Background Fall risk in elderly has been related with physical decline, low quality of life and reduced survival.Aim To evaluate the impact of exoskeleton human body posturizer (HBP) on the fall risk in the elderly.Methods 150 subjects (mean age 64.85; 79 M/71 F) with mild fall risk were randomized into two groups: 75 for group treated with human body posturizer (HBP group) and 75 for physical training without HBP group (exercise group). The effects of interventions were assessed by differences in tests related to balance and falls. Medically eligible patients were screened with Tinetti balance and Gait evaluation scale, short physical performance battery and numeric pain rating scale to determine fall risk in elderly people.Results In the HBP group there was a significant improvement in short physical performance battery, Tinetti scale and Pain Numeric rating scale with a significant reduction in fall risk (p < 0.05). In the exercise group we observed only minimal variations in the test scores.Discussion The results at the sixth and twelfth months show a twofold positive effect in the HBP group reducing fall risk and improving quality of life by reducing pain.Conclusion The use of exoskeleton human body posturizer seems to be a new significant device for prevention of fall in elderly patients. Further research should be carried out to obtain more evidence on effects of robotic technology for fall prevention in the elderly.

Fall prevention in the young old using an exoskeleton human body posturize. a randomized controlled trial / Verrusio, W; Gianturco, V; Cacciafesta, M; Marigliano, V; Troisi, G; Ripani, M. - In: AGING CLINICAL AND EXPERIMENTAL RESEARCH. - ISSN 1594-0667. - 29:2(2017), pp. 207-214. [10.1007/s40520-016-0540-7]

Fall prevention in the young old using an exoskeleton human body posturize. a randomized controlled trial

Verrusio, W
;
Gianturco, V;Cacciafesta, M;Marigliano, V;Troisi, G;
2017

Abstract

Background Fall risk in elderly has been related with physical decline, low quality of life and reduced survival.Aim To evaluate the impact of exoskeleton human body posturizer (HBP) on the fall risk in the elderly.Methods 150 subjects (mean age 64.85; 79 M/71 F) with mild fall risk were randomized into two groups: 75 for group treated with human body posturizer (HBP group) and 75 for physical training without HBP group (exercise group). The effects of interventions were assessed by differences in tests related to balance and falls. Medically eligible patients were screened with Tinetti balance and Gait evaluation scale, short physical performance battery and numeric pain rating scale to determine fall risk in elderly people.Results In the HBP group there was a significant improvement in short physical performance battery, Tinetti scale and Pain Numeric rating scale with a significant reduction in fall risk (p < 0.05). In the exercise group we observed only minimal variations in the test scores.Discussion The results at the sixth and twelfth months show a twofold positive effect in the HBP group reducing fall risk and improving quality of life by reducing pain.Conclusion The use of exoskeleton human body posturizer seems to be a new significant device for prevention of fall in elderly patients. Further research should be carried out to obtain more evidence on effects of robotic technology for fall prevention in the elderly.
2017
fall prevention; elderly; exoskeleton; posture; quality of life; accidental falls; aged; dependent ambulation; exercise therapy; female; gait; geriatric assessment; humans; male; neurologic examination; postural balance; treatment outcome; aging; quality of life; self-help devices
01 Pubblicazione su rivista::01a Articolo in rivista
Fall prevention in the young old using an exoskeleton human body posturize. a randomized controlled trial / Verrusio, W; Gianturco, V; Cacciafesta, M; Marigliano, V; Troisi, G; Ripani, M. - In: AGING CLINICAL AND EXPERIMENTAL RESEARCH. - ISSN 1594-0667. - 29:2(2017), pp. 207-214. [10.1007/s40520-016-0540-7]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1558982
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