2019Journal of Dance Medicine & ScienceRequires access

Evaluation of a Novel Device for Assessing Ballet Dancers’ Functional Turnout

Misato Tachibana, Yuki Nishitsuji, H Yamamoto, Tatsuya Hojo

Open publisher page 2 citations

Abstract

Despite various approaches to measuring ballet dancers’ turnout, no standardized method for doing so has yet been established. Here a newly designed rotational goniometer (RGM) for assessing ballet dancers’ functional turnout is evaluated. Twenty experienced female ballet dancers participated in the study. Measurements of the dancers’ turnout were taken three times in each of the following conditions: 1. while standing on the RGM device (RGMT); 2. as if the participant was in a ballet class (CT); and 3. performing an active external rotation of the lower extremities in the supine position (AT). The angles obtained in the three trials in each condition were averaged and the results of the three conditions were compared. The mean angle of RGMT (RGMT angle : 103.89° ± 15.2°) was significantly smaller than those of the CT (CT angle : 128.7° ± 15.1°) and AT (AT angle : 110.09° ± 17.6°) conditions (p < 0.05 and p < 0.01, respectively). The greatest angle (i.e., the CT angle ) is influenced by both friction and weightbearing. The AT angle is released from weightbearing, unlike the RGMT angle . Positive correlations were revealed between the RGMT angle and the AT angle (r = 0.78, p < 0.01) and between the RGMT angle and the CT angle (r = 0.57, p = 0.05). These findings demonstrate that the novel RGM device, characterized by elimination of friction and full weightbearing, is useful for assessing ballet dancers’ functional turnout.

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What this paper is about

Despite various approaches to measuring ballet dancers’ turnout, no standardized method for doing so has yet been established. Here a newly designed rotational goniometer (RGM) for assessing ballet dancers’ functional turnout is evaluated. Twenty experienced female ballet dancers participated in the study. Measurements of the dancers’ turnout were taken three times in each of the following conditions: 1. while standing on the RGM device (RGMT); 2. as if the participant was in a ballet class (CT); and 3. performing an active external rotation of the lower extremities in the supine position (AT). The angles obtained in the three trials in each condition were averaged and the results of the three conditions were compared. The mean angle of RGMT (RGMT angle : 103.89° ± 15.2°) was significantly smaller than those of the CT (CT angle : 128.7° ± 15.1°) and AT (AT angle : 110.09° ± 17.6°) conditions (p < 0.05 and p < 0.01, respectively). The greatest angle (i.e., the CT angle ) is influenced by both friction and weightbearing. The AT angle is released from weightbearing, unlike the RGMT angle . Positive correlations were revealed between the RGMT angle and the AT angle (r = 0.78, p < 0.01) and between the RGMT angle and the CT angle (r = 0.57, p = 0.05). These findings demonstrate that the novel RGM device, characterized by elimination of friction and full weightbearing, is useful for assessing ballet dancers’ functional turnout.

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Available abstract

Despite various approaches to measuring ballet dancers’ turnout, no standardized method for doing so has yet been established. Here a newly designed rotational goniometer (RGM) for assessing ballet dancers’ functional turnout is evaluated. Twenty experienced female ballet dancers participated in the study. Measurements of the dancers’ turnout were taken three times in each of the following conditions: 1. while standing on the RGM device (RGMT); 2. as if the participant was in a ballet class (CT); and 3. performing an active external rotation of the lower extremities in the supine position (AT). The angles obtained in the three trials in each condition were averaged and the results of the three conditions were compared. The mean angle of RGMT (RGMT angle : 103.89° ± 15.2°) was significantly smaller than those of the CT (CT angle : 128.7° ± 15.1°) and AT (AT angle : 110.09° ± 17.6°) conditions (p < 0.05 and p < 0.01, respectively). The greatest angle (i.e., the CT angle ) is influenced by both friction and weightbearing. The AT angle is released from weightbearing, unlike the RGMT angle . Positive correlations were revealed between the RGMT angle and the AT angle (r = 0.78, p < 0.01) and between the RGMT angle and the CT angle (r = 0.57, p = 0.05). These findings demonstrate that the novel RGM device, characterized by elimination of friction and full weightbearing, is useful for assessing ballet dancers’ functional turnout.

Key concepts: Ballet, Turnout, Ballet dancer, Supine position, Physical therapy, Physical medicine and rehabilitation, Medicine, Art

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