The movement characteristics of English Premiership rugby union players

2013 ◽  
Vol 31 (3) ◽  
pp. 229-237 ◽  
Author(s):  
Nicola Cahill ◽  
Kevin Lamb ◽  
Paul Worsfold ◽  
Roy Headey ◽  
Stafford Murray
2021 ◽  
Vol Publish Ahead of Print ◽  
Author(s):  
Rebecca J. Peek ◽  
David L. Carey ◽  
Kane J. Middleton ◽  
Paul B. Gastin ◽  
Anthea C. Clarke

2016 ◽  
Vol 27 (2) ◽  
pp. 33 ◽  
Author(s):  
J C Tee

Background. Global positioning system (GPS) technology can provide accurate, non-invasive, real-time movement analysis of playersparticipating in team sports. The application of this technology to rugby union will improve training practices by allowing improvedunderstanding of movement characteristics and more individualised programmes.Objectives. To characterise the movement and impact patterns of South African professional rugby union players during match play andcompare these to previously reported data.Methods. Nineteen professional rugby players were tracked using GPS systems during 24 matches during the 2013 rugby season. Playerswere grouped as (i) backs or forwards and (ii) tight forwards, loose forwards, scrumhalves, inside backs or outside backs. Movements werecategorised in speed zones corresponding to walking (0 - 2 m.s-1), jogging (2 - 4 m.s-1), striding (4 - 6 m.s-1) and sprinting (>6 m.s-1). Walkingand jogging were classified as low-intensity and striding and sprinting as high-intensity movement zones. An inbuilt triaxial accelerometer(sampling frequency 100 Hz) measured the total impacts >5G and high-intensity impacts >8G. All data were normalised to time on fieldand reported as mean (standard deviation).Results. There was no difference between forwards and backs in relative distance covered. Backs reached higher maximum speeds thanforwards (backs 8.8 (1.1) v. forwards 7.6 (1.3) m.s-1, effect size (ES) 1.0, and outside backs were the fastest positional group (9.4 (0.9)m.s-1, ES 0.4 - 2.2). Players in all positions spent the majority of time walking (79 - 84%). Backs covered more distance than forwards inhigh-intensity speed zones (forwards 11 (5) v. backs 14 (4) m.min-1, ES 0.7). Tight forwards covered the most distance in low-intensityzones (63 (6) m.min-1, ES 0.3 - 1.7) while scrumhalves ran the most distance in high-intensity zones (20 (5) m.min-1, ES 1.2 - 3.6). Highintensity: low-intensity running ratios ranged from 1:13 (tight forwards) to 1:3 (scrumhalves). Loose forwards and inside backs exhibitedsimilar movement patterns. There was no difference in impact variables between forwards and backs. Inside backs sustained the least totalimpacts (6.5 (1.2) >5G.min-1, ES 0.9 - 2.0) and high-intensity impacts (0.7 (0.2) >8G.min-1, ES 0.5 - 1.4).Conclusions. There were notable differences in the movement of professional rugby union players in different positions, and effectivetraining programmes should reflect these variations.


2020 ◽  
Vol 72 (1) ◽  
pp. 185-194
Author(s):  
Edward J Bradley ◽  
Lisa Board ◽  
Bob Hogg ◽  
David T Archer

AbstractThis study aims were to determine the positional physical requirements of English domestic women’s rugby union match-play. Global positioning system data (Catapult Minimax S4) were collected at 10 Hz of 129 competitive player games from the Tyrrells Premier15 league. Players were classified according to broad (Forwards, Backs) and specific positions (front-, second-, back-row, scrum-half, inside-, and outside-backs). Total distances, maximum speed, and player loads were calculated. Mean total distance was 4982 m and was similar between the Forwards and Backs, with second-row players covering the most (5297 m) and outside-backs the least (4701 m). Inside- and outside-backs covered a significantly greater distance at high speed running (134 m; 178 m) and sprinting (74 m; 92 m) speeds, respectively, whereas the second- and back-row covered greater distances jogging (1966 m; 1976 m) and the front-row spent the greatest overall distance walking (2613 m). Outside-backs reached greater maximum speed than all other positions (24.9 km.h-1). The mean player load was highest in the back-row (562 AU) and second-row (555 AU) and these were higher than the outside-backs (476 AU). These findings indicate that the demands placed on female rugby players are position specific and differ from male players. Additionally, the data are the first obtained from the 10 Hz GPS and from within English domestic women’s rugby, thus adding to the overall limited data available on women’s rugby union.


2017 ◽  
Vol 4 (90) ◽  
pp. 68-74
Author(s):  
Darius Radžiukynas ◽  
Nelė Žilinskienė ◽  
Eglė Kemerytė - Riaubienė ◽  
Raminta Sakalauskaitė

2020 ◽  
Vol 10 (5) ◽  
pp. 92
Author(s):  
Ramtin Zargari Marandi ◽  
Camilla Ann Fjelsted ◽  
Iris Hrustanovic ◽  
Rikke Dan Olesen ◽  
Parisa Gazerani

The affective dimension of pain contributes to pain perception. Cognitive load may influence pain-related feelings. Eye tracking has proven useful for detecting cognitive load effects objectively by using relevant eye movement characteristics. In this study, we investigated whether eye movement characteristics differ in response to pain-related feelings in the presence of low and high cognitive loads. A set of validated, control, and pain-related sounds were applied to provoke pain-related feelings. Twelve healthy young participants (six females) performed a cognitive task at two load levels, once with the control and once with pain-related sounds in a randomized order. During the tasks, eye movements and task performance were recorded. Afterwards, the participants were asked to fill out questionnaires on their pain perception in response to the applied cognitive loads. Our findings indicate that an increased cognitive load was associated with a decreased saccade peak velocity, saccade frequency, and fixation frequency, as well as an increased fixation duration and pupil dilation range. Among the oculometrics, pain-related feelings were reflected only in the pupillary responses to a low cognitive load. The performance and perceived cognitive load decreased and increased, respectively, with the task load level and were not influenced by the pain-related sounds. Pain-related feelings were lower when performing the task compared with when no task was being performed in an independent group of participants. This might be due to the cognitive engagement during the task. This study demonstrated that cognitive processing could moderate the feelings associated with pain perception.


2020 ◽  
Vol 6 (1) ◽  
Author(s):  
Kevin Till ◽  
Jonathon Weakley ◽  
Dale B. Read ◽  
Padraic Phibbs ◽  
Josh Darrall-Jones ◽  
...  
Keyword(s):  

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Hongliu Li ◽  
Jun Zhang ◽  
Long Xia ◽  
Libing Yang ◽  
Weiguo Song ◽  
...  

AbstractCurrent codes for fire protection of buildings are mainly based on the movement of adults and neglect the movement characteristic of pre-school children. Having a profound comprehension of the difference between children and adults passing bottlenecks is of great help to improve the safety levels of preschool children. This paper presents an experimental study on the bottleneck flow of pre-school children in a room. The movement characteristics of children’s and adults’ bottleneck flow are investigated with two macroscopic properties: density and speed profiles as well as microscopic characteristic time: motion activation time, relaxation time, exit travel time and time gap. Arch-like density distributions are observed both for highly motivated children and adults, while the distance between the peak density region and the exit location is shorter for children and longer for adults. Children’s movement is less flexible manifested as longer motion activation time and longer relaxation time compared to that of adults. The findings from this study could enhance the understanding of crowd dynamics among the children population and provide supports for the scientific building design for children’s facilities.


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