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1.
Hum Brain Mapp ; 45(11): e26777, 2024 Aug 01.
Artículo en Inglés | MEDLINE | ID: mdl-39046114

RESUMEN

The development and refinement of functional brain circuits crucial to human cognition is a continuous process that spans from childhood to adulthood. Research increasingly focuses on mapping these evolving configurations, with the aim to identify markers for functional impairments and atypical development. Among human cognitive systems, nonsymbolic magnitude representations serve as a foundational building block for future success in mathematical learning and achievement for individuals. Using task-based frontoparietal (FPN) and salience network (SN) features during nonsymbolic magnitude processing alongside machine learning algorithms, we developed a framework to construct brain age prediction models for participants aged 7-30. Our study revealed differential developmental profiles in the synchronization within and between FPN and SN networks. Specifically, we observed a linear increase in FPN connectivity, concomitant with a decline in SN connectivity across the age span. A nonlinear U-shaped trajectory in the connectivity between the FPN and SN was discerned, revealing reduced FPN-SN synchronization among adolescents compared to both pediatric and adult cohorts. Leveraging the Gradient Boosting machine learning algorithm and nested fivefold stratified cross-validation with independent training datasets, we demonstrated that functional connectivity measures of the FPN and SN nodes predict chronological age, with a correlation coefficient of .727 and a mean absolute error of 2.944 between actual and predicted ages. Notably, connectivity within the FPN emerged as the most contributing feature for age prediction. Critically, a more matured brain age estimate is associated with better arithmetic performance. Our findings shed light on the intricate developmental changes occurring in the neural networks supporting magnitude representations. We emphasize brain age estimation as a potent tool for understanding cognitive development and its relationship to mathematical abilities across the critical developmental period of youth. PRACTITIONER POINTS: This study investigated the prolonged changes in the brain's architecture across childhood, adolescence, and adulthood, with a focus on task-state frontoparietal and salience networks. Distinct developmental pathways were identified: frontoparietal synchronization strengthens consistently throughout development, while salience network connectivity diminishes with age. Furthermore, adolescents show a unique dip in connectivity between these networks. Leveraging advanced machine learning methods, we accurately predicted individuals' ages based on these brain circuits, with a more mature estimated brain age correlating with better math skills.


Asunto(s)
Lóbulo Frontal , Aprendizaje Automático , Imagen por Resonancia Magnética , Red Nerviosa , Lóbulo Parietal , Humanos , Adolescente , Niño , Adulto Joven , Masculino , Femenino , Adulto , Lóbulo Parietal/fisiología , Lóbulo Parietal/diagnóstico por imagen , Lóbulo Parietal/crecimiento & desarrollo , Lóbulo Frontal/fisiología , Lóbulo Frontal/crecimiento & desarrollo , Lóbulo Frontal/diagnóstico por imagen , Red Nerviosa/diagnóstico por imagen , Red Nerviosa/fisiología , Red Nerviosa/crecimiento & desarrollo , Conceptos Matemáticos , Conectoma
2.
Nat Commun ; 15(1): 5369, 2024 Jul 10.
Artículo en Inglés | MEDLINE | ID: mdl-38987235

RESUMEN

Visual object memory is a fundamental element of various cognitive abilities, and the underlying neural mechanisms have been extensively examined especially in the anterior temporal cortex of primates. However, both macroscopic large-scale functional network in which this region is embedded and microscopic neuron-level dynamics of top-down regulation it receives for object memory remains elusive. Here, we identified the orbitofrontal node as a critical partner of the anterior temporal node for object memory by combining whole-brain functional imaging during rest and a short-term object memory task in male macaques. Focal chemogenetic silencing of the identified orbitofrontal node downregulated both the local orbitofrontal and remote anterior temporal nodes during the task, in association with deteriorated mnemonic, but not perceptual, performance. Furthermore, imaging-guided neuronal recordings in the same monkeys during the same task causally revealed that orbitofrontal top-down modulation enhanced stimulus-selective mnemonic signal in individual anterior temporal neurons while leaving bottom-up perceptual signal unchanged. Furthermore, similar activity difference was also observed between correct and mnemonic error trials before silencing, suggesting its behavioral relevance. These multifaceted but convergent results provide a multiscale causal understanding of dynamic top-down regulation of the anterior temporal cortex along the ventral fronto-temporal network underpinning short-term object memory in primates.


Asunto(s)
Neuronas , Lóbulo Temporal , Animales , Masculino , Lóbulo Temporal/fisiología , Neuronas/fisiología , Macaca mulatta , Memoria/fisiología , Imagen por Resonancia Magnética , Lóbulo Frontal/fisiología , Memoria a Corto Plazo/fisiología , Mapeo Encefálico , Corteza Prefrontal/fisiología
3.
Curr Biol ; 34(14): 3249-3257.e3, 2024 Jul 22.
Artículo en Inglés | MEDLINE | ID: mdl-38964318

RESUMEN

Basolateral amygdala (BLA) is a key hub for affect in the brain,1,2,3 and dysfunction within this area contributes to a host of psychiatric disorders.4,5 BLA is extensively and reciprocally interconnected with frontal cortex,6,7,8,9 and some aspects of its function are evolutionarily conserved across rodents, anthropoid primates, and humans.10 Neuron density in BLA is substantially lower in primates compared to murine rodents,11 and frontal cortex (FC) is dramatically expanded in primates, particularly the more anterior granular and dysgranular areas.12,13,14 Yet, how these anatomical differences influence the projection patterns of single BLA neurons to frontal cortex across rodents and primates is unknown. Using a barcoded connectomic approach, we assessed the single BLA neuron connections to frontal cortex in mice and macaques. We found that BLA neurons are more likely to project to multiple distinct parts of FC in mice than in macaques. Further, while single BLA neuron projections to nucleus accumbens were similarly organized in mice and macaques, BLA-FC connections differed substantially. Notably, BLA connections to subcallosal anterior cingulate cortex (scACC) in macaques were least likely to branch to other medial frontal cortex areas compared to perigenual ACC (pgACC). This pattern of connections was reversed in the mouse homologues of these areas, infralimbic and prelimbic cortex (IL and PL), mirroring functional differences between rodents and non-human primates. Taken together, these results indicate that BLA connections to FC are not linearly scaled from mice to macaques and instead the organization of single-neuron BLA connections is distinct between these species.


Asunto(s)
Complejo Nuclear Basolateral , Conectoma , Lóbulo Frontal , Neuronas , Animales , Ratones , Complejo Nuclear Basolateral/fisiología , Neuronas/fisiología , Masculino , Lóbulo Frontal/fisiología , Ratones Endogámicos C57BL , Macaca mulatta/fisiología , Vías Nerviosas/fisiología , Femenino
4.
J Neuroeng Rehabil ; 21(1): 101, 2024 Jun 13.
Artículo en Inglés | MEDLINE | ID: mdl-38872209

RESUMEN

BACKGROUND: In post-stroke rehabilitation, functional connectivity (FC), motor-related cortical potential (MRCP), and gait activities are common measures related to recovery outcomes. However, the interrelationship between FC, MRCP, gait activities, and bipedal distinguishability have yet to be investigated. METHODS: Ten participants were equipped with EEG devices and inertial measurement units (IMUs) while performing lower limb motor preparation (MP) and motor execution (ME) tasks. MRCP, FCs, and bipedal distinguishability were extracted from the EEG signals, while the change in knee degree during the ME phase was calculated from the gait data. FCs were analyzed with pairwise Pearson's correlation, and the brain-wide FC was fed into support vector machine (SVM) for bipedal classification. RESULTS: Parietal-frontocentral connectivity (PFCC) dysconnection and MRCP desynchronization were related to the MP and ME phases, respectively. Hemiplegic limb movement exhibited higher PFCC strength than nonhemiplegic limb movement. Bipedal classification had a short-lived peak of 75.1% in the pre-movement phase. These results contribute to a better understanding of the neurophysiological functions during motor tasks, with respect to localized MRCP and nonlocalized FC activities. The difference in PFCCs between both limbs could be a marker to understand the motor function of the brain of post-stroke patients. CONCLUSIONS: In this study, we discovered that PFCCs are temporally dependent on lower limb gait movement and MRCP. The PFCCs are also related to the lower limb motor performance of post-stroke patients. The detection of motor intentions allows the development of bipedal brain-controlled exoskeletons for lower limb active rehabilitation.


Asunto(s)
Electroencefalografía , Marcha , Lóbulo Parietal , Rehabilitación de Accidente Cerebrovascular , Accidente Cerebrovascular , Humanos , Masculino , Accidente Cerebrovascular/fisiopatología , Accidente Cerebrovascular/complicaciones , Femenino , Persona de Mediana Edad , Marcha/fisiología , Lóbulo Parietal/fisiopatología , Lóbulo Parietal/fisiología , Potenciales Evocados Motores/fisiología , Lóbulo Frontal/fisiopatología , Lóbulo Frontal/fisiología , Anciano , Adulto , Corteza Motora/fisiopatología , Corteza Motora/fisiología , Máquina de Vectores de Soporte
5.
Elife ; 122024 Jun 28.
Artículo en Inglés | MEDLINE | ID: mdl-38941238

RESUMEN

How human prefrontal and insular regions interact while maximizing rewards and minimizing punishments is unknown. Capitalizing on human intracranial recordings, we demonstrate that the functional specificity toward reward or punishment learning is better disentangled by interactions compared to local representations. Prefrontal and insular cortices display non-selective neural populations to rewards and punishments. Non-selective responses, however, give rise to context-specific interareal interactions. We identify a reward subsystem with redundant interactions between the orbitofrontal and ventromedial prefrontal cortices, with a driving role of the latter. In addition, we find a punishment subsystem with redundant interactions between the insular and dorsolateral cortices, with a driving role of the insula. Finally, switching between reward and punishment learning is mediated by synergistic interactions between the two subsystems. These results provide a unifying explanation of distributed cortical representations and interactions supporting reward and punishment learning.


Asunto(s)
Aprendizaje , Corteza Prefrontal , Castigo , Recompensa , Humanos , Masculino , Adulto , Femenino , Corteza Prefrontal/fisiología , Aprendizaje/fisiología , Adulto Joven , Corteza Insular/fisiología , Lóbulo Frontal/fisiología
6.
Curr Biol ; 34(12): 2719-2727.e5, 2024 Jun 17.
Artículo en Inglés | MEDLINE | ID: mdl-38823382

RESUMEN

Turn-taking is a central feature of conversation across languages and cultures.1,2,3,4 This key social behavior requires numerous sensorimotor and cognitive operations1,5,6 that can be organized into three general phases: comprehension of a partner's turn, preparation of a speaker's own turn, and execution of that turn. Using intracranial electrocorticography, we recently demonstrated that neural activity related to these phases is functionally distinct during turn-taking.7 In particular, networks active during the perceptual and articulatory stages of turn-taking consisted of structures known to be important for speech-related sensory and motor processing,8,9,10,11,12,13,14,15,16,17 while putative planning dynamics were most regularly observed in the caudal inferior frontal gyrus (cIFG) and the middle frontal gyrus (cMFG). To test if these structures are necessary for planning during spoken interaction, we used direct electrical stimulation (DES) to transiently perturb cortical function in neurosurgical patient-volunteers performing a question-answer task.7,18,19 We found that stimulating the cIFG and cMFG led to various response errors9,13,20,21 but not gross articulatory deficits, which instead resulted from DES of structures involved in motor control8,13,20,22 (e.g., the precentral gyrus). Furthermore, perturbation of the cIFG and cMFG delayed inter-speaker timing-consistent with slowed planning-while faster responses could result from stimulation of sites located in other areas. Taken together, our findings suggest that the cIFG and cMFG contain critical preparatory circuits that are relevant for interactive language use.


Asunto(s)
Habla , Humanos , Masculino , Adulto , Habla/fisiología , Femenino , Estimulación Eléctrica , Corteza Prefrontal/fisiología , Lóbulo Frontal/fisiología , Adulto Joven , Electrocorticografía , Persona de Mediana Edad
7.
Brain Nerve ; 76(6): 715-720, 2024 Jun.
Artículo en Japonés | MEDLINE | ID: mdl-38853499

RESUMEN

The concept of attention in cognitive science encompasses a bidirectional nature: bottom-up attention based on the salience of sensory stimuli, and top-down attention, which involves voluntary control over aspects such as intensity, allocation, selectivity, and duration. Top-down attention is believed to be primarily realized through the frontal lobes that monitor on-going information processing. This monitoring helps detect situations requiring intervention and manipulates lower-level information processing systems as a part of executive functions.


Asunto(s)
Atención , Lóbulo Frontal , Humanos , Atención/fisiología , Lóbulo Frontal/fisiología , Función Ejecutiva/fisiología
8.
Nat Commun ; 15(1): 4802, 2024 Jun 05.
Artículo en Inglés | MEDLINE | ID: mdl-38839745

RESUMEN

Staying engaged is necessary to maintain goal-directed behaviors. Despite this, engagement exhibits continuous, intrinsic fluctuations. Even in experimental settings, animals, unlike most humans, repeatedly and spontaneously move between periods of complete task engagement and disengagement. We, therefore, looked at behavior in male macaques (macaca mulatta) in four tasks while recording fMRI signals. We identified consistent autocorrelation in task disengagement. This made it possible to build models capturing task-independent engagement. We identified task general patterns of neural activity linked to impending sudden task disengagement in mid-cingulate gyrus. By contrast, activity centered in perigenual anterior cingulate cortex (pgACC) was associated with maintenance of performance across tasks. Importantly, we carefully controlled for task-specific factors such as the reward history and other motivational effects, such as response vigor, in our analyses. Moreover, we showed pgACC activity had a causal link to task engagement: transcranial ultrasound stimulation of pgACC changed task engagement patterns.


Asunto(s)
Giro del Cíngulo , Macaca mulatta , Imagen por Resonancia Magnética , Recompensa , Animales , Masculino , Giro del Cíngulo/fisiología , Giro del Cíngulo/diagnóstico por imagen , Lóbulo Frontal/fisiología , Lóbulo Frontal/diagnóstico por imagen , Conducta Animal/fisiología , Mapeo Encefálico , Motivación/fisiología
9.
Neurosci Biobehav Rev ; 162: 105696, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38723734

RESUMEN

Human brain activity consists of different frequency bands associated with varying functions. Oscillatory activity of frontal brain regions in the theta range (4-8 Hz) is linked to cognitive processing and can be modulated by neurofeedback - a technique where participants receive real-time feedback about their brain activity and learn to modulate it. However, criticism of this technique evolved, and high heterogeneity of study designs complicates a valid evaluation of its effectiveness. This meta-analysis provides the first systematic overview over studies attempting to modulate frontal midline theta with neurofeedback in healthy human participants. Out of 1261 articles screened, 14 studies were eligible for systematic review and 11 for quantitative meta-analyses. Studies were evaluated following the DIAD model and the PRISMA guidelines. A significant across-study effect of medium size (Hedges' g = .66; 95%-CI [-0.62, 1.73]) with substantial between-study heterogeneity (Q(16) = 167.43, p < .001) was observed and subanalysis revealed effective frontal midline theta upregulation. We discuss moderators of effect sizes and provide guidelines for future research in this dynamic field.


Asunto(s)
Lóbulo Frontal , Neurorretroalimentación , Ritmo Teta , Humanos , Ritmo Teta/fisiología , Neurorretroalimentación/fisiología , Neurorretroalimentación/métodos , Lóbulo Frontal/fisiología
10.
J Neurosci ; 44(25)2024 Jun 19.
Artículo en Inglés | MEDLINE | ID: mdl-38729759

RESUMEN

Attentional control over sensory processing has been linked to neural alpha oscillations and related inhibition of cerebral cortex. Despite the wide consensus on the functional relevance of alpha oscillations for attention, precise neural mechanisms of how alpha oscillations shape perception and how this top-down modulation is implemented in cortical networks remain unclear. Here, we tested the hypothesis that alpha oscillations in frontal eye fields (FEFs) are causally involved in the top-down regulation of visual processing in humans (male and female). We applied sham-controlled, intermittent transcranial alternating current stimulation (tACS) over bilateral FEF at either 10 Hz (alpha) or 40 Hz (gamma) to manipulate attentional preparation in a visual discrimination task. Under each stimulation condition, we measured psychometric functions for contrast perception and introduced a novel linear mixed modeling approach for statistical control of neurosensory side effects of the electric stimulation. tACS at alpha frequency reduced the slope of the psychometric function, resulting in improved subthreshold and impaired superthreshold contrast perception. Side effects on the psychometric functions were complex and showed large interindividual variability. Controlling for the impact of side effects on the psychometric parameters by using covariates in the linear mixed model analysis reduced this variability and strengthened the perceptual effect. We propose that alpha tACS over FEF mimicked a state of endogenous attention by strengthening a fronto-occipitoparietal network in the alpha band. We speculate that this network modulation enhanced phasic gating in occipitoparietal cortex leading to increased variability of single-trial psychometric thresholds, measurable as a reduction of psychometric slope.


Asunto(s)
Ritmo alfa , Atención , Estimulación Transcraneal de Corriente Directa , Percepción Visual , Humanos , Femenino , Masculino , Atención/fisiología , Estimulación Transcraneal de Corriente Directa/métodos , Adulto , Percepción Visual/fisiología , Adulto Joven , Ritmo alfa/fisiología , Lóbulo Frontal/fisiología , Estimulación Luminosa/métodos , Campos Visuales/fisiología
11.
J Sports Sci ; 42(8): 665-675, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38780523

RESUMEN

Prior studies have shown that experts possess an excellent ability for action anticipation. However, it is not clear how experts process the discrepancies between predicted outcomes and actual outcomes. Based on Bayesian theory, Experiment 1 in the current study explored this question by categorizing unexpected outcomes into gradually increasing discrepancies and comparing the performance of experts and novices on a congruence discrimination task. Our behavioral analysis revealed that experts outperformed novices significantly in detecting these discrepancies. The following electroencephalogram study in Experiment 2 was conducted focused exclusively on experts to examine the role of theta wave oscillations within the mid-frontal cortex in processing varying levels of discrepancy. The results showed that reaction time and theta oscillations gradually increased as the magnitude of discrepancy increased. These findings indicate that compared to the novices, experts have a better ability to perceptual the discrepancy. Also, the magnitude of discrepancies induced an increase in mid-frontal theta in experts, providing greater flexibility in their response strategies.


Asunto(s)
Adaptación Psicológica , Electroencefalografía , Tiempo de Reacción , Tenis , Humanos , Masculino , Tiempo de Reacción/fisiología , Adulto Joven , Tenis/fisiología , Tenis/psicología , Ritmo Teta/fisiología , Femenino , Teorema de Bayes , Anticipación Psicológica/fisiología , Adulto , Lóbulo Frontal/fisiología , Rendimiento Atlético/fisiología , Rendimiento Atlético/psicología , Encéfalo/fisiología , Habilidades de Afrontamiento
12.
Acta Paediatr ; 113(8): 1876-1883, 2024 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-38773283

RESUMEN

AIM: Media use in children has exploded in the past several decades, most recently fuelled by portable electronic devices. This study aims to explore differences in functional brain connectivity in children during a story-listening functional MRI (fMRI) task using data collected before (1998) and after (2013) the widespread adoption of media. METHODS: Cross-sectional data were collected from English-speaking 5- to 7-year-old children at Cincinnati Children's Hospital Medical Center, USA, of a functional MRI narrative comprehension task completed in 1998 (n = 22) or 2013 (n = 25). Imaging data were processed using a graph theory approach, focusing on executive functions, language and visual processing networks supporting reading. RESULTS: Group differences suggest more efficient processing in the fronto-parietal network in the pre-media group while listening to stories. A modulation of the visual and fronto-parietal networks for the post-media exposure group was found. CONCLUSION: Further studies are needed to assess effects over time in the more exposed group to discern a causal effect of portable devices on cognitive networks.


Asunto(s)
Imagen por Resonancia Magnética , Lóbulo Parietal , Humanos , Niño , Masculino , Femenino , Preescolar , Estudios Transversales , Lóbulo Parietal/fisiología , Lóbulo Parietal/diagnóstico por imagen , Lóbulo Frontal/fisiología , Lóbulo Frontal/diagnóstico por imagen , Exposición a los Medios
13.
Physiol Meas ; 45(5)2024 May 21.
Artículo en Inglés | MEDLINE | ID: mdl-38697205

RESUMEN

Objectives.The purpose of this study is to investigate the age dependence of bilateral frontal electroencephalogram (EEG) coupling characteristics, and find potential age-independent depth of anesthesia monitoring indicators for the elderlies.Approach.We recorded bilateral forehead EEG data from 41 patients (ranged in 19-82 years old), and separated into three age groups: 18-40 years (n= 12); 40-65 years (n= 14), >65 years (n= 15). All these patients underwent desflurane maintained general anesthesia (GA). We analyzed the age-related EEG spectra, phase amplitude coupling (PAC), coherence and phase lag index (PLI) of EEG data in the states of awake, GA, and recovery.Main results.The frontal alpha power shows age dependence in the state of GA maintained by desflurane. Modulation index in slow oscillation-alpha and delta-alpha bands showed age dependence and state dependence in varying degrees, the PAC pattern also became less pronounced with increasing age. In the awake state, the coherence in delta, theta and alpha frequency bands were all significantly higher in the >65 years age group than in the 18-40 years age group (p< 0.05 for three frequency bands). The coherence in alpha-band was significantly enhanced in all age groups in GA (p< 0.01) and then decreased in recovery state. Notably, the PLI in the alpha band was able to significantly distinguish the three states of awake, GA and recovery (p< 0.01) and the results of PLI in delta and theta frequency bands had similar changes to those of coherence.Significance.We found the EEG coupling and synchronization between bilateral forehead are age-dependent. The PAC, coherence and PLI portray this age-dependence. The PLI and coherence based on bilateral frontal EEG functional connectivity measures and PAC based on frontal single-channel are closely associated with anesthesia-induced unconsciousness.


Asunto(s)
Desflurano , Electroencefalografía , Humanos , Desflurano/farmacología , Adulto , Persona de Mediana Edad , Anciano , Electroencefalografía/efectos de los fármacos , Adulto Joven , Masculino , Femenino , Anciano de 80 o más Años , Adolescente , Envejecimiento/fisiología , Envejecimiento/efectos de los fármacos , Lóbulo Frontal/efectos de los fármacos , Lóbulo Frontal/fisiología , Isoflurano/análogos & derivados , Isoflurano/farmacología , Anestésicos por Inhalación/farmacología , Anestesia General
14.
Nat Commun ; 15(1): 3941, 2024 May 10.
Artículo en Inglés | MEDLINE | ID: mdl-38729937

RESUMEN

A relevant question concerning inter-areal communication in the cortex is whether these interactions are synergistic. Synergy refers to the complementary effect of multiple brain signals conveying more information than the sum of each isolated signal. Redundancy, on the other hand, refers to the common information shared between brain signals. Here, we dissociated cortical interactions encoding complementary information (synergy) from those sharing common information (redundancy) during prediction error (PE) processing. We analyzed auditory and frontal electrocorticography (ECoG) signals in five common awake marmosets performing two distinct auditory oddball tasks and investigated to what extent event-related potentials (ERP) and broadband (BB) dynamics encoded synergistic and redundant information about PE processing. The information conveyed by ERPs and BB signals was synergistic even at lower stages of the hierarchy in the auditory cortex and between auditory and frontal regions. Using a brain-constrained neural network, we simulated the synergy and redundancy observed in the experimental results and demonstrated that the emergence of synergy between auditory and frontal regions requires the presence of strong, long-distance, feedback, and feedforward connections. These results indicate that distributed representations of PE signals across the cortical hierarchy can be highly synergistic.


Asunto(s)
Estimulación Acústica , Corteza Auditiva , Callithrix , Electrocorticografía , Animales , Corteza Auditiva/fisiología , Callithrix/fisiología , Masculino , Femenino , Potenciales Evocados/fisiología , Lóbulo Frontal/fisiología , Potenciales Evocados Auditivos/fisiología , Percepción Auditiva/fisiología , Mapeo Encefálico/métodos
15.
Cortex ; 176: 94-112, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38763111

RESUMEN

The ability to weigh a reward against the effort required to acquire it is critical for decision-making. However, extant experimental paradigms oftentimes confound increased effort demand with decreased reward probability, thereby obscuring neural correlates underlying these cognitive processes. To resolve this issue, we designed novel tasks that disentangled probability of success - and therefore reward probability - from effort demand. In Experiment 1, reward magnitude and effort demand were varied while reward probability was kept constant. In Experiment 2, effort demand and reward probability were varied while reward magnitude remained fixed. Electroencephalogram (EEG) data was recorded to explore how frontal midline theta (FMT; an electrophysiological index of mPFC function) and component P3 (an index of incentive salience) respond to effort demand, and reward magnitude and probability. We found no evidence that FMT tracked effort demands or net value during cue evaluation. At feedback, however, FMT power was enhanced for high compared to low effort trials, but not modulated by reward magnitude or probability. Conversely, P3 was sensitive to reward magnitude and probability at both cue and feedback phases and only integrated expended effort costs at feedback, such that P3 amplitudes continued to scale with reward magnitude and probability but were also increased for high compared to low effort reward feedback. These findings suggest that, when likelihood of success is equal, FMT power does not track net value of prospective effort-based rewards. Instead, expended cognitive effort potentiates FMT power and enhances the saliency of rewards at feedback. SIGNIFICANCE STATEMENT: The way the brain weighs rewards against the effort required to achieve them is critical for understanding motivational disorders. Current paradigms confound increased effort demand with decreased reward probability, making it difficult to disentangle neural activity associated with effort costs from those associated with reward likelihood. Here, we explored the temporal dynamics of effort-based reward (via frontal midline theta (FMT) and component P3) while participants underwent a novel paradigm that kept probability of reward constant between mental effort demand conditions. Our findings suggest that the FMT does not track net value and that expended effort enhances, instead of attenuates, the saliency of rewards.


Asunto(s)
Toma de Decisiones , Electroencefalografía , Recompensa , Ritmo Teta , Humanos , Masculino , Femenino , Ritmo Teta/fisiología , Adulto Joven , Adulto , Toma de Decisiones/fisiología , Motivación/fisiología , Probabilidad , Lóbulo Frontal/fisiología , Señales (Psicología) , Corteza Prefrontal/fisiología , Adolescente
16.
Artículo en Inglés | MEDLINE | ID: mdl-38717876

RESUMEN

Neurovascular coupling (NVC) provides important insights into the intricate activity of brain functioning and may aid in the early diagnosis of brain diseases. Emerging evidences have shown that NVC could be assessed by the coupling between electroencephalography (EEG) and functional near-infrared spectroscopy (fNIRS). However, this endeavor presents significant challenges due to the absence of standardized methodologies and reliable techniques for coupling analysis of these two modalities. In this study, we introduced a novel method, i.e., the collaborative multi-output variational Gaussian process convergent cross-mapping (CMVGP-CCM) approach to advance coupling analysis of EEG and fNIRS. To validate the robustness and reliability of the CMVGP-CCM method, we conducted extensive experiments using chaotic time series models with varying noise levels, sequence lengths, and causal driving strengths. In addition, we employed the CMVGP-CCM method to explore the NVC between EEG and fNIRS signals collected from 26 healthy participants using a working memory (WM) task. Results revealed a significant causal effect of EEG signals, particularly the delta, theta, and alpha frequency bands, on the fNIRS signals during WM. This influence was notably observed in the frontal lobe, and its strength exhibited a decline as cognitive demands increased. This study illuminates the complex connections between brain electrical activity and cerebral blood flow, offering new insights into the underlying NVC mechanisms of WM.


Asunto(s)
Algoritmos , Electroencefalografía , Memoria a Corto Plazo , Acoplamiento Neurovascular , Espectroscopía Infrarroja Corta , Humanos , Electroencefalografía/métodos , Masculino , Femenino , Espectroscopía Infrarroja Corta/métodos , Adulto , Distribución Normal , Acoplamiento Neurovascular/fisiología , Adulto Joven , Memoria a Corto Plazo/fisiología , Voluntarios Sanos , Reproducibilidad de los Resultados , Análisis Multivariante , Lóbulo Frontal/fisiología , Lóbulo Frontal/diagnóstico por imagen , Mapeo Encefálico/métodos , Ritmo Teta/fisiología , Encéfalo/fisiología , Encéfalo/diagnóstico por imagen , Encéfalo/irrigación sanguínea , Dinámicas no Lineales , Ritmo Delta/fisiología , Ritmo alfa/fisiología
18.
Nat Commun ; 15(1): 4669, 2024 May 31.
Artículo en Inglés | MEDLINE | ID: mdl-38821963

RESUMEN

Measures of fMRI resting-state functional connectivity (rs-FC) are an essential tool for basic and clinical investigations of fronto-limbic circuits. Understanding the relationship between rs-FC and the underlying patterns of neural activity in these circuits is therefore vital. Here we introduced inhibitory designer receptors exclusively activated by designer drugs (DREADDs) into the amygdala of two male macaques. We evaluated the causal effect of activating the DREADD receptors on rs-FC and neural activity within circuits connecting amygdala and frontal cortex. Activating the inhibitory DREADD increased rs-FC between amygdala and ventrolateral prefrontal cortex. Neurophysiological recordings revealed that the DREADD-induced increase in fMRI rs-FC was associated with increased local field potential coherency in the alpha band (6.5-14.5 Hz) between amygdala and ventrolateral prefrontal cortex. Thus, our multi-modal approach reveals the specific signature of neuronal activity that underlies rs-FC in fronto-limbic circuits.


Asunto(s)
Amígdala del Cerebelo , Imagen por Resonancia Magnética , Corteza Prefrontal , Imagen por Resonancia Magnética/métodos , Masculino , Animales , Corteza Prefrontal/fisiología , Corteza Prefrontal/diagnóstico por imagen , Amígdala del Cerebelo/fisiología , Amígdala del Cerebelo/diagnóstico por imagen , Vías Nerviosas/fisiología , Lóbulo Frontal/fisiología , Lóbulo Frontal/diagnóstico por imagen , Sistema Límbico/fisiología , Sistema Límbico/diagnóstico por imagen , Mapeo Encefálico/métodos , Descanso/fisiología , Macaca mulatta , Drogas de Diseño/farmacología , Clozapina/análogos & derivados , Clozapina/farmacología , Red Nerviosa/fisiología , Red Nerviosa/diagnóstico por imagen
19.
Front Neural Circuits ; 18: 1389110, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38601266

RESUMEN

The error-related negativity and an N2-component recorded over medial frontal cortex index core functions of cognitive control. While they are known to originate from agranular frontal areas, the underlying microcircuit mechanisms remain elusive. Most insights about microcircuit function have been derived from variations of the so-called canonical microcircuit model. These microcircuit architectures are based extensively on studies from granular sensory cortical areas in monkeys, cats, and rodents. However, evidence has shown striking cytoarchitectonic differences across species and differences in the functional relationships across cortical layers in agranular compared to granular sensory areas. In this minireview, we outline a tentative microcircuit model underlying cognitive control in the agranular frontal cortex of primates. The model incorporates the main GABAergic interneuron subclasses with specific laminar arrangements and target regions on pyramidal cells. We emphasize the role of layer 5 pyramidal cells in error and conflict detection. We offer several specific questions necessary for creating a specific intrinsic microcircuit model of the agranular frontal cortex.


Asunto(s)
Lóbulo Frontal , Macaca , Animales , Lóbulo Frontal/fisiología , Células Piramidales , Interneuronas , Haplorrinos , Primates , Cognición , Corteza Cerebral
20.
PLoS One ; 19(4): e0298740, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38669282

RESUMEN

In this research, we employed functional magnetic resonance imaging (fMRI) to examine the neurological basis for understanding wh-questions in wh-in-situ languages such as Korean, where wh-elements maintain their original positions instead of moving explicitly within the sentence. Our hypothesis centered on the role of the salience and attention network in comprehending wh-questions in wh-in-situ languages, such as the discernment of wh-elements, the demarcation between interrogative types, and the allocation of cognitive resources towards essential constituents vis-à-vis subordinate elements in order to capture the speaker's communicative intent. We explored subject and object wh-questions and scrambled wh-questions, contrasting them with yes/no questions in Korean. Increased activation was observed in the left anterior insula and bilateral frontal operculum, irrespective of the wh-position or scrambling of wh-element. These results suggest the interaction between the salience and attentional system and the syntactic linguistic system, particularly the left anterior insula and bilateral frontal operculum, in comprehending wh-questions in wh-in-situ languages.


Asunto(s)
Comprensión , Lenguaje , Imagen por Resonancia Magnética , Humanos , Femenino , Masculino , Comprensión/fisiología , Adulto , Adulto Joven , Mapeo Encefálico , Lóbulo Frontal/fisiología , Lóbulo Frontal/diagnóstico por imagen , República de Corea , Corteza Insular/fisiología , Corteza Insular/diagnóstico por imagen
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