JOAO RICARDO SATO

(Fonte: Lattes)
Índice h a partir de 2011
20
Projetos de Pesquisa
Unidades Organizacionais
LIM/44 - Laboratório de Ressonância Magnética em Neurorradiologia, Hospital das Clínicas, Faculdade de Medicina

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Agora exibindo 1 - 7 de 7
  • article 10 Citação(ões) na Scopus
    Commentary: Functional connectome fingerprint: identifying individuals using patterns of brain connectivity
    (2017) BIAZOLI JR., Claudinei E.; SALUM, Giovanni A.; PAN, Pedro M.; ZUGMAN, Andre; AMARO JR., Edson; ROHDE, Luis A.; MIGUEL, Euripedes C.; JACKOWSKI, Andrea P.; BRESSAN, Rodrigo A.; SATO, Joao R.
  • conferenceObject
    Treatment Response Prediction in Pediatric Patients With OCD Using Structural Neuroimaging Correlates: Simple Linear Regression Versus Support Vector Regression
    (2017) VATTIMO, Edoardo; BARROS, Vivian; BATISTUZZO, Marcelo; REQUENA, Guaraci; SATO, Joao; FATORI, Daniel; SHAVITT, Roseli; MIGUEL, Euripedes; HOEXTER, Marcelo
  • article 7 Citação(ões) na Scopus
    Differences in Default Mode Network Connectivity in Meditators and Non-meditators During an Attention Task
    (2017) KOZASA, Elisa H.; SATO, Joao R.; RUSSELL, Tamara A.; BARREIROS, Maria A. M.; LACERDA, Shirley S.; RADVANY, Joao; MELLO, Luiz E. A. M.; AMARO JR., Edson
    Activity in the default mode network (DMN) is reduced during non-self-referential goal-directed tasks in healthy individuals. In this study, we investigated differences in DMN functional connectivity between regular meditators and non-meditators during an attention paradigm. Non-meditators and regular meditators, matched by age, years of education, and gender were instructed to name the color of single words visually presented in a Stroop Word-Color Task (SWCT) adapted for functional magnetic resonance imaging (fMRI). The task was performed when the participants were not formally meditating. Logistic analysis based on imaging data indicated that the connectivity between the PCC (precuneus/posterior cingulate cortex) and the right and left parietal lobules helps differentiating regular meditators from non-meditators. Granger causality results showed that the activity in the PCC contains information to predict the activity in the right lateral parietal cortex and that the accuracy in this prediction is higher in regular meditators when compared to non-meditators. This suggests a stronger link between these two regions in regular meditators. In contrast to regular meditators, the PCC is more influenced by the left parietal region (related to the process of reading-which is the interference in the SWCT), and this region is more influenced by the PCC in non-meditators. These functional connectivity differences in the DMN between groups possibly reflect a higher degree of interference and probably more distraction during the SWCT in non-meditators compared with meditators.
  • article 49 Citação(ões) na Scopus
    Multimodal imaging of mild traumatic brain injury and persistent postconcussion syndrome
    (2015) DEAN, Philip J. A.; SATO, Joao R.; VIEIRA, Gilson; MCNAMARA, Adam; STERR, Annette
    Background: Persistent postconcussion syndrome (PCS) occurs in around 5-10% of individuals after mild traumatic brain injury (mTBI), but research into the underlying biology of these ongoing symptoms is limited and inconsistent. One reason for this could be the heterogeneity inherent to mTBI, with individualized injury mechanisms and psychological factors. A multimodal imaging study may be able to characterize the injury better. Aim: To look at the relationship between functional (fMRI), structural (diffusion tensor imaging), and metabolic (magnetic resonance spectroscopy) data in the same participants in the long term (>1year) after injury. It was hypothesized that only those mTBI participants with persistent PCS would show functional changes, and that these changes would be related to reduced structural integrity and altered metabolite concentrations. Methods: Functional changes associated with persistent PCS after mTBI (>1year postinjury) were investigated in participants with and without PCS (both n=8) and non-head injured participants (n=9) during performance of working memory and attention/processing speed tasks. Correlation analyses were performed to look at the relationship between the functional data and structural and metabolic alterations in the same participants. Results: There were no behavioral differences between the groups, but participants with greater PCS symptoms exhibited greater activation in attention-related areas (anterior cingulate), along with reduced activation in temporal, default mode network, and working memory areas (left prefrontal) as cognitive load was increased from the easiest to the most difficult task. Functional changes in these areas correlated with reduced structural integrity in corpus callosum and anterior white matter, and reduced creatine concentration in right dorsolateral prefrontal cortex. Conclusion: These data suggest that the top-down attentional regulation and deactivation of task-irrelevant areas may be compensating for the reduction in working memory capacity and variation in white matter transmission caused by the structural and metabolic changes after injury. This may in turn be contributing to secondary PCS symptoms such as fatigue and headache. Further research is required using multimodal data to investigate the mechanisms of injury after mTBI, but also to aid individualized diagnosis and prognosis.
  • article 1 Citação(ões) na Scopus
    Polygenic risk score for attention-deficit/hyperactivity disorder and brain functional networks segregation in a community-based sample
    (2023) SATO, Joao Ricardo; BIAZOLI, Claudinei Eduardo; BUENO, Ana Paula Arantes; CAYE, Arthur; PAN, Pedro Mario; SANTORO, Marcos; HONORATO-MAUER, Jessica; SALUM, Giovanni Abrahao; HOEXTER, Marcelo Queiroz; BRESSAN, Rodrigo Affonseca; JACKOWSKI, Andrea Parolin; MIGUEL, Euripedes Constantino; BELANGERO, Sintia; ROHDE, Luis Augusto
    Neuroimaging studies suggest that brain development mechanisms might explain at least some behavioural and cognitive attention-deficit/hyperactivity disorder (ADHD) symptoms. However, the putative mechanisms by which genetic susceptibility factors influence clinical features via alterations of brain development remain largely unknown. Here, we set out to integrate genomics and connectomics tools by investigating the associations between an ADHD polygenic risk score (ADHD-PRS) and functional segregation of large-scale brain networks. With this aim, ADHD symptoms score, genetic and rs-fMRI (resting-state functional magnetic resonance image) data obtained in a longitudinal community-based cohort of 227 children and adolescents were analysed. A follow-up was conducted approximately 3 years after the baseline, with rs-fMRI scanning and ADHD likelihood assessment in both stages. We hypothesised a negative correlation between probable ADHD and the segregation of networks involved in executive functions, and a positive correlation with the default-mode network (DMN). Our findings suggest that ADHD-PRS is correlated with ADHD at baseline, but not at follow-up. Despite not surviving for multiple comparison correction, we found significant correlations between ADHD-PRS and segregation of cingulo-opercular networks and DMN at baseline. ADHD-PRS was negatively correlated with the segregation level of cingulo-opercular networks but positively correlated with the DMN segregation. These directions of associations corroborate the proposed counter-balanced role of attentional networks and DMN in attentional processes. However, the association between ADHD-PRS and brain networks functional segregation was not found at follow-up. Our results provide evidence for specific influences of genetic factors on development of attentional networks and DMN. We found significant correlations between polygenic risk score for ADHD (ADHD-PRS) and segregation of cingulo-opercular networks and default-mode network (DMN) at baseline. ADHD-PRS was negatively correlated with the segregation level of cingulo-opercular networks but positively correlated with the DMN segregation.
  • conferenceObject
    Imaging Transcriptomics in Obsessive-Compulsive Disorder
    (2022) SARAIVA, Leonardo; SATO, Joao; SHAVITT, Roseli; MIGUEL, Euripedes; CAPPI, Carolina
  • conferenceObject
    Imaging Transcriptomics in Obsessive-Compulsive Disorder
    (2022) SARAIVA, Leonardo; SATO, Joao; SHAVITT, Roseli; MIGUEL, Euripedes; CAPPI, Carolina