Showing posts with label movement analysis. Show all posts
Showing posts with label movement analysis. Show all posts

Wednesday, 21 May 2025

Investigating Musical Expression through Body Movement in Early Childhood: A Device-based Quantitative Approach to Extract Various Feature Quantities | Chapter 3 | New Horizons of Science, Technology and Culture Vol. 1

In this study, 3-year-old, 4-year-old, and 5-year-old children in three facilities (n=101) participated in the movement analysis during musical expression utilising a 3D motion capture system (MVN). Quantitative analysis, such as a three-way non-repeated analysis of variance of the captured data, yielded feature quantities that were implemented in machine learning algorithms with multiple classifiers. Results of classification regarding the developmental degree of musical expression in early childhood indicated higher accuracy with MLP-NN and SVM. Furthermore, using an eye tracking system (Tobii Glass 3) connected with MVN, simultaneous analysis of eye and body movements during musical expression improved the accuracy of MLP-NN to 74.42%. Measurements were conducted indoors at the facility under the same lighting conditions as the children's daily lives, so there was almost no effect of ambient light during eye tracking. Based on these findings, the MVN system, connected to Meta gloves, was employed to conduct detailed movement analysis focusing on hand movements during musical expression with 3-year-old, 4-year-old, and 5-year-old children in three facilities (n=86). Meta gloves, developed by MANUS Technology Group, are a small and lightweight system weighing 70 grams, which places almost no strain on the finger movements of the participating children. This system has a finger sensor that detects the absolute value of the fingertip position and the three-axis rotation angle of the finger relative to a model of the back of the hand at a frequency of 120 Hz. Because the Meta gloves are small and lightweight, the burden on fine motor control was suppressed. Quantitative analysis of this data revealed that the third metacarpal bone plays a dual role: supporting finger movements and activating the proximal and distal phalanges to facilitate the expression of imagined imagery. Admittedly, methodological limitations, such as lighting conditions and small, lightweight devices having some effect on the acquired data, are an area for further consideration. Utilising newly extracted feature quantities from this quantitative analysis is expected to improve the accuracy of classifying the developmental degree of musical expression. This, in turn, will provide objective criteria for evaluating developmental progress and necessary musical experiences, contributing to improvements in early childhood music education practices.

 

Author (s) Details

 

Mina Sano
Tokoha University, Shizuoka, Japan.

 

Please see the book here:- https://doi.org/10.9734/bpi/nhstc/v1/5557

Friday, 3 November 2023

Physiological Testing for Rugby League: A Case Study | Chapter 1 | Recent Research Advances in Arts and Social Studies Vol. 1

 The objective of the study search out provide coaches with an evidence-located testing assault that can effectively assess their performers physiological capabilities. Most of the time, these tests must be carried out accompanying little equipment and time. Scientific study has urged the following testing assault: Anthropometry (height, body bulk, and skin folds), 40-meter dash, 5-0-5 agility, reactive deftness, repeat high-intensity skill test, intermitted Yo-Yo test, counter-change leap, 1RM power clean, 1RM bench confuse, 1RM parallel back squat, 1RM bench press, and 1RM attract-up/chin-up. Following the completion of the experiment battery, coaches can use the collected dossier for athletic sketch, training adaption appraisal, feedback to players and coaches, and athletic performance guess. This article was created to specify practitioners accompanying an appropriate testing battery namely backed by scientific research.Bluff: The following experiment battery has existed advised for elite rugby league performers: Anthropometry (height, physique mass, and skin folds), 40m sprint, 5-0-5 deftness, reactive agility, repeat extreme intensity skill test, intermitted Yo-Yo test, counter movement jump, 1RM capacity clean, 1RM bench confuse, 1RM parallel back squat, 1RM bench press, and 1RM pull up/mandible up.

Author(s) Details:

Thomas J. Brunsden,
School of Medical and Health Sciences, Edith Cowan University, Joondalup, WA, 6027, Australia.

Please see the link here: https://stm.bookpi.org/RRAASS-V1/article/view/12349