Purpose: As the scope of motor development and learning knowledge has successfully broadened over the years, there is an increased need to identify the content and learning experiences that are essential in preparing preservice physical educators. The purpose of this study was to generate expert consensus regarding the most critical motor development and learning competencies that prospective physical educators need to learn within the physical education teacher education (PETE) curriculum and to identify learning environments and instructional methods for delivering core knowledge.
Method: The study employed a 2-round, modified Delphi procedure involving the repeated circulation of a questionnaire to a panel of motor development specialists, motor learning specialists, teacher educators, and K-12 physical education teachers. Panel members rated an initial list of theoretical and applied motor development and learning competencies derived from various curricular guidelines and textbook sources. An open-response question was incorporated into the 2nd round asking panel members to recommend specific instructional methods and settings for delivering core motor development and learning content to prospective physical educators within the PETE curriculum.
Results: Expert consensus determined that 64 out of the initial 159 motor development and learning competencies were critical in preparing preservice physical educators. Early field experiences and peer practice in a variety of settings were recommended by panelists for delivering the identified competencies.
Conclusions: The Discussion section represents an important link between the motor development and learning body of knowledge and physical education teachers' role in promoting skillful movement, physical activity, and fitness among youth in the school setting.
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http://dx.doi.org/10.1080/02701367.2014.930087 | DOI Listing |
Neuromolecular Med
January 2025
Department of Anatomy, School of Basic Medical Sciences, Shanxi Medical University, No 56, Xinjian Nan Road, Taiyuan, 030001, Shanxi, China.
The integrity of the myelin sheath of the spinal cord (SC) is essential for motor coordination. Seipin is an endoplasmic reticulum transmembrane protein highly expressed in adipose tissue and motor neurons in the SC. It was reported Seipin deficiency induced lipid dysregulation and neurobehavioral deficits, but the underlying mechanism, especially in SC, remains to be elucidated.
View Article and Find Full Text PDFCNS Neurosci Ther
January 2025
Department of Otolaryngology, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.
Background: Sudden sensorineural hearing loss (SSNHL) is associated with abnormal changes in the brain's central nervous system. Previous studies on the brain networks of SSNHL have primarily focused on functional connectivity within the brain. However, in addition to functional connectivity, structural connectivity also plays a crucial role in brain networks.
View Article and Find Full Text PDFHaemophilia
January 2025
Haemophilia Centre/Haemostasis and Thrombosis Unit, "Aghia Sophia" Children's Hospital, Athens, Greece.
Introduction: Infants with haemophilia, due to parental overprotection, have difficulty developing their full motor repertoire of typical gross motor development. It is of great clinical importance to evaluate the motor development of these infants with a standardized assessment tool.
Aim: To study the gross motor development in infants with haemophilia, using the Alberta Infant Motor Scale (AIMS) and compare it with full-term (FT) and preterm infants (PT).
Unlabelled: Electric fields used in clinical trials with transcranial direct current stimulation (tDCS) are small, with magnitudes that have yet to demonstrate measurable effects in preclinical animal models. We hypothesized that weak stimulation will nevertheless produce sizable effects, provided that it is applied concurrently with behavioral training, and repeated over multiple sessions. We tested this here in a rodent model of dexterous motor-skill learning.
View Article and Find Full Text PDFBDNF plays a crucial role in shaping the structure and function of neurons. BDNF signaling in the dorsolateral striatum (DLS) is part of an endogenous pathway that protects against the development of alcohol use disorder (AUD). Dysregulation of BDNF levels in the cortex or dysfunction of BDNF/TrkB signaling in the DLS results in the escalation of alcohol drinking and compulsive alcohol use.
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