Introduction:Self-regulation plays a pivotal role in development, contributing to overall health and success. Self-regulation encompasses several facets, both basal and complex in nature, whose interaction is not fully understood. Methods:The current study investigated the network structure of a wide range of self-regulation facets (i.e., cognitive, behavioral,, physiological; basal and complex; performance-based or affective questionnaires) in 1,657 German primary-school children at 6-11 years and again three years later. Results:At both measurement points, network analyses revealed a similar structure of two main clusters of basal self-regulation facets (one affective, one cognitive), which were linked by the complex facet planning. At neither measurement point did the network structure differ by binary sex or age (above/below 8.4 or 11.1 years, respectively), but it differed by parental education at the first measurement point. Physiological self-regulation (heart rate variability), as well as the complex facets delay of gratification and affective decision-making showed no connections to the other self-regulation facets. Conclusion:The results add to research on childhood development by indicating differentiation of the self-regulation facets across three years, with the complex facet planning playing a central role within the self-regulation network, evident by close links to clusters of affective and cognitive basal self-regulation facets. Furthermore, our data suggest that changes in structures need sufficient time to unfold in middle childhood. Although the (lacking) effects of binary sex, age, and parental education require further investigation, our results offer key insights into the self-regulation network and in childhood development, which could inform future interventions.
Caregiver-infant coregulation is an early form of communication. This study investigated whether mother-infant biological coregulation is associated with 9-month-olds' word segmentation performance, a crucial milestone predicting language development. We hypothesized that coregulation would relate with infants' word segmentation performance. Additionally, we examined whether this relationship is influenced by the caregiving environment (i.e., parental reflective functioning) and the infant's emotional state (i.e., positive affect). Coregulation was investigated via cardiac synchrony in 28 nine-month-old infants (16 females) during a 5-min free-play with their German-speaking mothers. Cardiac synchrony was measured through Respiratory Sinus Arrhythmia (RSA), employing Recurrence Quantification Analysis to evaluate dyadic coupling (i.e., Recurrence Rate) and dyadic predictability (i.e., Entropy). Infants' word segmentation was measured with an eye-tracking central-fixation procedure. A stepwise regression revealed that higher dyadic coupling, but not predictability, of the dyads' RSA was associated with infants looking longer toward the screen when listening to novel as compared to familiar test words, indicating advanced word segmentation performance (Cohen's d = 0.25). Moreover, cardiac synchrony correlated positively with maternal sensitivity to their infant's mental states, but not with the infant's positive affect. These results suggest that caregiver-infant biological coregulation may play a foundational role in language acquisition.
Several recent theoretical accounts have posited that interoception, the perception of internal bodily signals, plays a vital role in early human development. Yet, empirical evidence of cardiac interoceptive sensitivity in infants to date has been mixed. Furthermore, existing evidence does not go beyond the perception of cardiac signals and focuses only on the age of 5–7 mo, limiting the generalizability of the results. Here, we used a modified version of the cardiac interoceptive sensitivity paradigm introduced by Maister et al., 2017 in 3-, 9-, and 18-mo-old infants using cross-sectional and longitudinal approaches. Going beyond, we introduce a novel experimental paradigm, namely the iBREATH, to investigate respiratory interoceptive sensitivity in infants. Overall, for cardiac interoceptive sensitivity (total n=135) we find rather stable evidence across ages with infants on average preferring stimuli presented synchronously to their heartbeat. For respiratory interoceptive sensitivity (total n=120) our results show a similar pattern in the first year of life, but not at 18 mo. We did not observe a strong relationship between cardiac and respiratory interoceptive sensitivity at 3 and 9 mo but found some evidence for a relationship at 18 mo. We validated our results using specification curve- and mega-analytic approaches. By examining early cardiac and respiratory interoceptive processing, we provide evidence that infants are sensitive to their interoceptive signals.
Social information processing (SIP) describes a cycle of cognitive/behavioral steps required to evaluate and respond in social situations. SIP, along with executive functioning (EF) and theory of mind (ToM), gain increasing importance during adolescence, when the quantity and complexity of peer, familial, and romantic relationships increase. The present person-oriented, longitudinal study investigated the predictive power of four latent profiles consisting of five behavioral measures for cool and hot EF facets in early adolescence (T1; ages 9-13 years) for four self-reported styles of SIP (assertive, passive, overtly aggressive, relationally aggressive) approximately 8 years later (T2; ages 16-21 years) in a socio-economically diverse German community cohort (N = 1,531 at T1, 51% female). Via structural equation modeling, including sex as a grouping variable, T2 SIP styles were regressed onto T1 EF profiles and T1 affective and cognitive ToM. Results indicated that T1 cognitive ToM predicted less assertive and more relationally aggressive T2 SIP for female participants. Further, belonging to the high-hot EF profile characterized by average cool EF paired with regulated decision-making and good delay of gratification at T1 predicted more positive evaluations of an assertive SIP style for females and a passive SIP style for males at T2. The T1 EF profiles did not predict either overtly or relationally aggressive SIP styles. Results suggest that above-average hot EF abilities (i.e., decision-making, delay of gratification) may encourage more favorable SIP styles in ambiguous and provocative social situations, allowing adolescents to evaluate potential social reactions in a beneficial, rather than aggressive, way.
Research on goal-predictive gaze shifts in infancy so far has mostly focused on the effect of infants’ experience with observed actions or the effect of agency cues that the observed agent displays. However, the perspective from which an action is presented to the infants (egocentric vs. allocentric) has received only little attention from researchers despite the fact that the natural observation of own actions is always linked to an egocentric perspective, whereas the observation of others’ actions is often linked to an allocentric perspective. The current study investigated the timing of 6-, 9-, and 12-month-olds’ goal-predictive gaze behavior, as well as that of adults, during the observation of simple human grasping actions that were presented from either an egocentric or allocentric perspective (within-participants design). The results showed that at 6 and 9 months of age, the infants predicted the action goal only when observing the action from the egocentric perspective. The 12-month-olds and adults, in contrast, predicted the action in both perspectives. The results therefore are in line with accounts proposing an advantage of egocentric versus allocentric processing of social stimuli, at least early in development. This study is among the first to show this egocentric bias already during the first year of life.
Previous research has suggested that infants and toddlers prioritize the imitation of goals over movements, but recent evidence revealed a more flexible pattern of imitation that depended on the visual saliency or efficiency of movements and goals. This study investigated how visual saliency of action goals alongside verbal information influences toddlers' action processing and imitation. Twenty- to 22-month-old toddlers observed a toy animal being moved in a particular style toward one of two goals. Goals were either two-dimensional drawings or three-dimensional objects. Before the demonstration, the experimenter provided verbal information about the movement style for one group of toddlers, and about the goal for the other group. Toddlers' imitation was influenced by goal saliency, verbal information, and an interplay of these factors. Toddlers preferred to imitate the goal over the movement in the 3D condition, and the movement over the goal in the 2D condition, revealing that goal saliency influenced imitation preferences. The effect of verbal cues depended on the order of saliency conditions. Verbal cues impacted imitation only in toddlers who participated in the 2D trials first, indicating that toddlers might be especially susceptible to verbal cues when initial visual information is less salient.
With the aim of unraveling the developmental dynamics of executive functions (EF), this person-oriented longitudinal study investigated the stability and change of EF across 3 years from middle childhood into early adolescence. A community sample of 1,657 school children (52% female) completed behavioral tasks measuring three cool (inhibition, working memory updating, cognitive flexibility) and two hot EF facets (affective decision making [DM], delay of gratification) at three timepoints. Via random-intercept latent transition analyses, children were assigned to one of four profiles of EF performance at T1 (Mage = 8.36, SD = 0.95) and T2 (Mage = 9.11, SD = 0.93): all-average, low-delay, regulated-DM, and low-inhibition. At T3 (Mage = 11.06, SD = 0.92), the regulated-DM and low-inhibition profiles disbanded, and new high-hot EF and mixed-hot EF profiles emerged. Across 3 years, 35% of children remained assigned to their initial profile, whereas 22% of children experienced profile transitions reflecting increasing EF performance (e.g., all-average to high-hot EF), and 21% experienced decreasing performance (e.g., all-average to low-delay). Profile membership was differentially associated with age and binary sex. These results suggest substantial interindividual differences and intraindividual change across EF performance-particularly at the onset of adolescence and for hot facets. The findings offer new explanations for contradictory results from variable-oriented research on hot EF development. Furthermore, by disaggregating unique longitudinal EF transitions, differentiated patterns of stability and change were revealed. The findings provide a basis for future research and applications targeting individual EF strengths and weaknesses during development. (PsycInfo Database Record (c) 2025 APA, all rights reserved).
We investigated the temporal impact of multisensory settings on children's learning of word-object and action-object associations at 1- and 2-years of age. Specifically, we examined whether the temporal alignment of words and actions influenced the acquisition of novel word-action-object associations. We used a preferential looking and violation of expectation task in which infants and young children were first presented with two distinct word-object and action-object pairings either in a synchronous (overlapping in time) or sequential manner (one after the other). Findings revealed that 2-year-olds recognized both, action-object and word-object associations when they first saw the word-action-object combinations synchronously, but not sequentially, as evidenced by looking behavior. 1-year-olds did not show evidence for recognition for either of the word-object and action-object pairs, regardless of the initial temporal alignment of these cues. To control for individual differences, we explored factors that might influence associative learning based on parental reports of 1- and 2-year-olds development, however, developmental measures did not explain word-action-object associative learning in either group. We discuss that while young children may benefit from the temporal alignment of multisensory cues as it enables them to actively engage with the multisensory content in real-time, infants may have been overwhelmed by the complexity of this input.
Mental representations of the environment in infants are sparse and grow richer during their development. Anticipatory eye fixation studies show that infants aged around 7 months start to predict the goal of an observed action, e.g., an object targeted by a reaching hand. Interestingly, goal-predictive gaze shifts occur at an earlier age when the hand subsequently manipulates an object and later when an action is performed by an inanimate actor, e.g., a mechanical claw. We introduce CAPRI2 (Cognitive Action PRediction and Inference in Infants), a computational model that explains this development from a functional, algorithmic perspective. It is based on the theory that infants learn object files and events as they develop a physical reasoning system. In particular, CAPRI2 learns a generative event-predictive model, which it uses to both interpret sensory information and infer goal-directed behavior. When observing object interactions, CAPRI2 (i) interprets the unfolding interactions in terms of event-segmented dynamics, (ii) maximizes the coherence of its event interpretations, updating its internal estimates and (iii) chooses gaze behavior to minimize expected uncertainty. As a result, CAPRI2 mimics the developmental pathway of infants’ goal-predictive gaze behavior. Our modeling work suggests that the involved event-predictive representations, longer-term generative model learning, and shorter-term retrospective and active inference principles constitute fundamental building blocks for the effective development of goal-predictive capacities.
Word-object and action-object learning in children aged 30 to 48 months appears to develop at a similar time scale and adheres to similar attentional constraints. However, children below 36 months show different patterns of learning word-object and action-object associations when this information is presented in a bimodal context (Eiteljoerge et al., 2019b). Here, we investigated 12- and 24-month-olds’ word-object and action-object learning when this information is presented in a unimodal context. Forty 12- and 24-month-olds were presented with two novel objects that were either first associated with a novel label (word learning task) and then later with a novel action (action learning task) or vice versa. In subsequent yoked test phases, children either heard one of the novel labels or saw a hand performing one of the actions presented with the two objects on screen while we measured their target looking. Generalized linear mixed models indicate that 12-month-olds learned action-object associations but not word-object associations and 24-month-olds learned neither word- nor action-object associations. These results extend previous findings (Eiteljoerge et al., 2019b) and, together, suggest that children appear to learn action-object associations early in development while struggling with learning word-object associations in certain contexts until 2 years of age.
This study was an unmoderated online experiment to investigate the impact of the semantic content of verbal cues on toddlers' action learning. 18- and 24-month-olds (N = 89) watched videos of two tool-use actions accompanied by specific (“pressing in/pulling out”) or unspecific information (“doing that”). Learning was measured via looking times coded from webcam recordings. Regardless of age and verbal cue, toddlers looked equally long to test pictures of correct or incorrect tool-use, suggesting that meaningful verbal information did not improve the challenging video-based action learning. However, low drop-out rates and high webcam data quality confirm the feasibility of online experiments with toddlers.
Both words and gestures have been shown to influence object categorization, often even overriding perceptual similarities to cue category membership. However, gestures are often meaningful to infants while words are arbitrarily related to an object they refer to, more similar to arbitrary actions that can be performed on objects. In this study, we examine how words and arbitrary actions shape category formation. Across three conditions (word cue, action cue, word–action cue), we presented infants (N = 90) with eight videos of single-category objects which vary in colour and other perceptual features. The objects were either accompanied by a word and/or an action that is being performed on the object. Infants in the word and action condition showed a decrease in looking over the course of the familiarization phase indicating habituation to the category, but infants in the word–action condition did not. At test, infants saw a novel object of the just-learned category and a novel object from another category side-by-side on the screen. There was some evidence for an advantage for words in shaping early object categorization, although we note that this was not robust across analyses.
Most research on the development of executive functions (EF) has applied variable-oriented approaches, neglecting the potential inter- and intraindividual interplay of these capacities. In a person-oriented approach, the present study identified varying profiles of performance for three cool EF facets: inhibition, working-memory updating, and cognitive flexibility, as well as two hot EF facets: affective decision-making and delay of gratification, in a community sample of 1,657 children (T1; age: 6–11 years, M = 8.36 years, 52.1% female) via latent profile analysis. The best-fitting model allowed for partial dependence across the three cool EF and included four profiles: all-average (69.4% of the children), low-delay (19.0%), regulated-decision-making (7.0%), and low-inhibition (4.6%). Age, binary sex, socio-economic status, multilingualism, and processing speed were identified as significant characteristics of EF profile membership. Longitudinally, a higher probability of belonging to the low-inhibition profile predicted lower rates of the self-regulatory outcome of inhibitory control 1 year later, while belonging to the regulated-decision-making profile predicted lower rates of the ability to plan and organize 3 years later. These results not only demonstrate the existence of subgroups with different concurrent within-person expressions of EF performance, but also identify related characteristics and longitudinal outcomes of subgroup membership. In turn, these conclusions stress the importance of person-oriented research to inform on differing weaknesses or strengths in EF performance for varying individuals, thereby providing valuable insight for educational and clinical research into the design of effective personalized support or interventions during middle childhood.
The ‘social brain’, consisting of areas sensitive to social information, supposedly gates the mechanisms involved in human language learning. Early preverbal interactions are guided by ostensive signals, such as gaze patterns, which are coordinated across body, brain, and environment. However, little is known about how the infant brain processes social gaze in naturalistic interactions and how this relates to infant language development. During free-play of 9-month-olds with their mothers, we recorded hemodynamic cortical activity of ´social brain` areas (prefrontal cortex, temporo-parietal junctions) via fNIRS, and micro-coded mother’s and infant’s social gaze. Infants’ speech processing was assessed with a word segmentation task. Using joint recurrence quantification analysis, we examined the connection between infants’ ´social brain` activity and the temporal dynamics of social gaze at intrapersonal (i.e., infant’s coordination, maternal coordination) and interpersonal (i.e., dyadic coupling) levels. Regression modeling revealed that intrapersonal dynamics in maternal social gaze (but not infant’s coordination or dyadic coupling) coordinated significantly with infant’s cortical activity. Moreover, recurrence quantification analysis revealed that intrapersonal maternal social gaze dynamics (in terms of entropy) were the best predictor of infants’ word segmentation. The findings support the importance of social interaction in language development, particularly highlighting maternal social gaze dynamics.
This study aimed to assess which action component (movement or goal) infants prioritize in their imitation behavior when they get information about its relevance from two important sources: perceptual goal saliency and experimenter's verbal information. 16- to 18-month-olds (N = 72) observed how the experimenter moved a toy mouse with a hopping or sliding movement onto one of two empty spaces (low goal saliency) or 2D circles (medium saliency), or inside one of two 3D houses (high saliency). Before the demonstration, the experimenter verbally announced the movement style or the goal. Results showed that verbal action descriptions did not influence infants' imitation. However, matching previous findings, infants imitated the goal more often than the movement in the high-saliency condition, and the movement more often than the goal in the low-saliency condition. Moreover, in the novel medium-saliency condition, infants imitated both components equally often. Thus, selective imitation varied as a function of perceptual goal saliency, but not of verbal cues. This suggests that perceptual features can enhance infants' bottom-up processing and imitation of action components, while the impact of top-down processes based on verbal cues may vary depending on task characteristics and infants' verbal abilities, inducing a need for further research.
Although humans acquire sophisticated and flexible tool-use skills rapidly throughout childhood, young children and adults still show difficulties using the same object for different functions, manifesting in, for example, perseveration or functional fixedness. This paper presents a novel model proposing bottom-up processes taking place during the acquisition of tool-use abilities through active interaction with objects, resulting in two kinds of cognitive representations of an object: a lower-level, action-centered representation and a higher-level, purpose-centered one. In situations requiring the use of an object to attain a goal, the purpose-centered representation is activated quickly, allowing for an immediate detection of suitable tools. In contrast, activation of the action-centered representation is slow and effortful, but comes with the advantage of offering wide-ranging information about the object's features and how they can be applied. This differential availability and activation of action-centered versus purpose-centered representations also contributes to a deeper understanding of the cognitive mechanisms underlying perseveration or functional fixedness during multifunctional tool use. When applied to the teaching and acquisition of tool use, the model indicates that the form in which object-related information is provided determines which of the two object representations is fostered, thereby either facilitating or complicating the flexible application of an object as a tool for different functions.
IntroductionDecision making results not only from logical analyses, but seems to be further guided by the ability to perceive somatic information (interoceptive accuracy). Relations between interoceptive accuracy and decision making have been exclusively studied in adults and with regard to complex, uncertain situations (as measured by the Iowa Gambling Task, IGT).MethodsIn the present study, 1454 children (6-11 years) were examined at two time points (approximately 1 year apart) using an IGT as well as a delay-of-gratification task for sweets-items and toy-items. Interoceptive accuracy was measured using a child-adapted version of the Heartbeat Perception Task.ResultsThe present results revealed that children with higher, as compared to lower, interoceptive accuracy showed more advantageous choices in the IGT and delayed more sweets-items, but not toy-items, in a delay-of-gratification task at time point 2 but not at time point 1. However, no longitudinal relation between interoceptive accuracy and decision making 1 year later could be shown.DiscussionResults indicate that interoceptive accuracy relates to decision-making abilities in situations of varying complexity already in middle childhood, and that this link might consolidate across the examined 1-year period. Furthermore, the association of interoceptive accuracy and the delay of sweets-items might have implications for the regulation of body weight at a later age.
Tools have coined human life, living conditions, and culture. Recognizing the cognitive architecture underlying tool use would allow us to comprehend its evolution, development, and physiological basis. However, the cognitive underpinnings of tool mastering remain little understood in spite of long-time research in neuroscientific, psychological, behavioral and technological fields. Moreover, the recent transition of tool use to the digital domain poses new challenges for explaining the underlying processes. In this interdisciplinary review, we propose three building blocks of tool mastering: (A) perceptual and motor abilities integrate to tool manipulation knowledge, (B) perceptual and cognitive abilities to functional tool knowledge, and (C) motor and cognitive abilities to means-end knowledge about tool use. This framework allows for integrating and structuring research findings and theoretical assumptions regarding the functional architecture of tool mastering via behavior in humans and non-human primates, brain networks, as well as computational and robotic models. An interdisciplinary perspective also helps to identify open questions and to inspire innovative research approaches. The framework can be applied to studies on the transition from classical to modern, non-mechanical tools and from analogue to digital user-tool interactions in virtual reality, which come with increased functional opacity and sensorimotor decoupling between tool user, tool, and target. By working towards an integrative theory on the cognitive architecture of the use of tools and technological assistants, this review aims at stimulating future interdisciplinary research avenues.