| Literature DB >> 25517695 |
Wolfram Haslinger1, Lisa Müller2, Esmeralda Mildner3, Stefan Löfler4, Helmut Kern5, Christian Raschner6.
Abstract
The sensorimotor system (SMS) plays an important role in sports and in every day movement. Several tools for assessment and training have been designed. Many of them are directed to specific populations, and have major shortcomings due to the training effect or safety. The aim of the present study was to design and assess a dynamic sensorimotor test and training device that can be adjusted for all levels of performance. The novel pneumatic-driven mechatronic device can guide the trainee, allow independent movements or disrupt the individual with unpredicted perturbations while standing on a platform. The test-reliability was evaluated using intraclass correlation coefficient (ICC). Subjects were required to balance their center of pressure (COP) in a target circle (TITC). The time in TITC and the COP error (COPe) were recorded for analysis. The results of 22 males and 14 females (23.7 ± 2.6 years) showed good to excellent test-retest reliability. The newly designed Active Balance System (ABS) was then compared with the Biodex Balance System SD® (BBS). The results of 15 females, 14 males (23.4 ± 1.6 years) showed modest correlation in static and acceptable correlation in dynamic conditions, suggesting that ABS could be a reliable and comparable tool for dynamic balance assessments.Entities:
Year: 2014 PMID: 25517695 PMCID: PMC4299105 DOI: 10.3390/s141224174
Source DB: PubMed Journal: Sensors (Basel) ISSN: 1424-8220 Impact factor: 3.576
Figure 1.Test and training device.
Exercises of the Active Balance system.
| 1 POP UP TOP/BOTTON | The COP dot has to be moved as quickly as possible into the target circle, which appears alternately above and below. |
| 2 POP UP LEFT/RIGHT | The COP dot has to be moved as quickly as possible into the target circle, which appears alternately left and right. |
| 3 VERTICALLY MOVED | The COP dot has to follow the movement and vertically change the position of the target circle as accurately as possible. |
| 4 HORIZONTALLY MOVED | The COP dot has to follow the movement and horizontally change the position of the target circle as accurately as possible. |
| 5 CLOCKWISE ROTATION | The target circle is moving clockwise, and the COP dot has to follow its changing position as accurately as possible. |
| 6 COUNTERCLOCKWISE ROTATION | The target circle is moving counterclockwise, and the COP dot has to follow its changing position as accurately as possible. |
| 7 CONSTANT MOVEMENT | The target circle is moving diagonally without acceleration from the top left corner to the bottom right corner and back. The COP dot has to follow its changing position as accurately as possible. |
| 8 POP UP RANDOM LOCATION | The COP dot has to be moved as quickly as possible into the target circle, which appears randomly in the operating space. |
| 9 ACCELERATED MOVEMENT | The target circle is moving freely and with accelerated speed. The COP dot has to follow its changing position as accurately as possible. |
| 10 CENTERED STABILIZATION | The COP dot has to be stabilized in the center of a target circle. |
| 11 OFF-CENTER STABILIZATON | The COP dot has to be stabilized in the center of an off-centered target circle. |
Figure 2.Schema of the testing process on the ABS.
Figure 3.Center of pressure error (COPe). The COPe [°] is calculated from the deviation between the person's effective actual COP trajectory and the programmed trajectory in the given exercise time span. A maximum 24° of erroneous tilt of platform is possible.
Test-retest reliability analysis of the TITC in three different exercises and three different conditions of postural difficulty (n = 36).
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| support | |||||||||||
| centered | 29.86 | 0.40 | 29.88 | 0.20 | 0.36 | ( | |||||
| right top corner | 29.10 | 0.37 | 29.02 | 0.70 | 0.24 | (−0.107–0.539) | 0.38 | 1.31 | 0.75 | 1.51 | (1.21–2.00) |
| left bottom corner | 29.04 | 0.42 | 29.06 | 0.45 | 0.26 | (−0.098–0.551) | 0.30 | 1.02 | 0.58 | 1.19 | (0.95–1.57) |
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| total | 29.33 | 0.28 | 29.32 | 0.39 | 0.21 | (−0.147–0.517) | 0.23 | 0.79 | 0.46 | 0.89 | (0.72–1.18) |
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| independent | |||||||||||
| centered | 27.80 | 2.36 | 28.60 | 1.60 | 0.61 | (0.320–0.794) | 1.14 | 4.04 | 2.23 | 6.49 | (5.19–8.56) |
| right top corner | 26.51 | 1.67 | 27.10 | 3.33 | 0.41 | ( | |||||
| left bottom corner | 26.59 | 2.83 | 27.65 | 1.44 | 0.47 | ( | |||||
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| total | 26.97 | 1.99 | 27.78 | 1.86 | 0.85 | (0.254–0.950) | 0.74 | 2.69 | 1.45 | 6.89 | (5.50–9.08) |
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| advanced | |||||||||||
| centered | 11.71 | 4.59 | 13.45 | 4.41 | 0.75 | (0.443–0.883) | 2.14 | 16.98 | 4.19 | 33.96 | (24.59–40.55) |
| right top corner | 11.18 | 4.28 | 13.25 | 4.22 | 0.58 | (0.243–0.781) | 2.50 | 20.43 | 4.89 | 31.52 | (23.13–38.14) |
| left bottom corner | 12.43 | 3.72 | 13.37 | 4.14 | 0.71 | (0.484-0.844) | 1.98 | 15.32 | 3.87 | 28.30 | (21.10–34.80) |
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| total | 11.77 | 3.88 | 13.36 | 3.92 | 0.81 | (0.402–0.925) | 1.64 | 13.09 | 3.22 | 30.02 | (22.19–36.60) |
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| support | |||||||||||
| horizontal moved | 24.29 | 1.59 | 24.88 | 0.66 | 0.17 | (−0.124–0.456) | 0.85 | 3.47 | 1.67 | 3.82 | (3.09–4.98) |
| clockw. rotation | 26.52 | 2.98 | 27.69 | 1.76 | 0.08 | (−0.211–0.381) | 1.72 | 6.35 | 3.37 | 6.63 | (5.35–8.63) |
| const. movement | 25.77 | 2.18 | 27.43 | 1.09 | −0.16 | (−0.394–0.128) | 1.15 | 4.33 | 2.26 | 4.02 | (3.25–5.24) |
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| total | 25.53 | 1.80 | 26.67 | 0.80 | 0.10 | (−0.147–0.361) | 0.99 | 3.81 | 1.95 | 4.00 | (3.24–5.22) |
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| independent | |||||||||||
| horizontal moved | 16.20 | 3.73 | 18.42 | 3.20 | 0.59 | (0.117–0.807) | 2.06 | 11.89 | 4.03 | 18.50 | (14.50–23.37) |
| clockw. rotation | 15.50 | 4.68 | 17.68 | 2.97 | 0.44 | (0.116–0.673) | 2.54 | 15.34 | 4.99 | 20.46 | (15.92–25.67) |
| const. movement | 19.37 | 3.90 | 21.13 | 3.78 | 0.70 | (0.340–0.855) | 1.99 | 9.82 | 3.90 | 17.81 | (13.99–22.55) |
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| total | 17.02 | 3.66 | 19.08 | 2.83 | 0.66 | (0.102–0.858) | 1.81 | 10.03 | 3.55 | 17.20 | (13.47–21.71) |
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| advanced | |||||||||||
| horizontal moved | 12.49 | 3.85 | 14.60 | 3.22 | 0.50 | (0.140–0.730) | 2.23 | 16.44 | 4.37 | 23.30 | (17.93–28.90) |
| clockw. rotation | 11.97 | 3.53 | 13.51 | 2.96 | 0.54 | (0.228–0.744) | 1.97 | 15.48 | 3,87 | 22.83 | (17.60–28.37) |
| const. movement | 10.49 | 2.31 | 12.02 | 2.32 | 0.55 | (0.104–0.777) | 1.42 | 12.64 | 2.79 | 18.76 | (14.69–23.68) |
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| total | 11.65 | 2.43 | 13.37 | 2.08 | 0.60 | (−0.20–0.841) | 1.34 | 10.73 | 2.63 | 17.03 | (13.41–21.62) |
TITC: time in target circle; ICC: intraclass correlation coefficient; CI: 95% confidence interval; SEM: standard error of measurement; MDC: minimal detectable change; CV: coefficient of variation; clockw.: clockwise; const.: constant. total: summary of the three different exercises. Spearman's rank correlation coefficient in absence of normal distribution:
significance level (p < 0.01);
significance level (p < 0.05).
Test-Retest reliability analysis of the COP error in three different exercises and three different conditions of postural difficulty (n = 36).
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| support | |||||||||||
| centered | 0.27 | 0.11 | 0.23 | 0.08 | 0.50 | ( | |||||
| right top corner | 0.30 | 0.13 | 0.30 | 0.14 | 0.48 | ( | |||||
| left bottom corner | 0.28 | 0.10 | 0.27 | 0.08 | 0.13 | (−0.226–0.454) | 0.06 | 23.46 | 0.12 | 25.19 | (19.06–31.42) |
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| total | 0.28 | 0.11 | 0.27 | 0.09 | 0.61 | ( | |||||
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| independent | |||||||||||
| centered | 0.58 | 0.23 | 0.55 | 0.25 | 0.60 | (0.327–0.779) | 0.14 | 24.23 | 0.27 | 38.22 | (27.00–44.53) |
| right top corner | 0.73 | 0.27 | 0.65 | 0.33 | 0.62 | (0.364–0.793) | 0.17 | 24.11 | 0.33 | 39.27 | (27.58–45. 47) |
| left bottom corner | 0.67 | 0.26 | 0.61 | 0.19 | 0.39 | (0.070–0.640) | 0.15 | 23.54 | 0.29 | 30.14 | (22.27–36.72) |
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| total | 0.66 | 0.23 | 0.60 | 0.22 | 0.65 | (0.403–0.810) | 0.12 | 19.43 | 0.24 | 32.89 | (23.95–39.50) |
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| advanced | |||||||||||
| centered | 1.93 | 0.52 | 1.80 | 0.50 | 0.84 | (0.657–0.923) | 0.20 | 10.54 | 0.39 | 26.35 | (19.85–32.71) |
| right top corner | 2.06 | 0.50 | 1.86 | 0.40 | 0.67 | (0.327–0.842) | 0.24 | 12.29 | 0.47 | 21.45 | (26.49–27.19) |
| left bottom corner | 1.95 | 0.44 | 1.84 | 0.37 | 0.69 | (0.449–0.832) | 0.21 | 11.15 | 0.41 | 19.89 | (15.38–25.36) |
| total | 1.98 | 0.46 | 1.83 | 0.40 | 0.84 | (0.517–0.932) | 0.17 | 8.81 | 0.33 | 21.68 | (16.65–27.46) |
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| support | |||||||||||
| horizontal moved | 2.85 | 0.60 | 2.96 | 0.65 | 0.51 | (0.220–0.713) | 0.38 | 13.14 | 0.75 | 18.69 | (15.15–24.41) |
| clockw. rotation | 3.25 | 0.72 | 3.50 | 0.75 | 0.41 | (0.112–0.645) | 0.48 | 14.10 | 0.93 | 18.35 | (14.87–23.97) |
| const. movement | 1.54 | 0.48 | 1.29 | 0.28 | 0.18 | (−0.098–0.457) | 0.27 | 19.41 | 0.54 | 21.49 | (16.40–26.43) |
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| total | 2.54 | 0.47 | 2.58 | 0.45 | 0.44 | (0.135–0.672) | 0.41 | 15.99 | 0.80 | 15.29 | (12.39–19.97) |
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| independent | |||||||||||
| horizontal moved | 4.02 | 0.92 | 3.43 | 0.80 | 0.51 | (0.082–0.754) | 0.54 | 14.59 | 1.06 | 20.90 | (14.90–24.01) |
| clockw. rotation | 4.09 | 1.01 | 3.75 | 1.01 | 0.48 | (0.191–0.692) | 0.63 | 16.13 | 1.24 | 22.32 | (15.81–25.48) |
| const. movement | 2.55 | 0.62 | 2.28 | 0.54 | 0.69 | (0.327–0.852) | 0.30 | 12.51 | 0.59 | 22.44 | (16.73–26.96) |
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| total | 3.55 | 0.74 | 3.15 | 0.62 | 0.61 | (0.176–0.816) | 0.39 | 11.70 | 0.77 | 18.78 | (13.80–22.24) |
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| advanced | |||||||||||
| horizontal moved | 5.24 | 1.08 | 4.87 | 0.92 | 0.64 | (0.374–0.805) | 0.55 | 10.91 | 1.08 | 18.20 | (13.82–22.27) |
| clockw. rotation | 4.76 | 0.88 | 4.38 | 0.68 | 0.41 | (0.109–0.650) | 0.51 | 11.26 | 1.01 | 14.71 | (11.41–18.39) |
| const. movement | 4.03 | 0.74 | 3.56 | 0.49 | 0.54 | (0.027–0.785) | 0.39 | 10.34 | 0.77 | 15.17 | (11.83–19. 07) |
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| total | 4.68 | 0.74 | 4.27 | 0.56 | 0.64 | (0.124–0.841) | 0.37 | 8.30 | 0.73 | 13.73 | (10.64–17.15) |
COPe: center of pressure error; ICC: intraclass correlation coefficient; CI: 95% confidence interval; SEM: standard error of measurement; MDC: minimal detectable change; CV: coefficient of variation; clockw.: clockwise; const.: constant. total: summary of the three different exercises. Spearman's rank correlation coefficient in absence of normal distribution:
significance level (p < 0.01);
significance level (p < 0.05)
Analyses of the ABS in comparison with BBS in static and dynamic conditions (n = 29).
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| static conditions | ||||||||
| TITC | [s] | 28.35 | 1.53 | OSI | 2.23 | 0.78 | 0.004 | |
| COPe absolute | [°] | 138,142 | 44,187 | OSI | 2.23 | 0.78 | <0.001 | |
| COPe pitch x | [°] | 75,935 | 26,751 | APSI | 1.79 | 0.64 | <0.001 | |
| COPe roll y [°] | [°] | 62,207 | 23,778 | MLSI | 1.54 | 0.51 | <0.001 | |
| dynamic conditions | ||||||||
| TITC | [s] | 44.70 | 4.82 | time [s] | 95.00 | 28.14 | − | <0.001 |
| COPe absolute | [°] | 2,599,972 | 174,034 | time [s] | 95.00 | 28.14 | 0.46 | 0.012 |
ABS: Active Balance System; BBS: Biodex Balance System; COPe: center of pressure error, absolute, in roll and pitch directions; OSI: overall stability index; APSI: anterior-posterior stability index; MLSI: medial-lateral stability index; r: Pearson's rank correlation coefficient;
Spearman's rank correlation coefficient; Significance level (p < 0.01) are in boldface.