good diving board into discovering the reason(s) for the social cognition and emotion recognition impairments associated with ADHD, but further research is needed in order to one day pinpoint and ultimately correct the regions(s) of dysfunction.
42

Resting-state functional MRI in behavioral variant of frontotemporal dementia

Rytty, R. (Riikka) 12 April 2016 (has links)
Abstract Frontotemporal lobar degeneration (FTLD) is the second most common neurodegenerative disease leading to early-onset dementia with an estimated worldwide prevalence of 10 to 30 cases per 100000 individuals in the age group of 46 to 65 years. Behavioral variant frontotemporal dementia (bvFTD) is the most common FTLD subtype. It is characterized by a progressive deterioration of behavior and personality as well as executive dysfunction. In Finland, almost 50 % of familial FTLD cases are attributable to the C9ORF72 mutation. bvFTD is associated with a characteristic pattern of brain atrophy detectable in structural MRI. However, these changes are typically not visible in the early stages of the disease. Resting-state functional MRI (RS-fMRI) is being increasingly used to evaluate changes in functional connectivity within neuronal networks in the brain but only a few RS-fMRI investigations of bvFTD patients have been published with inconsistent results. The object of this thesis was to investigate functional connectivity changes detected in the salience (SLN) and default mode networks (DMN) in bvFTD. Another aim was to clarify the role of other cognitive resting-state networks in this disease. A cohort of 26 bvFTD patients was studied, with 8 of these patients carrying the C9ORF72 expansion. Connectivity changes were detected in multiple clinically relevant cognitive networks. Decreased functional connectivity was observed in the SLN, which is associated with guiding of behavior. Increased activity was present in the DMN and the dorsal attention network (DAN). In C9ORF72 associated bvFTD, there was an abnormal linkage detected between the DMN and the thalamus. Currently, fMRI is generally used as a research tool and in a group setting. Different study methods have been used in the literature and also in the studies of this thesis, the analysis procedures differed to some extent. The variety of analysis methods may explain the heterogeneity in fMRI findings in bvFTD patients. There is a need for standardization of the fMRI methodology, larger study groups and also in the future the methodology should be improved so that single patient analysis would provide results to allow a confident diagnosis of this disease. / Tiivistelmä Otsa-ohimolohkorappeuma (Frontotemporal lobar degeneration, FTLD) on toiseksi yleisin etenevä dementiaan johtava sairaus, joka ilmaantuu usein jo työikäisenä. Otsalohkodementia on otsa-ohimolohkorappeuman yleisin alamuoto, jonka oireisto painottuu persoonan ja käyttäytymisen muutoksiin sekä toiminnan ohjauksen ongelmiin. Suomessa C9ORF72-toistojaksomutaatio selittää lähes 50 % perinnöllisistä otsa-ohimolohkorappeumista. Aivojen rakenteellisella magneettikuvauksella (MK) voidaan havaita rakenteellisia muutoksia, jotka ilmaantuvat kuitenkin vasta taudin edettyä vaikeampaan vaiheeseen. Aivojen lepotilan toiminnallinen magneettikuvaus (TMK) mahdollistaa aivojen hermoverkkojen toiminnan eli konnektiviteetin kartoituksen. Aiemmin TMK:a on tutkittu esim. Alzheimerin taudissa. Otsalohkodementiassa TMK:sta on julkaistu ainoastaan yksittäisiä tutkimuksia ja tulokset ovat olleet osin ristiriitaisia. Väitöskirjatutkimuksen tarkoituksena on ollut selvittää valve-lepotilan hermoverkossa ja olennaisen tunnistavassa hermoverkossa tapahtuvia muutoksia otsalohkodementiaa sairastavilla potilailla. Toisena tavoitteena on ollut tutkia muissa kognitiivisissa hermoverkoissa tapahtuvia muutoksia. Otsalohkodementiaa sairastaville potilaille (n= 26) sekä ikä- ja sukupuolivakioiduille kontrolleille on tehty kliininen tutkimus ja rakenteellinen sekä toiminnallinen aivojen magneettikuvaus. Kahdeksalla potilaalla todettiin C9ORF72-toistojaksomutaatio. Useiden kognitiivisten hermoverkkojen toiminnassa havaittiin muutoksia, jotka korreloivat potilaiden kliinisiin oireisiin. Alentunutta konnektiviteettia todettiin olennaisen tunnistavassa hermoverkossa, joka osallistuu käyttäytymisen säätelyyn. Lisääntynyttä konnektiviteettia esiintyi valve-lepotilan hermoverkossa ja tarkkaavaisuus hermoverkossa. Potilailla, joilla on C9ORF72-mutaatio, havaittiin epänormaali yhteys valve-lepotilan hermoverkon ja talamuksen välillä. TMK:ta käytetään tällä hetkellä lähinnä tutkimustyökaluna. Analyysityökaluissa on ollut vaihtelevuutta eri julkaisuissa ja osin myös tämän väitöskirjan osatöissä. Julkaistut TMK-löydökset otsalohkodementiassa ovat osin ristiriitaisia ja se saattaa selittyä erilaisilla analyysimenetelmillä. Metodologiaa tulisi standardisoida ja lisäksi tarvitaan suurempia potilasryhmiä ja menetelmien kehittämistä, jotta TMK:n käyttö yksilötason kliinisessä diagnostiikassa olisi jatkossa mahdollista.
43

EFFECTS ON SEED-BASED RESTING STATE FMRI OF ONE SEASON OF EXPOSURE TO MIDDLE SCHOOL AND HIGH SCHOOL FOOTBALL SUBCONCUSSIVE HEAD ACCELERATIONS

Xiaoyu Ji (10725504) 30 April 2021 (has links)
Young football players are hypothesized to experience damage to the brain and brain function from repeated subconcussive head acceleration events (HAEs) during practices and games. Such damage may cause delayed cognitive and mental problems. Resting state fMRI (rs-fMRI) is an effective non-invasive method to detect alterations in brain functional connectivity. Seed-based rsfMRI analysis using the central node of the default mode network (DMN) as the seed is a common approach to measuring intrinsic changes of the DMN, accepted as a key network in brain function. Seed-based rs-fMRI analysis of the DMN was used to explore how age, HAE intensity, and HAE counts influence brain connectivity in youth athletes (ages 12-18). Middle school and high school football players and peer controls were studied using rs-fMRI before and after one season of competition. An identifiability matrix was generated from the seed-based connectivity matrix, allowing measurement of similarity between pre-season and post-season functional connectivity. The consistency of seed-based brain functional connectivity we observed across the season of play for players has no statistically significant difference from controls. The identifiability matrix exhibited no relation to the number and magnitude of any subset of HAEs experienced which rejected our hypothesis. Another finding is that high school football players exhibited the largest percentage increase in identification from middle school football players in the somatomotor network over other resting-state networks.
44

Effect of mindfulness meditation on the neural substrates of emotion processing and resting state in experienced and beginner meditators

Taylor, Véronique A. 07 1900 (has links)
La méditation par le ‘mindfulness’ favorise la stabilité émotionelle, mais les mécanismes neuroneux qui sous-tendent ces effets sont peu connus. Ce projet investiga l’effet du ‘mindfulness’ sur les réponses cérébrales et subjectives à des images négatives, positives et neutres chez des méditants expérimentés et des débutants au moyen de l’imagerie par résonance magnétique fonctionnelle (IRMf). Le ‘mindfulness’ atténua l’intensité émotionelle via différents mécanismes cérébraux pour chaque groupe. Comparés aux méditants, les débutants manifestèrent une déactivation de l’amygdale en réponse aux stimuli émotifs durant le ‘mindfulness’. Comparés aux débutants, les méditants exhibèrent une déactivation de régions du réseau du mode par défaut (RMD) pendant le ‘mindfulness’ pour tous stimuli (cortex médian préfrontal [CMP], cortex cingulaire postérieur [CCP]). Le RMD est constitué de régions fonctionnellement connectées, activées au repos et déactivées lors de tâches explicites. Cependant, nous ne connaissons pas les impacts de l’entraînement par la méditation sur la connectivité entre régions du RMD et si ces effets persistent au-delà d’un état méditatif. La connectivité fonctionnelle entre régions du RMD chez les méditants et débutants au repos fut investiguée au moyen de l’IRMf. Comparés aux débutants, les méditants montrèrent une connectivité affaiblie entre subdivisions du CMP, et une connectivité accrue entre le lobule pariétal inférieur et trois regions du RMD. Ces résultats reflètent que les bienfaits immédiats du ‘mindfulness’ sur la psychopathologie pourraient être dûs à une déactivation de régions limbiques impliquées dans la réactivité émotionelle. De plus, les bienfaits à long-terme de la méditation sur la stabilité émotionelle pourrait être dûs à une déactivation de régions corticales et cingulaires impliquées dans l’évaluation de la signification émotive et une connectivité altérée entre régions du RMD à l’état de repos. / Mindfulness meditation promotes emotional stability, yet little is known of the brain mechanisms through which this is achieved. The impact of mindfulness on the neural and subjective responses to negative, positive, and neutral pictures in experienced meditators and beginners was investigated using functional magnetic resonance imaging (fMRI). Mindfulness attenuated emotional intensity via distinct neural pathways for each group. For beginners, mindfulness induced a deactivation of the amygdala during emotional processing compared to meditators. For meditators (relative to beginners), mindfulness induced deactivations of areas involved in the evaluation of emotional significance and the default mode network (DMN) across all picture categories (medial prefrontal cortex [MPFC], posterior cingulate cortex). The DMN consists of functionally connected brain areas typically activated at rest and deactivated during goal-directed tasks. It remains unknown whether meditation training influences functional connectivity within DMN regions, and if so, whether these effects persist beyond a state of meditation per se. Functional connectivity within DMN regions at rest was examined using fMRI in beginners and meditators. Relative to beginners, meditators exhibited decreased connectivity between MPFC subdivisions, and increased connectivity between the right inferior parietal lobule and three other DMN regions. These findings may reflect that early beneficial effects of mindfulness on psychopathology are due to deactivations of limbic regions involved in emotional reactivity. On the other hand, long-term effects of meditation on emotional stability may occur through a down-regulation of prefrontal and cingulate regions involved in the evaluation of emotional significance, and altered functional connectivity within DMN regions at rest.
45

Efeitos do treinamento aeróbio na cognição e no metabolismo cerebral em repouso em sujeitos com comprometimento cognitivo leve / Effects of aerobic training on cognition and resting-state metabolism in subjects with mild cognitive impairment

Fabio Henrique de Gobbi Porto 03 August 2017 (has links)
Introdução: Apesar de ser uma intervenção potencialmente promissora para melhorar a cognição em sujeitos com comprometimento cognitivo leve (CCL), os efeitos do treinamento aeróbio (TA) no metabolismo regional de glicose (MRG) no cérebro ainda são pouco conhecidos. Objetivo: Avaliar os efeitos do TA na cognição e no MRG cerebral em sujeitos com CCL, usando tomografia por emissão de pósitrons com 18F - fluordesoxiglicose (PET-18FDG). Métodos: Sessenta e cinco sujeitos com CCL realizaram um programa de TA de intensidade moderada, duas vezes por semana, durante 24 semanas. Uma avaliação cognitiva com a escala Alzheimer\'s Disease Assessment Scale - Cognitive Subscale (ADAS-Cog) e outra do metabolismo cerebral em repouso com o PET-18FDG foram realizadas antes e depois da intervenção. A capacidade aeróbia foi comparada utilizando o consumo máximo de oxigênio (VO2 máx.) medido em mL/kg/min. Os dados de PET-18FDG foram analisados voxel por voxel com o programa SPM8 (limiar: p < 0,001 não corrigido, tamanho de agrupamento >= 50 voxels). Uma técnica de modelação de equações estruturais foi usada para criar um modelo para explorar as mudanças no MRG cerebral em repouso depois do programa de TA. Resultados: Comparações com testes t pareados revelaram melhora nos valores da escala ADAS-Cog (diferença média: -2,4 (3,5), p < 0,001) e no VO2 máx. (diferença média: 1,4 (2,3) mL/kg/min, p < 0,001). A análise metabólica do cérebro constatou uma redução bilateral do MRG em ambos os polos temporais anteriores, no giro frontal inferior esquerdo, no giro do cíngulo anterior esquerdo, no hipocampo direito, no giro frontal médio esquerdo e nos núcleos caudados bilaterais. Em contraste, houve um aumento do MRG no precuneus direito e no giro frontal inferior esquerdo. Um modelo de confirmação de fatores foi usado para criar variáveis latentes que refletem a rede de saliência (RS) e a rede de modo padrão (default mode network (DMN)) com base em regiões com mudanças no MRG encontradas depois do TA. Uma análise de caminhos foi utilizada para testar a hipótese de que o TA poderia induzir mudanças (diminuição) do MRG em regiões da RS. Essa redução pode refletir um aumento da eficiência da rede e, consequentemente, um melhor controle sobre outras redes. Em última instância, essa mudança induziria um aumento do MRG no precuneus, um importante nó da DMN. Os valores de adequação do modelo atingiram significância estatística, demonstrando que esse modelo explica a variância dos dados medidos. Conclusão: O TA melhorou a cognição e alterou o MRG em regiões da DMN e da rede de saliência em sujeitos com CCL / Background: Despite being a potentially promising intervention to improve cognition in subjects with mild cognitive impairment (MCI), the effects of aerobic training (AT) on regional brain glucose metabolism (rBGM) are not yet entirely understood. Objective: To evaluate the effects of AT on cognition and rBGM in subjects with MCI using 18FDG-PET. Methods: Sixty-five subjects with MCI performed a twice-a-week, moderate intensity, AT program for 24 weeks. Assessment with the ADAS-Cog (Alzheimer\'s Disease Assessment Scale - Cognitive Subscale) and evaluation of rBGM with 18FDG-PET were performed before and after the intervention. Aerobic capacity was compared using the relative maximal oxygen consumption (VO2 max) measured in mL/Kg/min. 18FDG-PET data were analyzed on a voxel-by-voxel basis with SPM8 (threshold: uncorrected p < 0.001, cluster size >= 50 voxels). Structural equation modeling was used to create a model to explore the changes of resting-state rBGM after the AT program. Results: Comparisons using paired t-tests revealed improvements in the ADAS-Cog (mean difference: -2.4 (3.5), p < 0.001) and VO2 max scores (mean difference: 1.4 (2.3) mL/kg/min, p < 0.001). Brain metabolic analysis revealed a bilateral reduction of rBGM in both anterior temporal poles, left inferior frontal gyrus, left anterior cingulate cortex, right hippocampus, left middle frontal gyrus and bilateral caudate nuclei. In contrast, there was an increase in rBGM in the right precuneus and left inferior frontal gyrus. Confirmatory factor analysis was used to create latent variables reflecting the salience network (SN) and default mode network (DMN) based on regions with rBGM changes found after the AT. A path model analysis was used to test the hypothesis that AT would induce rBGM changes (decrease) in regions of the SN. This decrement may reflect improved efficacy and consequently, better control over other networks. Ultimately, these changes would induce an increment in rBGM in the precuneus, an important node of the DMN. Values of model fit reached statistical significance, demonstrating that this model explain the variance of the measured data. Conclusion: AT improved cognition and changed rBGM measured with 18FDG-PET in nodes od the DMN and SN in subjects with MCI
46

Efeitos do treinamento aeróbio na cognição e no metabolismo cerebral em repouso em sujeitos com comprometimento cognitivo leve / Effects of aerobic training on cognition and resting-state metabolism in subjects with mild cognitive impairment

Porto, Fabio Henrique de Gobbi 03 August 2017 (has links)
Introdução: Apesar de ser uma intervenção potencialmente promissora para melhorar a cognição em sujeitos com comprometimento cognitivo leve (CCL), os efeitos do treinamento aeróbio (TA) no metabolismo regional de glicose (MRG) no cérebro ainda são pouco conhecidos. Objetivo: Avaliar os efeitos do TA na cognição e no MRG cerebral em sujeitos com CCL, usando tomografia por emissão de pósitrons com 18F - fluordesoxiglicose (PET-18FDG). Métodos: Sessenta e cinco sujeitos com CCL realizaram um programa de TA de intensidade moderada, duas vezes por semana, durante 24 semanas. Uma avaliação cognitiva com a escala Alzheimer\'s Disease Assessment Scale - Cognitive Subscale (ADAS-Cog) e outra do metabolismo cerebral em repouso com o PET-18FDG foram realizadas antes e depois da intervenção. A capacidade aeróbia foi comparada utilizando o consumo máximo de oxigênio (VO2 máx.) medido em mL/kg/min. Os dados de PET-18FDG foram analisados voxel por voxel com o programa SPM8 (limiar: p < 0,001 não corrigido, tamanho de agrupamento >= 50 voxels). Uma técnica de modelação de equações estruturais foi usada para criar um modelo para explorar as mudanças no MRG cerebral em repouso depois do programa de TA. Resultados: Comparações com testes t pareados revelaram melhora nos valores da escala ADAS-Cog (diferença média: -2,4 (3,5), p < 0,001) e no VO2 máx. (diferença média: 1,4 (2,3) mL/kg/min, p < 0,001). A análise metabólica do cérebro constatou uma redução bilateral do MRG em ambos os polos temporais anteriores, no giro frontal inferior esquerdo, no giro do cíngulo anterior esquerdo, no hipocampo direito, no giro frontal médio esquerdo e nos núcleos caudados bilaterais. Em contraste, houve um aumento do MRG no precuneus direito e no giro frontal inferior esquerdo. Um modelo de confirmação de fatores foi usado para criar variáveis latentes que refletem a rede de saliência (RS) e a rede de modo padrão (default mode network (DMN)) com base em regiões com mudanças no MRG encontradas depois do TA. Uma análise de caminhos foi utilizada para testar a hipótese de que o TA poderia induzir mudanças (diminuição) do MRG em regiões da RS. Essa redução pode refletir um aumento da eficiência da rede e, consequentemente, um melhor controle sobre outras redes. Em última instância, essa mudança induziria um aumento do MRG no precuneus, um importante nó da DMN. Os valores de adequação do modelo atingiram significância estatística, demonstrando que esse modelo explica a variância dos dados medidos. Conclusão: O TA melhorou a cognição e alterou o MRG em regiões da DMN e da rede de saliência em sujeitos com CCL / Background: Despite being a potentially promising intervention to improve cognition in subjects with mild cognitive impairment (MCI), the effects of aerobic training (AT) on regional brain glucose metabolism (rBGM) are not yet entirely understood. Objective: To evaluate the effects of AT on cognition and rBGM in subjects with MCI using 18FDG-PET. Methods: Sixty-five subjects with MCI performed a twice-a-week, moderate intensity, AT program for 24 weeks. Assessment with the ADAS-Cog (Alzheimer\'s Disease Assessment Scale - Cognitive Subscale) and evaluation of rBGM with 18FDG-PET were performed before and after the intervention. Aerobic capacity was compared using the relative maximal oxygen consumption (VO2 max) measured in mL/Kg/min. 18FDG-PET data were analyzed on a voxel-by-voxel basis with SPM8 (threshold: uncorrected p < 0.001, cluster size >= 50 voxels). Structural equation modeling was used to create a model to explore the changes of resting-state rBGM after the AT program. Results: Comparisons using paired t-tests revealed improvements in the ADAS-Cog (mean difference: -2.4 (3.5), p < 0.001) and VO2 max scores (mean difference: 1.4 (2.3) mL/kg/min, p < 0.001). Brain metabolic analysis revealed a bilateral reduction of rBGM in both anterior temporal poles, left inferior frontal gyrus, left anterior cingulate cortex, right hippocampus, left middle frontal gyrus and bilateral caudate nuclei. In contrast, there was an increase in rBGM in the right precuneus and left inferior frontal gyrus. Confirmatory factor analysis was used to create latent variables reflecting the salience network (SN) and default mode network (DMN) based on regions with rBGM changes found after the AT. A path model analysis was used to test the hypothesis that AT would induce rBGM changes (decrease) in regions of the SN. This decrement may reflect improved efficacy and consequently, better control over other networks. Ultimately, these changes would induce an increment in rBGM in the precuneus, an important node of the DMN. Values of model fit reached statistical significance, demonstrating that this model explain the variance of the measured data. Conclusion: AT improved cognition and changed rBGM measured with 18FDG-PET in nodes od the DMN and SN in subjects with MCI
47

Examining the relationship between BOLD fMRI and infraslow EEG signals in the resting human brain

Grooms, Joshua Koehler 21 September 2015 (has links)
Resting state functional magnetic resonance imaging (fMRI) is currently at the forefront of research on cognition and the brain’s large-scale organization. Patterns of hemodynamic activity that it records have been strongly linked to certain behaviors and cognitive pathologies. These signals are widely assumed to reflect local neuronal activity but our understanding of the exact relationship between them remains incomplete. Researchers often address this using multimodal approaches, pairing fMRI signals with known measures of neuronal activity such as electroencephalography (EEG). It has long been thought that infraslow (< 0.1 Hz) fMRI signals, which have become so important to the study of brain function, might have a direct electrophysiological counterpart. If true, EEG could be positioned as a low-cost alternative to fMRI when fMRI is impractical and therefore could also become much more influential in the study of functional brain networks. Previous works have produced indirect support for the fMRI-EEG relationship, but until recently the hypothesized link between them had not been tested in resting humans. The objective of this study was to investigate and characterize their relationship by simultaneously recording infraslow fMRI and EEG signals in resting human adults. We present evidence strongly supporting their link by demonstrating significant stationary and dynamic correlations between the two signal types. Moreover, functional brain networks appear to be a fundamental unit of this coupling. We conclude that infraslow electrophysiology is likely playing an important role in the dynamic configuration of the resting state brain networks that are well-known to fMRI research. Our results provide new insights into the neuronal underpinnings of hemodynamic activity and a foundational point on which the use of infraslow EEG in functional connectivity studies can be based.
48

Effect of mindfulness meditation on the neural substrates of emotion processing and resting state in experienced and beginner meditators

Taylor, Véronique A. 07 1900 (has links)
La méditation par le ‘mindfulness’ favorise la stabilité émotionelle, mais les mécanismes neuroneux qui sous-tendent ces effets sont peu connus. Ce projet investiga l’effet du ‘mindfulness’ sur les réponses cérébrales et subjectives à des images négatives, positives et neutres chez des méditants expérimentés et des débutants au moyen de l’imagerie par résonance magnétique fonctionnelle (IRMf). Le ‘mindfulness’ atténua l’intensité émotionelle via différents mécanismes cérébraux pour chaque groupe. Comparés aux méditants, les débutants manifestèrent une déactivation de l’amygdale en réponse aux stimuli émotifs durant le ‘mindfulness’. Comparés aux débutants, les méditants exhibèrent une déactivation de régions du réseau du mode par défaut (RMD) pendant le ‘mindfulness’ pour tous stimuli (cortex médian préfrontal [CMP], cortex cingulaire postérieur [CCP]). Le RMD est constitué de régions fonctionnellement connectées, activées au repos et déactivées lors de tâches explicites. Cependant, nous ne connaissons pas les impacts de l’entraînement par la méditation sur la connectivité entre régions du RMD et si ces effets persistent au-delà d’un état méditatif. La connectivité fonctionnelle entre régions du RMD chez les méditants et débutants au repos fut investiguée au moyen de l’IRMf. Comparés aux débutants, les méditants montrèrent une connectivité affaiblie entre subdivisions du CMP, et une connectivité accrue entre le lobule pariétal inférieur et trois regions du RMD. Ces résultats reflètent que les bienfaits immédiats du ‘mindfulness’ sur la psychopathologie pourraient être dûs à une déactivation de régions limbiques impliquées dans la réactivité émotionelle. De plus, les bienfaits à long-terme de la méditation sur la stabilité émotionelle pourrait être dûs à une déactivation de régions corticales et cingulaires impliquées dans l’évaluation de la signification émotive et une connectivité altérée entre régions du RMD à l’état de repos. / Mindfulness meditation promotes emotional stability, yet little is known of the brain mechanisms through which this is achieved. The impact of mindfulness on the neural and subjective responses to negative, positive, and neutral pictures in experienced meditators and beginners was investigated using functional magnetic resonance imaging (fMRI). Mindfulness attenuated emotional intensity via distinct neural pathways for each group. For beginners, mindfulness induced a deactivation of the amygdala during emotional processing compared to meditators. For meditators (relative to beginners), mindfulness induced deactivations of areas involved in the evaluation of emotional significance and the default mode network (DMN) across all picture categories (medial prefrontal cortex [MPFC], posterior cingulate cortex). The DMN consists of functionally connected brain areas typically activated at rest and deactivated during goal-directed tasks. It remains unknown whether meditation training influences functional connectivity within DMN regions, and if so, whether these effects persist beyond a state of meditation per se. Functional connectivity within DMN regions at rest was examined using fMRI in beginners and meditators. Relative to beginners, meditators exhibited decreased connectivity between MPFC subdivisions, and increased connectivity between the right inferior parietal lobule and three other DMN regions. These findings may reflect that early beneficial effects of mindfulness on psychopathology are due to deactivations of limbic regions involved in emotional reactivity. On the other hand, long-term effects of meditation on emotional stability may occur through a down-regulation of prefrontal and cingulate regions involved in the evaluation of emotional significance, and altered functional connectivity within DMN regions at rest.
49

Utilizing Our Wandering Minds in the Workplace: Advantages for Problem-Solving andCreativity?

Skope, Rachel L. 31 December 2018 (has links)
No description available.
50

Intervention orthophonique et neurobiologie du cerveau : apports de la neuroimagerie à la prise en charge de l’aphasie chronique

Marcotte, Karine 08 1900 (has links)
L’aphasie est un trouble acquis du langage entraînant des problèmes de communication pouvant toucher la compréhension et/ou l’expression. Lorsque l’aphasie fait suite à un accident vasculaire cérébral, une régression des déficits communicatifs s'observe initialement, mais elle peut demeurer sévère pour certains et est considérée chronique après un an. Par ailleurs, l’aphasie peut aussi être observée dans l’aphasie progressive primaire, une maladie dégénérative affectant uniquement le langage dans les premières années. Un nombre grandissant d’études s’intéressent à l’impact de la thérapie dans l’aphasie chronique et ont démontré des améliorations langagières après plusieurs années. L’hémisphère gauche semble avoir un rôle crucial et est associé à de meilleures améliorations langagières, mais la compréhension des mécanismes de plasticité cérébrale est encore embryonnaire. Or, l’efficacité de la thérapie dans l’aphasie progressive primaire est peu étudiée. À l’aide de la résonance magnétique fonctionnelle, le but des présentes études consiste à examiner les mécanismes de plasticité cérébrale induits par la thérapie Semantic Feature Analysis auprès de dix personnes souffrant d’aphasie chronique et d’une personne souffrant d’aphasie progressive primaire. Les résultats suggèrent que le cerveau peut se réorganiser plusieurs années après une lésion cérébrale ainsi que dans une maladie dégénérative. Au niveau individuel, une meilleure amélioration langagière est associée au recrutement de l’hémisphère gauche ainsi qu’une concentration des activations. Les analyses de groupe mettent en évidence le recrutement du lobule pariétal inférieur gauche, alors que l’activation du gyrus précentral gauche prédit l’amélioration suite à la thérapie. D’autre part, les analyses de connectivité fonctionnelle ont permis d’identifier pour la première fois le réseau par défaut dans l’aphasie. Suite à la thérapie, l’intégration de ce réseau bien connu est comparable à celle des contrôles et les analyses de corrélation suggèrent que l’intégration du réseau par défaut a une valeur prédictive d’amélioration. Donc, les résultats de ces études appuient l’idée que l’hémisphère gauche a un rôle prépondérant dans la récupération de l’aphasie et fournissent des données probantes sur la neuroplasticité induite par une thérapie spécifique du langage dans l’aphasie. De plus, l’identification d’aires clés et de réseaux guideront de futures recherches afin d’éventuellement maximiser la récupération de l’aphasie et permettre de mieux prédire le pronostic. / Aphasia is an acquired language impairment leading to communication disorders which may affect comprehension and/or expression. When aphasia follows a stroke, major recovery of the communicative deficits is initially observed after the lesion, but for some the aphasia may remain severe and is considered to be chronic after a year. Furthermore aphasia can be observed in primary progressive aphasia, a degenerative disease only affecting language in the early years. The impact of therapy in chronic aphasia is the subject of growing literature in recent years and has shown language improvements after several years of therapy. The left hemisphere seems to have a crucial role and is associated with greater language improvements but our understanding of brain plasticity mechanisms is still lacking. In primary progressive aphasia, few studies have examined therapy effectiveness. Using functional magnetic resonance imaging, the aim of these studies was to examine therapy-induced brain plasticity mechanisms following Semantic Feature Analysis in ten participants suffering from chronic aphasia and one participant with primary progressive aphasia. The results suggest that brain reorganization is possible several years after injury and in degenerative disease. At the individual level, greater language improvement is associated with the recruitment of the left hemisphere and less activated areas. Group analysis shows the recruitment of left inferior parietal lobule, whereas the activation of left precentral gyrus predicts improved response to therapy. Functional connectivity analysis allowed for the first time the identification of the default-mode network in aphasia. Following therapy, the integration of this well-known network is comparable to that of the controls and the correlation analysis suggests that the default-mode network integration has a predictive value for improvement. Therefore, the results of these studies support the idea that the left hemisphere has a major role in the recovery of aphasia and provide evidence on therapy-induced neuroplasticity in aphasia. In addition, the identification of key areas and networks will guide future research in order to possibly maximize the recovery of aphasia and to better predict the prognosis.

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