scholarly journals Illuminating the Voices of Sports Leaders in the COVID-19 Pandemic: A Conduit for Sports Development in the Sports Science School at UTech, Ja.

2021 ◽  
Vol 13 (1) ◽  
pp. 36-48
Author(s):  
Van Der Rowe
2015 ◽  
Vol 37 (1) ◽  
pp. 29 ◽  
Author(s):  
Samantha Hawkins

At the start of the 2013 academic year, Japan’s Ministry of Education, Culture, Sports, Science and Technology (MEXT) implemented the guideline set forth in their latest Courses of Study, dictating that English classes “should be conducted principally in English in high school” (MEXT, 2009, p. 8). The new Courses of Study, although not imposing a strict target-language-only rule, are still reflective of the past dogma that takes what Macaro (2001) calls a maximal position wherein the L1 is a necessary evil rather than a pedagogical resource. Teachers and institutions espousing such a view undermine language learning progress by engendering undue guilt for responsive and responsible teaching decisions, inhibiting creative pedagogy, and discouraging teachers from acting as positive and realistic bi/multilingual role models. 日本の文部科学省は、現行版学習要領に記載された「高等学校の英語教育授業を原則として英語で教えること」(文部科学省, 2009, p. 8)という方針を2013学年度に施行した。対象言語のみの使用を徹底するという厳格な規則にはなっていないものの、新学習要領は、Macaro(2001)がmaximal positionと呼ぶ「母語(L1)の使用は教育上の必要悪である」とする考えを反映している。このような見解を広める教師及び教育機関は、柔軟かつ責任ある教育的決断に対して過剰な罪悪感を生み、独創的な教授法を抑制し、教師が積極的で現実的に対応できるバイリンガル・多言語が使いこなせる模範者として活躍することを阻害し、それによって外国語教育の進歩を妨害する。


Impact ◽  
2018 ◽  
Vol 2018 (3) ◽  
pp. 89-91
Author(s):  
Shin-ichi Tate

The field of molecular biology has provided great insights into the structure and function of key molecules. Thanks to this area of research, we can now grasp the biological details of DNA and have characterised an enormous number of molecules in massive data bases. These 'biological periodic tables' have allowed scientists to connect molecules to particular cellular events, furthering scientific understanding of biological processes. However, molecular biology has yet to answer questions regarding 'higher-order' molecular architecture, such as that of chromatin. Chromatin is the molecular material that serves as the building block for chromosomes, the structures that carry an organism's genetic information inside of the cell's nucleus. Understanding the physical properties of chromatin is crucial in developing a more thorough picture of how chromatin's structure relate to its key cellular functions. Moreover, by establishing a physical model of chromatin, scientists will be able to open the doors into the true inner workings of the cell nucleus. Professor Shin-ichi Tate and his team of researchers at Hiroshima University's Research Center for the Mathematics on Chromatin Live Dynamics (RcMcD), are attempting to do just that. Through a five-year grant funded by the Platform for Dynamic Approaches to Living Systems from the Ministry of Education, Culture, Sports, Science and Technology, Tate is aiming to gain a clearer understanding of the structure and dynamics of chromatin.


2021 ◽  
Vol 11 (5) ◽  
pp. 2093
Author(s):  
Noé Perrotin ◽  
Nicolas Gardan ◽  
Arnaud Lesprillier ◽  
Clément Le Goff ◽  
Jean-Marc Seigneur ◽  
...  

The recent popularity of trail running and the use of portable sensors capable of measuring many performance results have led to the growth of new fields in sports science experimentation. Trail running is a challenging sport; it usually involves running uphill, which is physically demanding and therefore requires adaptation to the running style. The main objectives of this study were initially to use three “low-cost” sensors. These low-cost sensors can be acquired by most sports practitioners or trainers. In the second step, measurements were taken in ecological conditions orderly to expose the runners to a real trail course. Furthermore, to combine the collected data to analyze the most efficient running techniques according to the typology of the terrain were taken, as well on the whole trail circuit of less than 10km. The three sensors used were (i) a Stryd sensor (Stryd Inc. Boulder CO, USA) based on an inertial measurement unit (IMU), 6 axes (3-axis gyroscope, 3-axis accelerometer) fixed on the top of the runner’s shoe, (ii) a Global Positioning System (GPS) watch and (iii) a heart belt. Twenty-eight trail runners (25 men, 3 women: average age 36 ± 8 years; height: 175.4 ± 7.2 cm; weight: 68.7 ± 8.7 kg) of different levels completed in a single race over a 8.5 km course with 490 m of positive elevation gain. This was performed with different types of terrain uphill (UH), downhill (DH), and road sections (R) at their competitive race pace. On these sections of the course, cadence (SF), step length (SL), ground contact time (GCT), flight time (FT), vertical oscillation (VO), leg stiffness (Kleg), and power (P) were measured with the Stryd. Heart rate, speed, ascent, and descent speed were measured by the heart rate belt and the GPS watch. This study showed that on a ≤10 km trail course the criteria for obtaining a better time on the loop, determined in the test, was consistency in the effort. In a high percentage of climbs (>30%), two running techniques stand out: (i) maintaining a high SF and a short SL and (ii) decreasing the SF but increasing the SL. In addition, it has been shown that in steep (>28%) and technical descents, the average SF of the runners was higher. This happened when their SL was shorter in lower steep and technically challenging descents.


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