SOTO ICAZA, PATRICIA
Preferred name
SOTO ICAZA, PATRICIA
Main Affiliation
Email
patriciasoto@udd.cl
ORCID
0000-0002-3092-7195
Scopus Author ID
56951221700
21 results
Now showing 1 - 10 of 21
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Item type:Product, Dataset - Autism shapes social integration and reciprocity in elementary classrooms(2025); ;MELANIE OYARZÚN ;TAMARA ROCIO YAIKIN CALDERON; - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - Another in need enhances prosociality and modulates frontal theta oscillations in young adults(OSF, 2023); ; LAVÍN TAPIA, CLAUDIO SEBASTIÁN - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - Coupling between neural oscillations and white matter integrity reveals cognitive computational profiles following COVID-19(OpenEuro, 2026); ; ;MATÍAS IRIARTE CARTER ;VÍCTOR MÁRQUEZMARIA PAZ DE LOS ANGELES MARTINEZ MOLINA - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Applied human neuroscience: Fostering and designing inclusive environments with the 3E‐Cognition perspective(2024) ;Francisco J. Parada ;Aitana Grasso‐Cladera ;Alejandra Rossi; Maritza Arenas‐Pérez<jats:title>Abstract</jats:title><jats:p>The conventional medical paradigm often focuses on deficits and impairments, failing to capture the rich tapestry of experiences and abilities inherent in neurodiversity conditions. In this article, we introduce the 3E‐Cognition perspective, offering a paradigm shift by emphasizing the dynamic interplay between the brain, body, and environment in shaping cognitive processes. The perspective fosters a more inclusive and supportive understanding of neurodiversity, with potential applications across various domains such as education, workplace, and healthcare. We begin by introducing the 3E‐Cognition principles: <jats:italic>embodied</jats:italic>, <jats:italic>environmentally scaffolded</jats:italic>, and <jats:italic>enactive</jats:italic>. Then, we explore how the 3E‐Cognition perspective can be applied to create inclusive environments and experiences for neurodiverse individuals. We provide examples in the realms of education, workplace, and healthcare. In all of these domains, spaces, methodologies, epistemologies, and roles that cater to diverse needs and strengths can be designed using the 3E principles. Finally, we discuss the challenges and benefits of implementing the 3E‐Cognition perspective. We focus on the need for technological advancements and research in complex real‐world scenarios; we suggest mobile brain/body imaging is a possible solution. We furthermore highlight the importance of recognizing and valuing the diverse manners of experiencing and interacting with the world, the promotion of diverse well‐being, and the facilitation of innovation and creativity. Thus, we conclude that the 3E‐Cognition perspective offers a groundbreaking approach to understanding and supporting neurodiversity: by embracing the inherent interconnectedness of the brain, body, and environment, we can create a more inclusive and supportive world.</jats:p>19Scopus© Citations 4 - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - Patients recovering from COVID-19 who presented with anosmia during their acute episode have behavioral, functional, and structural brain alterations(OpenNeuro, 2024) ;LEONIE MARGARITA KAUSEL KAMP; ; ; 4 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Another in need enhances prosociality and modulates frontal theta oscillations in young adults(2023) ;Claudio Lavín; ;Vladimir LópezDecision-making is a process that can be strongly affected by social factors. Evidence has shown how people deviate from traditional rational-choice predictions under different levels of social interactions. The emergence of prosocial decision-making, defined as any action that is addressed to benefit another individual even at the expense of personal benefits, has been reported as an example of such social influence. Furthermore, brain evidence has shown the involvement of structures such as the prefrontal cortex, anterior insula, and midcingulate cortex during decision settings in which a decision maker interacts with others under physical pain or distress or while being observed by others.</jats:p></jats:sec><jats:sec><jats:title>Methods</jats:title><jats:p>Using a slightly modified version of the dictator game and EEG recordings, we tested the hypothesis that the inclusion of another person into the decision setting increases prosocial decisions in young adults and that this increase is higher when the other person is associated with others in need. At the brain level, we hypothesized that the increase in prosocial decisions correlates with frontal theta activity.</jats:p></jats:sec><jats:sec><jats:title>Results and Discussion</jats:title><jats:p>The results showed that including another person in the decision, setting increased prosocial behavior only when this presence was associated with someone in need. This effect was associated with an increase in frontocentral theta-oscillatory activity. These results suggest that the presence of someone in need enhances empathy concerns and norm compliance, raising the participants’ prosocial decision-making.Scopus© Citations 8 1 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Autism shapes social integration and reciprocity in elementary classrooms(Springer Science and Business Media LLC, 2025-11-18); ; ;Tamara Yaikin ;Mirla Arcos-Polanco7 - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - The parietal cortex has a causal role in ambiguity computations in humans(2024); ; ; ; LARRAIN VALENZUELA, MARÍA JOSEFINA3 - Some of the metrics are blocked by yourconsent settings
Item type:Publication, Oscillatory activity underlying cognitive performance in children and adolescents with autism: a systematic review(2024); ;Patricio Soto-Fernández ;Leonie Kausel; <jats:p>Autism spectrum disorder (ASD) is a neurodevelopmental condition that exhibits a widely heterogeneous range of social and cognitive symptoms. This feature has challenged a broad comprehension of this neurodevelopmental disorder and therapeutic efforts to address its difficulties. Current therapeutic strategies have focused primarily on treating behavioral symptoms rather than on brain psychophysiology. During the past years, the emergence of non-invasive brain stimulation techniques (NIBS) has opened alternatives to the design of potential combined treatments focused on the neurophysiopathology of neuropsychiatric disorders like ASD. Such interventions require identifying the key brain mechanisms underlying the symptomatology and cognitive features. Evidence has shown alterations in oscillatory features of the neural ensembles associated with cognitive functions in ASD. In this line, we elaborated a systematic revision of the evidence of alterations in brain oscillations that underlie key cognitive processes that have been shown to be affected in ASD during childhood and adolescence, namely, social cognition, attention, working memory, inhibitory control, and cognitive flexibility. This knowledge could contribute to developing therapies based on NIBS to improve these processes in populations with ASD.</jats:p>9Scopus© Citations 11 - Some of the metrics are blocked by yourconsent settings
Item type:Product, Dataset - Differences in cortical processing of facial emotions in broader autism phenotypeAutism Spectrum Disorder (ASD) is a heterogeneous condition that affects face perception. Evidence shows that there are differences in face perception associated with the processing of low spatial frequency (LSF) and high spatial frequency (HSF) of visual stimuli between non-symptomatic relatives of individuals with autism (broader autism phenotype, BAP) and typically developing individuals. However, the neural mechanisms involved in these differences are not fully understood. Here we tested whether face-sensitive event related potentials could serve as neuronal markers of differential spatial frequency processing, and whether these potentials could differentiate non-symptomatic parents of children with autism (pASD) from parents of typically developing children (pTD). To this end, we performed electroencephalographic recordings of both groups of parents while they had to recognize emotions of face pictures composed of the same or different emotions (happiness or anger) presented in different spatial frequencies. We found no significant differences in the accuracy between groups but lower amplitude modulation in the Late Positive Potential activity in pASD. Source analysis showed a difference in the right posterior part of the superior temporal region that correlated with ASD symptomatology of the child. These results reveal differences in brain processing of recognition of facial emotion in BAP that could be a precursor of ASD.2
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