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The present study explored the age-related changes of eye movement control in reading-that is, where to send the eyes and when to move them. Different orthographies present readers with somewhat different problems to solve, and this might, in turn, be reflected in different patterns of development of reading skill. Participants of different developmental levels (Grade 3, N = 30; Grade 5, N = 27 and adults, N = 27) were instructed to read sentences for comprehension while their eye movements were recorded. Contrary to previous findings that have been well documented indicating early maturation of saccade generation in English, current results showed that saccade generation among Chinese readers was still under development at Grade 5, although immediate lexical processing was relatively well-established. The distinct age-related changes in eye movements are attributable to certain linguistic properties of Chinese including the lack of interword spaces and word boundary uncertainty. The present study offers an example of how human eye movement adapts to the orthographic environment.
Executive education (EE) has been an established means for management education. However, due to the ever-changing business environment, progress in education technology, and new competitors, EE has been continuously evolving and can be expected to further change. Employing a three-stage international Delphi study, we identify a plausible scenario for the further development of EE over the next decade. The results suggest major changes for management training. The panel expects major shifts in teaching methods and curricula construction. Business schools are expected to increase content customization, to adapt delivery formats, and to enhance coverage of topical issues to better respond to leaders' needs.
„Menschen benötigen Platz zum Leben.“ In dieser Erkenntnis liegt noch nichts Besonderes oder gar Aufregendes. Erst die Tatsache, dass die menschliche Bevölkerung seit jeher zunimmt, aber der zur Verfügung stehende Platz konstant bleibt bzw. die Ressourcen in ihrem Bestand sogar abnehmen, macht dieses Thema wesentlich gehaltvoller. Offensichtlich ist außerdem: „Population growth seems to affect everything but is seldom held responsible for anything.“ (McKee 2003: 10) Dies ist der Hauptgrund dafür, dass gerade die Thematik der Bevölkerungsentwicklung internationale Beachtung und Aufmerksamkeit verdient.
Growth regulation is an important aspect of plant adaptation during environmental perturbations. Here, the role of MULTIPASS (OsMPS), an R2R3-type MYB transcription factor of rice, was explored. OsMPS is induced by salt stress and expressed in vegetative and reproductive tissues. Over-expression of OsMPS reduces growth under non-stress conditions, while knockdown plants display increased biomass. OsMPS expression is induced by abscisic acid and cytokinin, but is repressed by auxin, gibberellin and brassinolide. Growth retardation caused by OsMPS over-expression is partially restored by auxin application. Expression profiling revealed that OsMPS negatively regulates the expression of EXPANSIN (EXP) and cell-wall biosynthesis as well as phytohormone signaling genes. Furthermore, the expression of OsMPS-dependent genes is regulated by auxin, cytokinin and abscisic acid. Moreover, we show that OsMPS is a direct upstream regulator of OsEXPA4, OsEXPA8, OsEXPB2, OsEXPB3, OsEXPB6 and the endoglucanase genes OsGLU5 and OsGLU14. The multiple responses of OsMPS and its target genes to various hormones suggest an integrative function of OsMPS in the cross-talk between phytohormones and the environment to regulate adaptive growth.
Background: Children’s spontaneous focusing on numerosity (SFON) is related to numerical skills. This study aimed to examine (1) the developmental trajectory of SFON and (2) the interrelations between SFON and early numerical skills at pre-school as well as their influence on arithmetical skills at school. Method: Overall, 1868 German pre-school children were repeatedly assessed until second grade. Nonverbal intelligence, visual attention, visuospatial working memory, SFON and numerical skills were assessed at age five (M = 63 months, Time 1) and age six (M = 72 months, Time 2), and arithmetic was assessed at second grade (M = 95 months, Time 3). Results: SFON increased significantly during pre-school. Path analyses revealed interrelations between SFON and several numerical skills, except number knowledge. Magnitude estimation and basic calculation skills (Time 1 and Time 2), and to a small degree number knowledge (Time 2), contributed directly to arithmetic in second grade. The connection between SFON and arithmetic was fully mediated by magnitude estimation and calculation skills at pre-school. Conclusion: Our results indicate that SFON first and foremost influences deeper understanding of numerical concepts at pre-school and—in contrast to previous findings –affects only indirectly children’s arithmetical development at school.
Background:
Children’s spontaneous focusing on numerosity (SFON) is related to numerical skills. This study aimed to examine (1) the developmental trajectory of SFON and (2) the interrelations between SFON and early numerical skills at pre-school as well as their influence on arithmetical skills at school.
Method:
Overall, 1868 German pre-school children were repeatedly assessed until second grade. Nonverbal intelligence, visual attention, visuospatial working memory, SFON and numerical skills were assessed at age five (M = 63 months, Time 1) and age six (M = 72 months, Time 2), and arithmetic was assessed at second grade (M = 95 months, Time 3).
Results:
SFON increased significantly during pre-school. Path analyses revealed interrelations between SFON and several numerical skills, except number knowledge. Magnitude estimation and basic calculation skills (Time 1 and Time 2), and to a small degree number knowledge (Time 2), contributed directly to arithmetic in second grade. The connection between SFON and arithmetic was fully mediated by magnitude estimation and calculation skills at pre-school.
Conclusion:
Our results indicate that SFON first and foremost influences deeper understanding of numerical concepts at pre-school and—in contrast to previous findings –affects only indirectly children’s arithmetical development at school.
Wie stark eine Person in ihrer alltäglichen Umgebung auf Anzahlen achtet (Spontane Fokussierung auf Anzahligkeit, kurz SFON) ist individuell sehr unterschiedlich. Zwar liegen bereits hinreichende Belege für einen Zusammenhang zwischen SFON und Zählfertigkeiten, Subitizing und basalen sowie höheren arithmetischen Fertigkeiten im Kindergarten und der frühen Grundschulzeit vor, die Einordnung der relativen Bedeutsamkeit von SFON gegenüber bereits bekannten und gut belegten Prädiktoren fehlt jedoch. Daneben lag der bisherige Schwerpunkt vorrangig auf Zählfertigkeiten. Offen bleiben die Kompetenzen des Kindes in der Mengenerfassung und -verarbeitung sowie die bereits im Vorschulalter vorhandene Kenntnis arabischer Ziffern.
Die Daten dieser Arbeit wurden im Rahmen einer großen epidemiologischen Studie (SCHUES) erhoben. Eine Stichprobe von 1868 Kindergartenkindern (964 Jungen und 904 Mädchen) konnte zwölf Monate vor ihrem Schuleintritt erstmalig untersucht werden. Die Kinder waren hier im Mittel 63 Monate alt. 1704 Kinder konnten erneut rund neun Monate später (im Mittel drei Monate vor Schulbeginn) getestet werden. Das mittlere Alter der Kinder lag bei 72 Monaten. Die erfassten numerisch-mathematischen Fertigkeiten lassen sich in drei Teilbereiche gliedern: Zählfertigkeiten, Ziffernkenntnis und Rechnen/Mengenerfassung. Daneben wurden SFON, die nonverbale und verbale Intelligenz, die phonologische Schleife, der visuell-räumliche Notizblock sowie die zentrale Exekutive und die Aufmerksamkeit zu beiden Messzeitpunkten erhoben.
Die SFON-Tendenz zeigte eine mäßige, numerisch-mathematische Fertigkeiten eine mäßige bis hohe Stabilität über die Zeit. Der an bisher deutlich kleineren Stichproben gefundene Zusammenhang zwischen der SFON-Tendenz und den numerisch-mathematischen Fertigkeiten konnte in der vorliegenden Arbeit repliziert werden. Eine Vorhersage auffälliger als auch sehr guter numerisch-mathematischer Leistungen gelang jedoch weder quer- noch längsschnittlich mit ausreichend hoher Genauigkeit. Auch der bereits in der Literatur beschriebene reziproke Zusammenhang zwischen SFON und numerisch-mathematischen Fertigkeiten konnte durch die vorliegende Arbeit an einer großen Stichprobe repliziert werden. Darüber hinaus wurden Hinweise auf die kausale Struktur des Zusammenhangs gewonnen: Die Ergebnisse zeigten, dass numerisch-mathematische Fertigkeiten SFON besser vorhersagen konnten als andersherum. Die Ergebnisse der Pfadanalysen zeigten weiterhin, dass SFON neben den bedeutsamen Konstrukten des Arbeitsgedächtnisses, der Intelligenz und der Aufmerksamkeit einen eigenständigen Beitrag für die Entwicklung numerischer als auch mathematischer Fertigkeiten leistet. Auch auf die weitere numerische und mathematische Entwicklung bis kurz vor Schuleintritt hat SFON einen bedeutsamen Einfluss. Dieser vollzieht sich jedoch indirekt über das numerisch-mathematische Vorwissen.
This study aimed to determine the specific physical and basic gymnastics skills considered critical in gymnastics talent identification and selection as well as in promoting men’s artistic gymnastics performances. Fifty-one boys from a provincial gymnastics team (age 11.03 ± 0.95 years; height 1.33 ± 0.05 m; body mass 30.01 ± 5.53 kg; body mass index [BMI] 16.89 ± 3.93 kg/m²) regularly competing at national level voluntarily participated in this study. Anthropometric measures as well as the men’s artistic gymnastics physical test battery (i.e., International Gymnastics Federation [FIG] age group development programme) were used to assess the somatic and physical fitness profile of participants, respectively. The physical characteristics assessed were: muscle strength, flexibility, speed, endurance, and muscle power. Test outcomes were subjected to a principal components analysis to identify the most representative factors. The main findings revealed that power speed, isometric and explosive strength, strength endurance, and dynamic and static flexibility are the most determinant physical fitness aspects of the talent selection process in young male artistic gymnasts. These findings are of utmost importance for talent identification, selection, and development.
The perceptual span describes the size of the visual field from which information is obtained during a fixation in reading. Its size depends on characteristics of writing system and reader, but-according to the foveal load hypothesis-it is also adjusted dynamically as a function of lexical processing difficulty. Using the moving window paradigm to manipulate the amount of preview, here we directly test whether the perceptual span shrinks as foveal word difficulty increases. We computed the momentary size of the span from word-based eye-movement measures as a function of foveal word frequency, allowing us to separately describe the perceptual span for information affecting spatial saccade targeting and temporal saccade execution. First fixation duration and gaze duration on the upcoming (parafoveal) word N + 1 were significantly shorter when the current (foveal) word N was more frequent. We show that the word frequency effect is modulated by window size. Fixation durations on word N + 1 decreased with high-frequency words N, but only for large windows, that is, when sufficient parafoveal preview was available. This provides strong support for the foveal load hypothesis. To investigate the development of the foveal load effect, we analyzed data from three waves of a longitudinal study on the perceptual span with German children in Grades 1 to 6. Perceptual span adjustment emerged early in development at around second grade and remained stable in later grades. We conclude that the local modulation of the perceptual span indicates a general cognitive process, perhaps an attentional gradient with rapid readjustment.