Morphological awareness, i.e., the ability to consciously manipulate roots (e.g., HEALTH) and affixes (e.g., -Y as in HEALTHY), is a key skill for literacy development. While its role is well documented from Grade 3 onward, its early contribution to reading and spelling acquisition remains unclear, especially in French. This study investigates whether morphological awareness predicts early reading and spelling, particularly for derived and inconsistent words, from Grade 1. We used an accelerated longitudinal design with two cohorts of French-speaking children (N = 291): one from Grade 1 to 2 and the other from Grade 2 to 3. An autoregressive structural equation model (SEM) was used to examine the predictive role of morphological awareness on later literacy outcomes, controlling for phonological skills, vocabulary, and non-verbal reasoning. Morphological awareness significantly predicted general reading and spelling abilities, and specifically the spelling of derived words, but not their reading. These effects were stronger in the younger cohort (Grade 1 to 2) due to the lesser effect of the autoregressive path. Morphological awareness plays a unique role in early literacy, particularly in spelling morphologically complex words. Findings are discussed in light of French orthographic consistency and current models of literacy acquisition.
Although easier to read than English, French has several inconsistent grapheme-to-phoneme correspondences (GPCs) whose impact on decoding performance has been little studied. In the current pilot study, 27 adult participants were asked to read aloud 60 pseudowords containing the ambiguous adjacent letters "an," "on," and "in"; the contextual graphemes "g," "s," and "e"; and the final consonants "d," "p," "s," and "t"; as well as 60 matched control pseudowords without these characteristics. Results indicated that the grapheme "e" corresponding to /(sic)/; the final consonants meant to be silent; the grapheme "s" corresponding to /z/; the graphemes "an," "on," and "in" corresponding to/alpha/, /(sic)/, and /epsilon/; and the grapheme "g" corresponding to /(sic)/ gave rise to more unexpected answers than their respective control pseudowords. The unexpected answers seem to be explained by dominant rules partly moderated by the position of the GPC in the pseudowords. These findings highlight that the difficulty of decoding French should not be underestimated and suggest that such GPCs might be the subject of particular educational attention.
Purpose: Graphotactic regularities are statistical regularities governing orthographic systems that children are sensitive to from the start of their literacy learning. The current study observed changes in children's sensitivity to a set of graphotactic patterns across different grades in elementary school and measured the contribution of skills such as expressive spelling, reading fluency, nonverbal reasoning, and receptive vocabulary to children's sensitivity of these graphotactic regularities. Method: One thousand one hundred one French-speaking children in Grades 1-5 completed a writing under a dictation task, a text reading fluency task, and a pseudo-orthographic choice task involving different graphotactic regularities. These regularities fell into two categories: legal versus illegal, which defines the legality of letter strings in French, and frequent versus less frequent, which refers to acceptable letter strings that vary in frequency of occurrence either at the beginning or end of a word. Results: The results of a repeated-measures analysis of variance showed a developmental difference between graphotactic regularity categories. The frequent versus infrequent patterns developed faster than the legal versus illegal patterns until reaching a point of equivalence in Grade 3. At Grades 4 and 5, legal versus illegal graphotactic regularities progressed more quickly while frequent versus less frequent regularities progressed more slowly. Furthermore, generalized linear mixed-model analyses for both types of graphotactic regularities revealed that they were affected by grade, expressive spelling, reading fluency level, and nonverbal reasoning. Conclusions: This study provides evidence of developmental differences in sensitivity to graphotactic regularities according to the type of regularity studied. Reading fluency and expressive spelling skills contribute to graphotactic regularity sensitivity. Higher scores in expressive spelling, reading fluency, nonverbal reasoning, and an older age were related to higher skills in identifying legal versus illegal graphotactic regularities. Such findings can contribute to educational, clinical, and research applications.
Children with developmental dyslexia (DD) display partially preserved morphology skills which they rely upon for reading and spelling. Therefore, we conducted explicit and intensive training of derivational morphology in individuals with DD, ages 9 to 14 years, in order to assess its effect on: morphological awareness, reading (speed and accuracy), and spelling. Our pre-posttest design included a group trained in derivational morphology and a group of children who continued their business-as-usual rehabilitation program with their speech-language therapist. Results showed effects on morphological awareness and on the spelling of complex words, with a large between-group effect size for trained items and a large to moderate effect size for untrained items. All these gains tended to be maintained over time on the delayed posttest, 2 months later. For reading, the results were more contrasted, with large between-group effect sizes for accuracy and speed for trained items, reducing to a small effect for accuracy on the delayed posttest. For untrained items, small effects were observed on accuracy (at both posttests) but not on speed. These results are very promising and argue in favor of using derivational morphology as a medium to improve literacy skills in French-speaking children and adolescents with DD.
The purpose of the current study was to examine the combined effect of word length and lexical frequency in a lexical decision task in second- and fifth-grade children with varying language skills. The participants, 47 second graders and 55 fifth graders, performed a lexical decision task in which word length and lexical frequency were manipulated orthogonally so that 32 words were short and frequent (e.g., fleur [flower]), 32 words were short and rare (e.g., navet [turnip]), 32 words were long and frequent (e.g., escalier [staircase]), and 32 words were long and rare (e.g., boussole [compass]). Language skills (phonological awareness, reading, vocabulary, and rapid automatized naming skills) were measured using standard language tests. The results showed that word length and, to a lesser extent, lexical frequency influence the speed and accuracy of word identification in different ways, depending on the children’s educational level. Furthermore, language skills were found to influence the effects of word length and frequency, differently in second- and fifth-grade children. The results are interpreted within the dual-route model of visual word recognition. The role of language skills in the implementation of these processes is also discussed.
The present study examined the links between haptic word processing speed, vocabulary, and inhibitory control among bilingual children. Three main hypotheses were tested: faster haptic processing speed, measured by the Computerized Comprehension Task at age 1;11, would be associated with larger concurrent vocabulary and greater longitudinal vocabulary growth. Second, early vocabulary size would be associated with greater vocabulary growth at 3;0 and 5;0. Finally, faster haptic processing speed would be associated with greater concurrent inhibitory control, as measured by the Shape Stroop Task. The results revealed that haptic processing speed was associated with concurrent vocabulary, but not predictive of later language skills. Also, early decontextualized vocabulary was predictive of vocabulary at 3;0. Finally, haptic processing speed measured in the non-dominant language was associated with inhibitory control. These results provide insight on the mechanisms of lexical retrieval in young bilinguals and expand previous research on haptic word processing and vocabulary development.
Learning to spell in an inconsistent orthographic system is a true challenge for primary school children. Previous empirical studies have highlighted three main skills involved in this learning process: phonological skills, morphological skills, and children’s sensitivity to graphotactic regularities. However, the literature shows contradictions in the exact nature of the contribution of each skill at different stages of the learning process. So, the aim of our study was to test the contribution of this set of skills in the acquisition of lexical spelling as a function of children’s grade level. For this purpose, we assessed these dimensions in a cross-sectional sample of 1101 French-speaking children from Grade 1 to Grade 5. The analyses were conducted using data-driven exploratory network modeling. The results showed (a) a predominant role of phonological skills at the beginning of learning, which tends to decrease with advancing schooling; (b) an increasing contribution of morphological skills from Grade 1 to Grade 5 with a drop in Grade 4, which is the only contribution that continues to increase in Grade 5; and (c) a contribution of the sensitivity to graphotactic regularities that tends to be stable until Grade 4 before decreasing in Grade 5. Our findings show the importance of all three skills in a dynamic process in learning to spell. The implications of these results are discussed in light of the integration of multiple patterns model of learning to spell.
Many children with developmental language disorder (DLD) have a vocabulary deficit. One of the most effective interventions for increasing children's lexicon size is the semantic and phonological approach, an approach that has been used mainly with adolescents. The goals of our study are (1) to test whether the semantic-phonological approach coupled with rich vocabulary instruction is effective with younger children with DLD on words learned during the training and (2) to check whether the gains can be maintained over the long term. A group of eight French-speaking children (aged 6 to 10), with a diagnosis of DLD, underwent a phonological-semantic group intervention over 5 months. Four lists (vegetables, animals, school materials, and sports) of words were trained, each category involving 3-hour sessions. Five-word lists (L1, L2, L3, L4, and L5) corresponded to the four trained categories and one served as control. When L1 words were trained, L2 served as the control list; then when L2 words were trained, L3 was the control list, and so on. The group results indicated significant improvement on the four trained lists once intervention was introduced, and no improvement on the control lists. All effects were maintained over the long term at the delayed posttest. Individual outcomes were dependent on children's cognitive and language profiles. Vocabulary training thus allowed young French-speaking children with DLD to enrich their vocabulary on specific measures. The implications of the results are discussed at the group and individual level.
Morphological awareness has been shown to contribute to the acquisition of literacy in various languages. The current study focuses on an explicit derivational morphology training program in French-speaking fourth graders with the aim of measuring direct effects on morphological awareness and transfer effects on spelling and reading. The intensive training given in class consisted of (1) learning how to segment words into smaller units and (2) understanding the meaning of affixes in relation to words. Thirty-six children received the morphology training and 34 age-matched participants followed an alternative visuo-semantic training matched for intensity. The results of this pre-post group comparison study show a significant Group by Time interaction: Substantial progress in morphological awareness is observed for the group trained in morphology, on both trained as well as on untrained items. A similar gain was observed for the spelling of morphologically derived words, for trained and untrained words. Both roots and affixes were spelled more accurately. For reading however, we found a learning effect in speed and accuracy on trained words, but no generalization to untrained words. All effects were maintained four months after training. These results highlight the role that morphology plays in children’s literacy development.
Dans ce bref article, je reprends quelques éléments des contributions du numéro thématique sur le trouble développemental du langage coordonné par Christelle Maillart pour les mettre en perspective avec les enjeux actuels de ce domaine. Je souligne à la fois les progrès effectués dans la compréhension de ce trouble au cours des quinze dernières années, et les questions auxquelles les travaux à venir auront à apporter des éléments de réponse.
Toddler vocabulary knowledge and speed of word processing are associated with downstream language and cognition. Here, we investigate whether these associations differ across measures. At age two, 101 participants (55 monolingual French-speaking and 46 monolingual English-speaking children) completed a two-alternative forced choice task, yielding measures of decontextualized vocabulary (number of correct responses) and haptic speed of word processing (latency of correct responses). At ages three, four, and five children completed a battery of language assessments and an executive function task. Growth curve models revealed that age-two vocabulary significantly predicted age-three performance (but not growth from age three to four or four to five) across all language assessments but speed of processing did not predict language outcomes in final models. Finally, speed of processing was correlated with executive function at age three whereas vocabulary was not. Results suggest that vocabulary is associated with a range of downstream language abilities whereas haptic speed of processing may be associated with executive control.
In this short article, I take up some elements of the contributions of the thematic issue on developmental language disorder coordinated by Christelle Maillart to put them in perspective with the current issues in this field. I highlight both the progress made in the understanding of this disorder over the last fifteen years, and the questions to which future work will have to provide some answers.
Changes in word production occur across the lifespan. Previous studies have shown electrophysiological, temporal, and functional differences between children and adults accompanying behavioral changes in picture-naming tasks (Laganaro, Tzieropoulos, Fraunfelder, & Zesiger, 2015). Thus, a shift toward adult-like processes in referential word production occurs somewhere between the ages of 13 and 20. Our aim was to investigate when and how children develop adult-like behavior and brain activation in word production. Toward this aim, performance and event-related potentials (ERP) in a referential word production task were recorded and compared for two groups of adolescents (aged 14 to 16 and 17 to 18), children (aged 10 to 13), and young adults (aged 20 to 30). Both groups of adolescents displayed adult-like production latencies, which were longer only for children, while accuracy was lower in the younger adolescents and in children, compared to adults. ERP waveform analysis and topographic pattern analysis revealed significant intergroup differences in key time-windows on stimulus-locked ERPs, both early (150-220 ms)-associated with pre-linguistic processes-and late (280-330 ms)-associated with lexical processes. The results indicate that brain activation underlying referential word production is completely adult-like in 17-year-old adolescents, whereas an intermediate pattern is still observed in adolescents aged 14 to 16 years old, although their production speed, but not their accuracy, is already adult-like.
Insulin (INS), like other peptides, has low therapeutic activity when administered orally due to degradation by proteolytic enzymes. Polymeric nanoparticles have been introduced as a useful carrier for peptide oral delivery, because they can protect these compounds from degradation. The objective of the present study is to develop an INS nanoparticulate system by using chitosan (CS), triethylchitosan (TEC), and dimethyl-ethylchitosan (DMEC, a new quaternized derivative of CS). INS-polymer nanoparticles were prepared by the polyelectrolyte complexation method. The physicochemical properties of the nanoparticles including particle size distribution, zeta potential, and polydispersity index were determined by using dynamic light scattering technique. Transmission electron microscopy was also used to observe the morphology of the nanoparticles. The amount of INS loaded into the nanoparticles was determined by measuring the association efficiency and also the content of INS in the nanoparticles. In vitro release studies showed a relatively small burst effect at the beginning and then a sustained release characteristic for 5 hours.
Early vocabulary knowledge and speed of word processing are important foundational skills for the development of preschool and school-age language and cognition. However, the variance in outcomes accounted for by parent-reported receptive or expressive vocabulary is generally modest. Recent research suggests that directly assessed, decontextualized vocabulary predicts developmental outcomes, including general language ability and kindergarten readiness, accounting for additional variance above and beyond parent-reported vocabulary. The current research extends this finding by exploring prediction from both decontextualized vocabulary and speed of word processing at 2 years of age to vocabulary during the preschool period. At age 2, children completed a two-alternative forced-choice task that yielded a measure of decontextualized vocabulary (number of correct touch responses) and two measures of speed of processing: latency to fixate the target (visual response latency) and latency to touch (haptic response latency). Results reveal that age 2 vocabulary and visual response latency, but not haptic response latency, independently predict vocabulary at ages 3 and 4. Furthermore, only decontextualized vocabulary remains a significant predictor when controlling for speed of processing, but not vice versa. This suggests that the number of early, stable word-referent associations and the efficiency with which these are processed are important to vocabulary outcomes. However, it also suggests that decontextualized vocabulary may be a more robust unique predictor of downstream outcomes.
From the very first moments of their lives, infants selectively attend to the visible orofacial movements of their social partners and apply their exquisite speech perception skills to the service of lexical learning. Here we explore how early bilingual experience modulates children's ability to use visible speech as they form new lexical representations. Using a cross-modal word-learning task, bilingual children aged 30 months were tested on their ability to learn new lexical mappings in either the auditory or the visual modality. Lexical recognition was assessed either in the same modality as the one used at learning ('same modality' condition: auditory test after auditory learning, visual test after visual learning) or in the other modality ('cross-modality' condition: visual test after auditory learning, auditory test after visual learning). The results revealed that like their monolingual peers, bilingual children successfully learn new words in either the auditory or the visual modality and show cross-modal recognition of words following auditory learning. Interestingly, as opposed to monolinguals, they also demonstrate cross-modal recognition of words upon visual learning. Collectively, these findings indicate a bilingual edge in visual word learning, expressed in the capacity to form a recoverable cross-modal representation of visually learned words.
Purpose This study examines the influence of lexical and phonological factors on expressive lexicon size in 40 French-speaking children tested longitudinally from 22 to 48 months. The factors include those based on the lexical and phonological properties of words in the children's lexicons (phonetic complexity, word length, neighborhood density [ND], and word frequency [WF]) as well as variables measuring phonological production (percent consonants correct and phonetic inventory size). Specifically, we investigate the relative influence of these factors at individual ages, namely, 22, 29, 36, and 48 months, and which factors measured at 22 and 29 months influence lexicon size at 36 and 48 months. Method Children were selected based on parent-reported vocabulary size. We included children with low, medium, and high vocabulary scores. The children's lexicons were coded in terms of phonetic complexity, word length, ND, and WF, and their phonological production skills were based on measures of percent consonants correct and phonetic inventory size extracted from spontaneous speech samples at 29, 36, and 48 months. In the case of ND and WF, we focused on one- and two-syllable nouns. Results Across the age range, the most important factor that explained variance in lexicon size was the WF of nouns. Children who selected low-frequency nouns had larger vocabularies across all ages (22–48 months). The WF of two-syllable nouns and phonological production measured at 29 months influenced lexicon size at 36 months, whereas the WF (of one- and two-syllable words) influenced lexicon size at 48 months. Conclusions The findings support the role of WF and phonological production in explaining expressive vocabulary development. Children enlarge their vocabularies by adding nouns of increasingly lower frequency. Phonological production plays a role in accounting for vocabulary size up until the age of 36 months. Supplemental Material https://doi.org/10.23641/asha.12291074
AbstractThe current study explored bilingual parent and child code-switching patterns over time. Concurrent and predictive models of code-switching behaviour on executive function outcomes were also examined in a sample of 29 French–English bilinguals at 36 (Wave 1) and 61 (Wave 2) months of age. We investigated whether code-switching typology in a single-language context predicted executive function performance at each wave independently, and whether growth in code-switching frequency across waves predicted executive function performance at Wave 2. At both waves, parents and children participated in two free play sessions (in English and French), followed by a battery of executive function tasks administered in the dominant language. Results indicate more frequent code-switching from the non-dominant to the dominant language in children, and that children code-switch to fill lexical gaps. Results also suggest that less frequent code-switching in a single-language context is associated with better inhibitory control skills during the preschool period.